WO2013084790A1 - Communication system, wireless base station device, wireless terminal device, and communication control method - Google Patents

Communication system, wireless base station device, wireless terminal device, and communication control method Download PDF

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Publication number
WO2013084790A1
WO2013084790A1 PCT/JP2012/080929 JP2012080929W WO2013084790A1 WO 2013084790 A1 WO2013084790 A1 WO 2013084790A1 JP 2012080929 W JP2012080929 W JP 2012080929W WO 2013084790 A1 WO2013084790 A1 WO 2013084790A1
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WO
WIPO (PCT)
Prior art keywords
base station
terminal device
communication
capacity booster
wireless terminal
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PCT/JP2012/080929
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French (fr)
Japanese (ja)
Inventor
濱田芳博
村上憲一
岡田洋侍
Original Assignee
住友電気工業株式会社
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Application filed by 住友電気工業株式会社 filed Critical 住友電気工業株式会社
Publication of WO2013084790A1 publication Critical patent/WO2013084790A1/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0203Power saving arrangements in the radio access network or backbone network of wireless communication networks
    • H04W52/0206Power saving arrangements in the radio access network or backbone network of wireless communication networks in access points, e.g. base stations
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/16Performing reselection for specific purposes
    • H04W36/22Performing reselection for specific purposes for handling the traffic
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present invention relates to a communication system, a radio base station apparatus, a radio terminal apparatus, and a communication control method, and in particular, a radio base station in a communication system capable of communicating with a plurality of radio base station apparatuses by “moving” the radio terminal apparatus.
  • the present invention relates to a device, a wireless terminal device, the communication system, and a communication control method.
  • a cell for increasing the wireless communication capacity in a desired communication area that is, an area in which a wireless terminal device can communicate
  • a coverage base station that forms a base station for example, a communication system is proposed in which a capacity booster base station that forms a cell having a smaller radius than the coverage cell is provided in a coverage cell formed by the coverage base station.
  • the power used in the wireless communication area is increased as compared to a case where only a coverage base station is configured.
  • Non-Patent Document 1 power use efficiency when a certain wireless communication area is configured using a plurality of wireless base station devices The following techniques are disclosed as an example of improvement.
  • the communication load of the radio base station apparatus constituting the coverage cell is reduced, the cell is extinguished when the cell is not needed, and communication
  • the power consumption can be reduced by forming the cell again according to the demand.
  • the capacity booster base station when the capacity booster base station receives a communication start instruction from another radio base station apparatus, the capacity booster base station transitions to an active (Active) state in which transmission / reception of a radio signal with the radio terminal apparatus starts, When the amount of communication traffic with the wireless terminal device decreases, the state transits to a dormant state where transmission / reception of wireless signals with the wireless terminal device is stopped.
  • Active active
  • Non-Patent Document 1 Regarding the switching of the active state and the dormant state of the capacity booster base station in the sequence described in Non-Patent Document 1, it is appropriate to improve the efficiency of the operation of the communication system as described above and to effectively use the capacity booster base station. A technique for performing the operation is desired.
  • the present invention has been made in order to solve the above-described problems, and an object of the present invention is to start wireless signal transmission / reception with a wireless terminal device when receiving a communication start instruction from another wireless base station device.
  • a radio base station apparatus a radio terminal apparatus, and a communication control method capable of executing an appropriate operation in a communication system including a base station apparatus.
  • a communication system provides coverage for communicating with the wireless terminal device by transmitting and receiving wireless signals between the wireless terminal device and the wireless terminal device.
  • a communication system comprising a capacity booster base station that transitions to an active state for starting transmission and reception, wherein the wireless terminal device requests that the capacity booster base station transition to the active state when a predetermined condition is satisfied To the coverage base station, and the coverage base station receives the request and sends the communication start instruction to the capacity booster. And transmits it to the ground stations.
  • a radio base station apparatus is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus.
  • the wireless signal between the wireless terminal device is controlled by controlling the wireless communication unit
  • a traffic information acquisition unit that acquires a traffic amount of communication with the wireless terminal device, and the control unit receives the communication start instruction and starts transmitting and receiving the wireless signal.
  • the traffic amount acquired by the traffic information acquisition unit is less than a predetermined threshold value, and communication with the wireless terminal device has a priority level equal to or higher than a predetermined level. If not contain over data stops at least transmission of the radio signal.
  • a radio terminal apparatus is provided between a coverage base station that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus, and the radio terminal apparatus.
  • a capacity booster base that communicates with the wireless terminal device by transmitting / receiving a wireless signal and transitions to an active state that starts transmission / reception of the wireless signal to / from the wireless terminal device when receiving a communication start instruction from the coverage base station
  • a wireless communication device comprising: a wireless communication unit that transmits and receives wireless signals between the coverage base station and the capacity booster base station; and when the predetermined condition is satisfied, the capacity booster A control unit that transmits a request to transition the base station to the active state to the coverage base station via the wireless communication unit.
  • a radio base station apparatus is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus.
  • a wireless communication unit that transmits / receives a wireless signal to / from the device
  • a capacity booster base station that transitions to an active state that starts transmission / reception of radio signals to / from the wireless terminal device is received from the wireless terminal device, and the communication start instruction is transmitted to the capacity
  • a control unit for transmitting to the booster base station When communicating with the wireless terminal device by transmitting / receiving a wireless signal to / from a wireless terminal device and receiving a communication start instruction from another wireless base station device, a wireless communication unit that transmits / receives a wireless signal to / from the device
  • a capacity booster base station that transitions to an active state that starts transmission / reception of radio signals to / from the wireless terminal device is received from the wireless terminal device, and the communication start instruction is transmitted to the capacity
  • a control unit for transmitting to the booster base station When communicating with the wireless terminal device
  • a communication control method includes a coverage base station that communicates with the wireless terminal device by transmitting and receiving wireless signals to and from the wireless terminal device, It communicates with the wireless terminal device by transmitting / receiving a wireless signal to / from the terminal device, and when receiving a communication start instruction from the coverage base station, enters an active state in which transmission / reception of the wireless signal to / from the wireless terminal device is started.
  • a communication control method in a communication system including a capacity booster base station for transition, wherein the coverage base station receives a request for transitioning the capacity booster base station to the active state from a wireless terminal device, and performs the communication Transmitting a start instruction to the capacity booster base station, and the capacity booster base station From the ground station receives the communication start instruction; and a transition to the active state.
  • a radio base station apparatus is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus.
  • the wireless terminal device When receiving a communication start instruction from another wireless base station device and a wireless communication unit that transmits / receives a wireless signal to / from the wireless terminal device, the wireless terminal device is controlled by controlling the wireless communication unit.
  • a traffic information acquisition unit that acquires a traffic amount of communication with the wireless terminal device.
  • the control unit receives the communication start instruction and receives the communication start instruction. Whether or not to stop at least transmission of the radio signal based on the traffic amount acquired by the traffic information acquisition unit in a state where signal transmission / reception has started. And stopping the transmission of the radio signal by stepping down the transmission power of the radio signal stepwise by controlling the radio communication unit when it is determined to stop the transmission of the radio signal. I do.
  • a radio base station apparatus is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus.
  • the transmission power of the wireless signal is gradually increased by controlling the wireless communication unit.
  • a control unit that starts communication with the wireless terminal device.
  • a radio base station apparatus is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus.
  • the wireless signal between the wireless terminal device is controlled by controlling the wireless communication unit A control unit that starts transmission / reception of the radio signal, and the control unit determines whether to stop at least transmission of the radio signal in a state in which transmission / reception of the radio signal is started in response to the communication start instruction, If it is determined that the transmission of the radio signal is to be stopped, the other radio base station apparatus is notified that the transmission of the radio signal is to be stopped.
  • a communication system includes a coverage base station that communicates with the wireless terminal device by transmitting and receiving wireless signals to and from the wireless terminal device, and a wireless terminal A capacity booster base station that communicates with the wireless terminal device by transmitting and receiving wireless signals to and from the device, wherein the capacity booster base station is a communication start instruction from the coverage base station.
  • the wireless terminal starts transmission / reception of the wireless signal, and determines whether to stop at least transmission of the wireless signal in a state where transmission / reception of the wireless signal is started, If it is determined that the transmission of the radio signal is to be stopped, the coverage base station is notified that the transmission of the radio signal is to be stopped, and the coverage base The station receives the notification, acquires the traffic volume of communication with the wireless terminal device, transmits a response of the content based on the acquired traffic volume to the capacity booster base station, and the capacity booster base station Stops receiving the wireless signal after receiving the response.
  • a communication control method provides communication in a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus.
  • the control method includes a step of starting transmission / reception of a radio signal with the radio terminal apparatus, and a traffic volume of communication with the radio terminal apparatus. Based on the acquired step and the acquired traffic volume, it is determined whether or not to stop at least transmission of the radio signal. If it is determined to stop transmission of the radio signal, transmission power of the radio signal is determined. And a step of performing wave stop control for stopping the transmission of the radio signal by lowering the signal stepwise.
  • an appropriate operation is performed in a communication system including a radio base station apparatus that starts transmission / reception of a radio signal to / from a radio terminal apparatus when receiving a communication start instruction from another radio base station apparatus. can do.
  • FIG. 1 is a diagram showing a configuration of a radio communication system according to an embodiment of the present invention.
  • FIG. 2 is a diagram showing a configuration of a capacity booster base station according to the embodiment of the present invention.
  • FIG. 3 is a diagram showing a configuration of a radio transmission unit in the capacity booster base station according to the embodiment of the present invention.
  • FIG. 4 is a diagram showing a configuration of a coverage base station according to the embodiment of the present invention.
  • FIG. 5 is a diagram showing the configuration of the wireless terminal apparatus according to the embodiment of the present invention.
  • FIG. 6 is a diagram showing an exemplary sequence of a handover operation in the radio communication system according to the embodiment of the present invention.
  • FIG. 7 is a diagram illustrating a configuration of a wireless communication system when power efficiency is improved.
  • FIG. 8 is a diagram illustrating a state in which the capacity booster base stations 101A and 101B have transitioned to the active state in accordance with a transition request from the coverage base station 201 to the active state.
  • FIG. 9 is a diagram illustrating a state of the wireless communication system when the capacity booster base station 101B transitions to a dormant state.
  • FIG. 10 is a diagram showing an exemplary sequence of a power efficiency improvement operation in the wireless communication system according to the embodiment of the present invention.
  • FIG. 11 is a diagram illustrating an example of a sequence when the capacity booster base station transitions to a dormant state in the wireless communication system according to the embodiment of the present invention.
  • FIG. 12 is a flowchart that defines an operation procedure when the power of the radio wave transmitted by the capacity booster base station in the wireless communication system according to the embodiment of the present invention is lowered to transition from the active state to the dormant state.
  • FIG. 13 is a diagram showing an exemplary sequence when the capacity booster base station transitions to the active state in the wireless communication system according to the embodiment of the present invention.
  • FIG. 14 is a flowchart defining an operation procedure when the power of the radio wave transmitted by the capacity booster base station in the wireless communication system according to the embodiment of the present invention is increased to transition from the sleep state to the active state.
  • FIG. 15 is a diagram for explaining problems that occur when a capacity booster base station transitions from an active state to a dormant state.
  • FIG. 16 is a diagram showing an example of a sequence in a case where the transition to the dormant state of the capacity booster base station in the wireless communication system according to the embodiment of the present invention is accepted by the coverage base station.
  • FIG. 17 is a diagram showing an example of temporal change in the amount of communication traffic when the threshold value Th1 and the threshold value Th2 of the communication traffic amount are the same value in the wireless communication system according to the embodiment of the present invention.
  • FIG. 18 is a diagram illustrating an example of a temporal change in the communication traffic volume when the communication traffic volume threshold Th2 is smaller than the threshold Th1 in the wireless communication system according to the embodiment of the present invention.
  • FIG. 19 is a diagram illustrating an example of a sequence in a case where the transition to the dormant state of the capacity booster base station in the wireless communication system according to the embodiment of the present invention is not permitted by the coverage base station.
  • FIG. 20 is a diagram illustrating an example of a temporal change in the amount of communication traffic when the amount of communication traffic in the wireless communication system according to the embodiment of the present invention exceeds the threshold value Th2 during the standby operation.
  • FIG. 21 is a diagram illustrating an example of a sequence when the capacity booster base station in the wireless communication system according to the embodiment of the present invention transitions to the active state in response to a request from the wireless terminal device.
  • FIG. 22 is a flowchart that defines an operation procedure when a capacity booster base station that performs high-priority communication in the wireless communication system according to the embodiment of the present invention transitions to a dormant state.
  • a communication system provides coverage for communicating with the wireless terminal device by transmitting and receiving wireless signals between the wireless terminal device and the wireless terminal device.
  • a communication system comprising a capacity booster base station that transitions to an active state for starting transmission and reception, wherein the wireless terminal device requests that the capacity booster base station transition to the active state when a predetermined condition is satisfied To the coverage base station, and the coverage base station receives the request and sends the communication start instruction to the capacity booster. And transmits it to the ground stations.
  • the wireless terminal device transmits a request for transitioning the capacity booster base station to the active state when the predetermined condition is satisfied, thereby increasing the power larger than the reception power of the radio wave from the coverage base station.
  • the communication destination can be changed to a capacity booster base station capable of receiving radio waves by the wireless terminal device.
  • the wireless terminal device can receive the radio wave from the capacity booster base station with a large power compared to the reception power of the radio wave from the coverage base station, and the communication traffic amount in the capacity booster base station can be increased. Since it can be expected that there is room, communication can be stabilized and speeded up.
  • the wireless terminal device may transmit the request to the coverage base station when it becomes necessary to perform communication including data having a priority level equal to or higher than a predetermined level.
  • the communication when it becomes necessary to perform communication including data having a priority level equal to or higher than a predetermined level, which is an appropriate condition for transitioning the capacity booster base station to the active state, the communication can be performed at high speed.
  • the wireless terminal device when it becomes necessary for the wireless terminal device to perform communication including data having a priority level equal to or higher than a predetermined level, the wireless terminal device can receive the radio wave with power larger than the reception power of the radio wave from the coverage base station.
  • the communication destination can be changed to the capacity booster base station.
  • the wireless terminal device can receive radio waves from the capacity booster base station with a large amount of power compared to the reception power of radio waves from the coverage base station, and the communication traffic volume in the capacity booster base station has a margin. Since it can be expected, high-priority communication can be performed stably and at high speed.
  • the capacity booster base station acquires a traffic volume of communication with the wireless terminal device in the active state, the acquired traffic volume is less than a predetermined threshold value, and When communication with the wireless terminal device does not include data having a priority level equal to or higher than a predetermined level, at least transmission of the wireless signal may be stopped.
  • the capacity booster base station continues the communication even when the communication traffic volume in the capacity booster base station is less than a predetermined threshold when performing communication with high priority. Further, when the high-priority communication is not performed, the capacity booster base station stops the communication and shifts to a dormant state if the traffic volume of the communication in itself is less than a predetermined threshold. Thereby, the capacity booster base station can make an appropriate determination according to the presence / absence of high-priority communication regarding the continuation of the active state or the transition to the dormant state in which the transmission of the radio signal is stopped.
  • a radio base station apparatus is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus.
  • the wireless signal between the wireless terminal device is controlled by controlling the wireless communication unit
  • a traffic information acquisition unit that acquires a traffic amount of communication with the wireless terminal device, and the control unit receives the communication start instruction and starts transmitting and receiving the wireless signal.
  • the traffic volume acquired by the traffic information acquisition unit is less than a predetermined threshold value, and communication with the wireless terminal device has a priority level equal to or higher than a predetermined level. If not contain over data stops at least transmission of the radio signal.
  • the capacity booster base station continues the communication even when the communication traffic volume in the capacity booster base station is less than a predetermined threshold when performing communication with high priority. Further, when the high-priority communication is not performed, the capacity booster base station stops the communication and shifts to a dormant state if the traffic volume of the communication in itself is less than a predetermined threshold. Thereby, the capacity booster base station can make an appropriate determination according to the presence / absence of high-priority communication regarding the continuation of the active state or the transition to the dormant state in which the transmission of the radio signal is stopped.
  • a radio terminal apparatus is provided between a coverage base station that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus, and the radio terminal apparatus.
  • a capacity booster base that communicates with the wireless terminal device by transmitting / receiving a wireless signal and transitions to an active state that starts transmission / reception of the wireless signal to / from the wireless terminal device when receiving a communication start instruction from the coverage base station
  • a wireless communication device comprising: a wireless communication unit that transmits and receives wireless signals between the coverage base station and the capacity booster base station; and when the predetermined condition is satisfied, the capacity booster A control unit that transmits a request to transition the base station to the active state to the coverage base station via the wireless communication unit.
  • the wireless terminal device transmits a request for transitioning the capacity booster base station to the active state when the predetermined condition is satisfied, thereby increasing the power larger than the reception power of the radio wave from the coverage base station.
  • the communication destination can be changed to a capacity booster base station capable of receiving radio waves by the wireless terminal device.
  • the wireless terminal device can receive the radio wave from the capacity booster base station with a large power compared to the received power of the radio wave from the coverage base station, and the communication channel etc. in the capacity booster base station Since it can be expected to occupy and use radio resources, communication can be performed stably and at high speed.
  • a radio base station apparatus is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus.
  • a wireless communication unit that transmits / receives a wireless signal to / from the device
  • a capacity booster base station that transitions to an active state that starts transmission / reception of radio signals to / from the wireless terminal device is received from the wireless terminal device, and the communication start instruction is transmitted to the capacity
  • a control unit for transmitting to the booster base station When communicating with the wireless terminal device by transmitting / receiving a wireless signal to / from a wireless terminal device and receiving a communication start instruction from another wireless base station device, a wireless communication unit that transmits / receives a wireless signal to / from the device
  • a capacity booster base station that transitions to an active state that starts transmission / reception of radio signals to / from the wireless terminal device is received from the wireless terminal device, and the communication start instruction is transmitted to the capacity
  • a control unit for transmitting to the booster base station When communicating with the wireless terminal device
  • the wireless terminal device for example, by transmitting a request for transitioning the capacity booster base station to the active state when a predetermined condition is satisfied, than the received power of the radio wave from the coverage base station.
  • the communication destination can be changed to a capacity booster base station that can receive radio waves with a large amount of power.
  • the wireless terminal device can receive the radio wave from the capacity booster base station with a large power compared to the received power of the radio wave from the coverage base station, and the communication channel etc. in the capacity booster base station Since it can be expected to occupy and use radio resources, communication can be performed stably and at high speed.
  • a communication control method includes a coverage base station that communicates with the wireless terminal device by transmitting and receiving wireless signals to and from the wireless terminal device, It communicates with the wireless terminal device by transmitting / receiving a wireless signal to / from the terminal device, and when receiving a communication start instruction from the coverage base station, enters an active state in which transmission / reception of the wireless signal to / from the wireless terminal device is started.
  • a communication control method in a communication system including a capacity booster base station for transition, wherein the coverage base station receives a request for transitioning the capacity booster base station to the active state from a wireless terminal device, and performs the communication Transmitting a start instruction to the capacity booster base station, and the capacity booster base station From the ground station receives the communication start instruction; and a transition to the active state.
  • the wireless terminal device for example, by transmitting a request for transitioning the capacity booster base station to the active state when a predetermined condition is satisfied, than the received power of the radio wave from the coverage base station.
  • the communication destination can be changed to a capacity booster base station that can receive radio waves with a large amount of power.
  • the wireless terminal device can receive the radio wave from the capacity booster base station with a large power compared to the received power of the radio wave from the coverage base station, and the communication channel etc. in the capacity booster base station Since it can be expected to occupy and use radio resources, communication can be performed stably and at high speed.
  • a radio base station apparatus is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus.
  • the wireless terminal device When receiving a communication start instruction from another wireless base station device and a wireless communication unit that transmits / receives a wireless signal to / from the wireless terminal device, the wireless terminal device is controlled by controlling the wireless communication unit.
  • a traffic information acquisition unit that acquires a traffic amount of communication with the wireless terminal device.
  • the control unit receives the communication start instruction and receives the communication start instruction. Whether or not to stop at least transmission of the radio signal based on the traffic amount acquired by the traffic information acquisition unit in a state where signal transmission / reception has started. And stopping the transmission of the radio signal by stepping down the transmission power of the radio signal stepwise by controlling the radio communication unit when it is determined to stop the transmission of the radio signal. I do.
  • the radio base station apparatus can “move” the radio terminal apparatus to another radio base station apparatus before communication between the radio terminal apparatus and the radio terminal apparatus that has selected the radio base station apparatus is interrupted.
  • the radio base station apparatus can prevent the communication of the radio terminal apparatus that has selected itself from being interrupted when performing the stop control.
  • the other radio base station indicates that the transmission of the radio signal is stopped before performing the stop control.
  • the device may be notified.
  • control unit may perform the stop control after receiving a response to the notification from the other radio base station apparatus.
  • control unit determines to stop the transmission of the radio signal when the traffic amount is less than a first threshold, and after receiving the response, the traffic amount is The wave stopping control may be performed when the second threshold value is less than the second threshold value.
  • the stop control can be quickly performed when the traffic amount becomes less than the second threshold value.
  • control unit receives the response based on the traffic volume of communication with the wireless terminal device in the other wireless base station device, and receives the response based on the content of the response. Conditions for performing control may be set.
  • the stop control can be performed. Further, when the own radio base station apparatus receives the above response including the content that the communication traffic volume with the radio terminal apparatus in the other radio base station apparatus is large, for example, the communication traffic volume in the other radio base station apparatus It is possible to recognize that there are many, set execution conditions of the stop control corresponding to this, and perform the stop control when the set execution conditions are satisfied. That is, it is possible to appropriately determine whether to stop transmitting radio signals according to the amount of communication traffic in other radio base station apparatuses that determine the start of communication between their own radio base station apparatus and radio terminal apparatus.
  • the traffic information acquisition unit sets the condition as the condition. It may be set that the state in which the acquired traffic amount is less than a predetermined threshold continues for a predetermined time.
  • the radio base station apparatus transmits a communication start instruction to its own radio base station apparatus.
  • the own radio base station apparatus When the own radio base station apparatus receives a communication start instruction from another radio base station apparatus, the own radio base station apparatus transitions to the active state again, so that the above-described wave stopping control becomes a useless operation. Even in such a case, even if the own radio base station apparatus has a communication traffic volume below a predetermined threshold value, the communication traffic volume does not continue below the predetermined threshold value for a predetermined time. By continuing the active state, it is possible to suppress the occurrence of useless stop control. That is, its own radio base station apparatus can continuously transmit and receive radio signals without performing stop control.
  • the control unit receives the response of the content corresponding to the case where the traffic amount of the other radio base station device is small, the traffic information acquisition unit as the condition You may set that the acquired said traffic amount becomes less than a predetermined threshold value.
  • the radio base station apparatus can perform the wave stop control after confirming that the traffic volume of the other radio base station apparatus is small. That is, the radio base station apparatus performs wave stop control after confirming that it is unlikely that another radio base station apparatus can start transmission / reception of radio signals again after performing wave stop control. be able to.
  • control unit when the control unit receives the communication start instruction and starts transmission / reception of the wireless signal, data having a priority level equal to or higher than a predetermined level is included in communication performed by the wireless signal.
  • the determination of stopping at least transmission of the radio signal may not be performed.
  • a radio base station apparatus is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus.
  • the transmission power of the wireless signal is gradually increased by controlling the wireless communication unit.
  • a control unit that starts communication with the wireless terminal device.
  • the wireless base station device can receive the wireless terminal device that is communicating with other wireless base station devices without interrupting communication. Can be “moved”. As a result, when the radio base station apparatus starts communication with the radio terminal apparatus, for example, the radio base station apparatus selects another radio base station apparatus and the communication of the radio terminal apparatus located in the vicinity of itself is interrupted. Can be prevented.
  • a radio base station apparatus is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus.
  • the wireless signal between the wireless terminal device is controlled by controlling the wireless communication unit A control unit that starts transmission / reception of the radio signal, and the control unit determines whether to stop at least transmission of the radio signal in a state in which transmission / reception of the radio signal is started in response to the communication start instruction, If it is determined that the transmission of the radio signal is to be stopped, the other radio base station apparatus is notified that the transmission of the radio signal is to be stopped.
  • the radio base station apparatus determines to stop the transmission of the radio signal, the radio base station apparatus notifies the other radio base station apparatus that the transmission of the radio signal is stopped. It is possible to prevent the “movement” operation of the wireless terminal device between the devices from being repeated.
  • a communication system includes a coverage base station that communicates with the wireless terminal device by transmitting and receiving wireless signals to and from the wireless terminal device, and a wireless terminal A capacity booster base station that communicates with the wireless terminal device by transmitting and receiving wireless signals to and from the device, wherein the capacity booster base station is a communication start instruction from the coverage base station
  • the wireless terminal starts transmission / reception of the wireless signal, and determines whether to stop at least transmission of the wireless signal in a state where transmission / reception of the wireless signal is started, If it is determined that the transmission of the radio signal is to be stopped, the coverage base station is notified that the transmission of the radio signal is to be stopped, and the coverage base station is notified.
  • the station receives the notification, acquires the traffic volume of communication with the wireless terminal device, transmits a response of the content based on the acquired traffic volume to the capacity booster base station, and the capacity booster base station Stops receiving the wireless signal after receiving the response.
  • the coverage booster base station notifies the coverage base station that the capacity booster base station stops transmitting radio signals, so that the capacity booster base station stops the radio signal based on the traffic amount in the coverage base station. Therefore, an appropriate operation according to the traffic amount in the coverage base station can be realized.
  • a communication control method provides communication in a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus.
  • the control method includes a step of starting transmission / reception of a radio signal with the radio terminal apparatus, and a traffic volume of communication with the radio terminal apparatus. Based on the acquired step and the acquired traffic volume, it is determined whether or not to stop at least transmission of the radio signal. If it is determined to stop transmission of the radio signal, transmission power of the radio signal is determined. And a step of performing wave stop control for stopping the transmission of the radio signal by lowering the signal stepwise.
  • the radio base station apparatus can “move” the radio terminal apparatus to another radio base station apparatus before communication between the radio terminal apparatus and the radio terminal apparatus that has selected the radio base station apparatus is interrupted.
  • the radio base station apparatus can prevent the communication of the radio terminal apparatus that has selected itself from being interrupted when performing the stop control.
  • the radio base station apparatus notifies the radio terminal apparatus of information about the cell and the neighboring cell that it forms, that is, the frequency of the radio signal and the ID (identification) of the neighboring cell.
  • the wireless terminal device detects and measures neighboring cells based on information notified from the wireless base station device.
  • the wireless terminal device starts moving to the neighboring cell based on the measurement result.
  • “movement” of the wireless terminal device means not only handover but also through which cell the wireless terminal device in an idle state starts communication in the future, that is, when a call or data communication is started. This means selecting whether to perform communication.
  • handover means that a radio base station apparatus that is a communication partner of a radio terminal apparatus that is on standby or in communication is switched.
  • the destination of the wireless terminal device is determined by the wireless base station device or the higher-level device in the core network. Further, when the wireless terminal device is not communicating with the wireless base station device, the wireless terminal device determines the destination of the wireless terminal device.
  • FIG. 1 is a diagram showing a configuration of a radio communication system according to an embodiment of the present invention.
  • a wireless communication system 301 is a mobile communication system in accordance with LTE (Long Term Evolution) standardized by, for example, 3GPP (Third Generation Partnership Project), and includes a coverage base station (wireless base station apparatus) 201. And capacity booster base stations (radio base station apparatuses) 101A and 101B, a radio terminal apparatus 202, and a host apparatus 204.
  • LTE Long Term Evolution
  • 3GPP Third Generation Partnership Project
  • each of the capacity booster base stations 101A and 101B may be referred to as a capacity booster base station 101.
  • a capacity booster base station 101 one coverage base station and two capacity booster base stations are representatively shown, but a small number or a larger number of coverage base stations and capacity booster base stations may be provided. .
  • the coverage base station 201 is, for example, a macro base station, and forms a coverage cell CC having a radius of several kilometers.
  • the coverage base station 201 can communicate with the wireless terminal devices 202A, 202B, and 202C by transmitting and receiving wireless signals to and from the wireless terminal devices 202A, 202B, and 202C existing in the coverage cell CC.
  • each of the wireless terminal devices 202A, 202B, and 202C may be referred to as a wireless terminal device 202.
  • the capacity booster base stations 101A and 101B are installed in the coverage cell CC in order to compensate for the shortage of communication capacity of the coverage base station 201.
  • the capacity booster base stations 101A and 101B are pico base stations, for example, and form capacity booster cells CBCA and CBCB having a radius of 10 to 50 meters, respectively. Further, the capacity booster base station 101 may be a femto base station.
  • the capacity booster base station 101A can communicate with the wireless terminal device 202A by transmitting and receiving wireless signals to and from the wireless terminal device 202A existing in the capacity booster cell CBCA.
  • the capacity booster base station 101B can communicate with the wireless terminal device 202B by transmitting and receiving wireless signals to and from the wireless terminal device 202B existing in the capacity booster cell CBCB.
  • the coverage base station 201 and the capacity booster base stations 101A and 101B have cell IDs for identifying the coverage cells CC and capacity booster cells CBCA and CBCB formed by itself.
  • the wireless terminal device 202A, the wireless terminal device 202B, and the wireless terminal device 202C have the same function and have no essential difference. However, the base stations that can perform communication differ depending on which base station the wireless terminal apparatus 202 is in.
  • FIG. 2 is a diagram showing a configuration of a capacity booster base station according to the embodiment of the present invention.
  • capacity booster base station 101 includes an antenna 91, a circulator 92, a wireless reception unit (wireless communication unit) 93, a wireless transmission unit (wireless communication unit) 94, and a signal processing unit 95.
  • the signal processing unit 95 includes a reception signal processing unit 96 and a transmission signal processing unit 97.
  • the signal processing unit 95, the communication traffic monitoring unit 98, and the transmission power control unit 99 are realized by a CPU (Central Processing Unit) or a DSP (Digital Signal Processor).
  • CPU Central Processing Unit
  • DSP Digital Signal Processor
  • the circulator 92 outputs the radio signal from the radio terminal device 202 received by the antenna 91 to the radio reception unit 93 and outputs the radio signal received from the radio transmission unit 94 to the antenna 91.
  • the radio reception unit 93 converts the radio signal received from the circulator 92 into a baseband signal and outputs it to the reception signal processing unit 96.
  • the radio reception unit 93 converts the frequency of the radio signal received from the circulator 92 into an IF (Intermediate Frequency) signal, converts the frequency-converted signal into a digital signal, and outputs the digital signal to the reception signal processing unit 96.
  • IF Intermediate Frequency
  • the received signal processing unit 96 performs signal processing such as despreading in the CDMA (Code Division Multiple Access) method on the digital signal received from the wireless receiving unit 93, or FFT (Fast Fourier Transform) in the OFDM (Orthogonal Frequency Division Multiplex) method. ) And the like, and a part or all of the digital signal after the signal processing is converted into a predetermined frame format and transmitted to the host device 204 via the core network 203.
  • CDMA Code Division Multiple Access
  • FFT Fast Fourier Transform
  • OFDM Orthogonal Frequency Division Multiplex
  • the transmission signal processing unit 97 performs IFFT in the OFDM (Orthogonal Frequency Division Multiplex) method on communication data obtained by converting communication data received from the host device 204 via the core network 203 into a predetermined frame format or communication data generated by itself. Signal processing such as (Inverse Fast Fourier Transform) or signal processing such as spreading in the CDMA (Code Division Multiple Access) system is performed, and the digital signal after this signal processing is output to the wireless transmission unit 94.
  • OFDM Orthogonal Frequency Division Multiplex
  • the wireless transmission unit 94 converts the baseband signal received from the transmission signal processing unit 97 into an analog signal, converts the frequency of the converted analog signal into a wireless signal, and outputs the signal to the circulator 92.
  • FIG. 3 is a diagram showing a configuration of a radio transmission unit in the capacity booster base station according to the embodiment of the present invention.
  • the wireless transmission unit 94 includes an amplifier 11, an amplifier 15, an oscillator 12, a mixer 13, and a digital analog converter (DAC) 14.
  • DAC digital analog converter
  • the digital / analog converter 14 converts the baseband signal received from the transmission signal processing unit 97 into an analog signal and outputs the analog signal to the amplifier 15.
  • the amplifier 15 amplifies the analog signal received from the digital-analog converter 14 and outputs the amplified analog signal to the mixer 13.
  • the mixer 13 multiplies the carrier wave generated in the oscillator 12 by the analog signal received from the digital-analog converter 14 to generate a radio signal and outputs the radio signal to the amplifier 11.
  • the amplifier 11 amplifies the radio signal received from the mixer 13 and outputs the amplified radio signal to the circulator 92.
  • the amplification factor in the amplifier 15 is controlled by the transmission power control unit 99.
  • the amplification factor is expressed as a ratio of the power of the analog signal received by the amplifier 15 from the digital-analog converter 14 and the power of the analog signal output from the amplifier 15 to the mixer 13.
  • the amplification factor in the amplifier 11 is controlled by the transmission power control unit 99.
  • the amplification factor is represented by the ratio of the power of the radio signal received by the amplifier 11 from the mixer 13 and the power of the radio signal output from the amplifier 11 to the circulator 92.
  • the capacity booster base station 101 can be in a dormant state or an active state. For example, when the capacity booster base station 101 is in an inactive state, the amplification factor in the amplifier 11 is 0, and radio waves for wireless communication are not transmitted from the capacity booster base station 101. In addition, in the active state of the capacity booster base station 101, radio waves are transmitted from the capacity booster base station 101 with power sufficient to enable wireless communication with the wireless terminal device 202 in the capacity booster cell formed by itself.
  • communication traffic monitoring unit 98 monitors communication data with wireless terminal device 202 processed in reception signal processing unit 96 and transmission signal processing unit 97, for example, IP packets transmitted and received. .
  • QoS Quality of Service
  • QoS Quality of Service
  • an IP packet to be transmitted / received is accompanied by a QCI (QoS Class Identifier) that indicates the priority of communication of the IP packet in nine stages.
  • the communication traffic monitoring part 98 acquires the traffic amount per unit time of each priority by monitoring the QCI field in an IP packet. Further, the communication traffic monitoring unit 98 calculates the amount of communication traffic per unit time by summing the traffic amounts per unit time of the acquired priorities. The communication traffic monitoring unit 98 notifies the transmission power control unit 99 of the traffic amount per unit time and the communication traffic amount per unit time of each acquired priority.
  • the transmission power control unit 99 communicates with the host device 204, the coverage base station 201 and the capacity booster base station 101 arranged in the vicinity of the host device 204 via the core network, the state of the base station, various requests, and responses to the requests. Send and receive. In addition, the transmission power control unit 99 receives the traffic amount per unit time and the communication traffic amount per unit time notified from the communication traffic monitoring unit 98, the request from the coverage base station 201 or the host device 204. Based on the above, the amplification factors of the amplifier 11 and the amplifier 15 in the wireless transmission unit 94 are independently controlled.
  • the transmission power control unit 99 when receiving a cell activation request (CellActivationRequest) from the coverage base station 201 or the higher-level device 204, the transmission power control unit 99 receives at least one of the amplifier 11 and the amplifier 15 in the wireless transmission unit 94 according to a predetermined procedure. Increase amplification on one side.
  • CellActivationRequest a cell activation request
  • the transmission power control unit 99 decreases the amplification factor of at least one of the amplifier 11 and the amplifier 15 in the wireless transmission unit 94 according to a predetermined procedure. .
  • FIG. 4 is a diagram showing a configuration of a coverage base station according to the embodiment of the present invention.
  • coverage base station 201 includes antenna 111, circulator 112, wireless reception unit (wireless communication unit) 113, wireless transmission unit (wireless communication unit) 114, signal processing unit 115, and communication.
  • a traffic monitoring unit 118 and a neighboring base station control unit 119 are provided.
  • the signal processing unit 115 includes a reception signal processing unit 116 and a transmission signal processing unit 117.
  • the signal processing unit 115, the communication traffic monitoring unit 118, and the peripheral base station control unit 119 are realized by a CPU (Central Processing Unit) or a DSP (Digital Signal Processor).
  • CPU Central Processing Unit
  • DSP Digital Signal Processor
  • the antenna 111, the circulator 112, the radio reception unit 113, the radio transmission unit 114, and the transmission signal processing unit 117 are the antenna 91, the circulator 92, the radio reception unit 93, the radio transmission unit 94, and the transmission signal in the capacity booster base station 101.
  • Each of the processing units 97 has the same function.
  • the received signal processing unit 116 has the following functions in addition to the functions of the received signal processing unit 96 in the capacity booster base station 101. That is, when the received signal processing unit 116 receives a capacity booster base station activation request (CapacityBoosterREQ) from the wireless terminal device 202, the received signal processing unit 116 transmits the received capacity booster base station activation request to the neighboring base station control unit 119.
  • the capacity booster base station activation request includes at least a request from the wireless terminal device 202 to cause the coverage base station 201 to transition the capacity booster base station 101 in the dormant state to the active state.
  • the communication traffic monitoring unit 118 monitors the traffic amount of communication with the wireless terminal device 202 processed in the reception signal processing unit 116 and the transmission signal processing unit 117, for example, the data amount of IP packets per unit time, and monitors the monitored communication. The traffic amount is notified to the neighboring base station control unit 119.
  • the peripheral base station control unit 119 communicates with the host device 204 and the capacity booster base station 101 arranged in the vicinity of the host device 204 via the core network, and transmits and receives the status of the base station, various requests, and responses to the requests. Also, the peripheral base station control unit 119 determines whether to activate the capacity booster base stations 101A and 101B.
  • the neighboring base station control unit 119 receives a capacity booster base station activation request from the received signal processing unit 116, or the communication traffic amount per unit time notified from the communication traffic monitoring unit 118 is predetermined. When the threshold value is exceeded, the activation of the capacity booster base stations 101A and 101B is determined. Then, when the neighboring base station control unit 119 determines to activate the capacity booster base stations 101A and 101B, it transmits a cell activation request to the capacity booster base stations 101A and 101B.
  • FIG. 5 is a diagram showing the configuration of the wireless terminal apparatus according to the embodiment of the present invention.
  • a wireless terminal device 202 includes an antenna 121, a circulator 122, a wireless reception unit (wireless communication unit) 123, a wireless transmission unit (wireless communication unit) 124, a signal processing unit 125, A terminal control unit 128 and an input / output unit 129 are provided.
  • the signal processing unit 125 includes a reception signal processing unit 126 and a transmission signal processing unit 127.
  • the signal processing unit 125, the wireless terminal control unit 128, and the input / output unit 129 are realized by a CPU (Central Processing Unit), a DSP (Digital Signal Processor), or the like.
  • CPU Central Processing Unit
  • DSP Digital Signal Processor
  • Circulator 122 outputs the radio signal received from antenna 121 from coverage base station 201 or capacity booster base station 101 to radio receiving section 123, and outputs the radio signal received from radio transmitting section 124 to antenna 121. To do.
  • the radio reception unit 123 converts the radio signal received from the circulator 122 into a baseband signal and outputs the baseband signal to the reception signal processing unit 126.
  • the radio reception unit 123 converts the radio signal received from the circulator 122 into an IF (Intermediate Frequency) signal, converts the frequency-converted signal into a baseband signal, and outputs the baseband signal to the reception signal processing unit 126.
  • IF Intermediate Frequency
  • the reception signal processing unit 126 performs signal processing such as FFT (Fast Fourier Transform) in the OFDM (Orthogonal Frequency Division Multiplex) method on the digital signal received from the wireless reception unit 123, or reverse in the CDMA (Code Division Multiple Access) method.
  • Signal processing such as spreading is performed, and a part or all of the digital signal after the signal processing is converted into a predetermined frame format and transmitted to the wireless terminal control unit 128.
  • the transmission signal processing unit 127 performs, for example, spreading processing in the CDMA (Code Division Multiple Access) method on communication data obtained by converting communication data received from the wireless terminal control unit 128 into a predetermined frame format or communication data generated by itself.
  • Signal processing such as IFFT (Inverse Fast Fourier Transform) in the OFDM (Orthogonal Frequency Division Multiplex) system is performed, and the digital signal after this signal processing is output to the wireless transmission unit 124.
  • IFFT Inverse Fast Fourier Transform
  • OFDM Orthogonal Frequency Division Multiplex
  • the wireless transmission unit 124 converts the baseband signal received from the transmission signal processing unit 127 into an analog signal, converts the frequency of the converted analog signal into a wireless signal, and outputs it to the circulator 122.
  • the wireless terminal control unit 128 converts the digital signal stored in the frame format received from the reception signal processing unit 126 into, for example, audio data and video data, and converts it into an analog signal if necessary, and then a speaker, a microphone,
  • the data is transmitted to an input / output unit 129 configured by a display and a key input device.
  • the wireless terminal control unit 128 receives from the input / output unit 129, for example, voice data and a control signal for controlling the wireless terminal device 202 received in the key input device. Then, the wireless terminal control unit 128 processes a part of the received voice data and control signal as required, and transmits a predetermined frame format for transmitting the processed voice data and control signal to another wireless terminal device 202. For example, it is converted into an IP packet. At this time, the wireless terminal control unit 128 sets the QCI in the IP packet according to the voice data to be transmitted and the priority of the control signal.
  • the wireless terminal control unit 128 transmits a capacity booster base station activation request to the coverage base station 201 via a wireless signal.
  • FIG. 6 is a diagram showing an exemplary sequence of a handover operation in the radio communication system according to the embodiment of the present invention.
  • FIG. 6 is a sequence diagram showing in detail an operation of changing the selection destination to the capacity booster base station 101B when the wireless terminal device 202C communicating with the coverage base station 201 moves into the capacity booster cell CBCB. It is.
  • the wireless terminal device 202C is communicating with the coverage base station 201. That is, 202 C of radio
  • wireless terminal apparatuses are the states which have selected the coverage base station 201 as a communication destination, and are communicating with the coverage base station 201 (step S2).
  • the wireless terminal device 202C moves into the capacity booster cell CBCB (step S4).
  • the coverage base station 201 sets a frequency to be measured by the wireless terminal device 202C in communication with itself and another wireless base station device that transmits a wireless signal of the frequency (step S6).
  • the coverage base station 201 transmits a measurement start request for causing the wireless terminal device 202C to measure the reception power of the wireless signal transmitted from the other wireless base station device that has been set, to the wireless terminal device 202C.
  • This measurement start request includes information of the radio base station apparatuses 101 and 201 to be measured, that is, the cell ID. Further, the measurement start request includes the transmission frequency of each of the radio base station apparatuses 101 and 201 (step S8).
  • the wireless terminal device 202C receives the measurement start request from the coverage base station 201, and measures the received power of the wireless signal transmitted from the wireless base station device indicated by the received measurement start request (step S10).
  • the wireless terminal device 202C transmits a measurement result notification indicating the measurement result of the received power to the coverage base station 201 (step S12).
  • the coverage base station 201 acquires measurement information indicating a measurement result for each cell ID based on the measurement result notification received from the wireless terminal device 202. (Step S14).
  • the coverage base station 201 generates neighboring cell information for the wireless terminal device 202C based on the acquired measurement information, and stores it in a storage unit (not shown) (step S16).
  • the coverage base station 201 determines whether or not the wireless terminal device 202C should be handed over based on the measurement result notification received from the wireless terminal device 202C. For example, the capacity booster base station 101B is determined as a handover destination with reference to the cell information, and a handover request indicating the capacity booster base station 101B is transmitted to the host apparatus 204 (step S18).
  • the host device 204 receives the handover request from the coverage base station 201 and transmits the handover request to the capacity booster base station 101B (step S20).
  • the capacity booster base station 101B receives the handover request from the upper apparatus 204 and transmits a handover response to the handover request to the upper apparatus 204 (step S22).
  • the host device 204 receives a handover response from the capacity booster base station 101B, and transmits a handover instruction to the coverage base station 201 (step S24).
  • the coverage base station 201 receives a handover instruction from the host apparatus 204 and transmits an RRC (Radio Resource Control) connection re-establishment instruction to the wireless terminal apparatus 202C (step S26).
  • RRC Radio Resource Control
  • the coverage base station 201 transmits a status notification indicating its own communication status and the like to the higher-level device 204 (step S28).
  • the host device 204 receives the status notification from the coverage base station 201, and transmits the status notification indicating the communication content and the like with the wireless terminal device 202C to the capacity booster base station 101B (step S30).
  • the wireless terminal device 202C transmits an RRC connection establishment notification to the capacity booster base station 101B (step S32).
  • the capacity booster base station 101B receives the RRC connection establishment notification from the wireless terminal device 202C and transmits a handover completion notification to the higher-level device 204 (step S34).
  • the host device 204 receives the handover completion notification from the capacity booster base station 101B, and transmits a terminal information release instruction to the coverage base station 201 (step S36).
  • the coverage base station 201 receives a terminal information release instruction from the higher-level device 204, releases information related to the wireless terminal device 202C, and transmits a terminal information release completion notification to the higher-level device 204 (step S38).
  • the wireless terminal device 202C selects the capacity booster base station 101B as a communication destination and is in communication with the capacity booster base station 101B (step S40).
  • FIG. 6 illustrates the case where the wireless terminal device 202C switches the communication destination from the coverage base station 201 to the capacity booster base station 101B.
  • the handover operation is similarly performed even if the wireless base station device serving as the communication destination is replaced. Is achieved. That is, the same procedure is achieved when the wireless terminal device 202C communicating with the capacity booster base station 101B switches the communication destination to the coverage base station.
  • reducing the power consumed to transmit radio waves from the radio base station apparatus is effective for reducing the business operation cost (OPEX) in the radio communication business.
  • the reduction in power consumption in the radio base station apparatus also contributes to the reduction of carbon dioxide emissions.
  • FIG. 7 is a diagram illustrating a configuration of a wireless communication system when power efficiency is improved.
  • capacity booster base stations 101A and 101B are in a dormant state, so capacity booster cells CBCA and CBCB are not formed. Accordingly, all of the wireless terminal devices 202A, 202B, and 202C are located in the coverage cell CC.
  • the coverage base station 201 becomes active with respect to the capacity booster base stations 101A and 101B in order to reduce the amount of communication traffic. Request to transition.
  • FIG. 8 is a diagram illustrating a state in which the capacity booster base stations 101A and 101B transition to the active state in accordance with the transition request to the active state from the coverage base station 201.
  • radio terminal apparatuses 202A, 202B, and 202C that have been located in the coverage cell
  • radio terminal apparatuses 202A and 202B that exist near capacity booster base stations 101A and 101B, respectively
  • City booster cells CBCA and CBCB will be located respectively.
  • many radio terminal apparatuses 202A are located in the capacity booster cell CBCA, and a small number of radio terminal apparatuses 202B are located in the capacity booster cell CBCB.
  • the capacity booster base station 101B cannot fully exhibit the effect of reducing the amount of communication traffic in the coverage base station 201, but consumes power for transmitting radio waves and the like because it is in an active state. For this reason, capacity booster base station 101B changes to a dormant state in order to improve the power efficiency in a radio
  • FIG. 9 is a diagram illustrating a state of the wireless communication system when the capacity booster base station 101B transitions to a dormant state.
  • radio terminal apparatus 202B that has been in capacity booster cell CBCB will be in coverage cell CC.
  • FIG. 10 is a diagram showing an example of a sequence of power efficiency improvement operation in the wireless communication system according to the embodiment of the present invention.
  • FIG. 10 is a sequence diagram illustrating in detail the operation of improving the power efficiency when the capacity booster base stations 101A and 101B transition to the active state in response to a request from the coverage base station 201 described in FIGS. .
  • capacity booster base stations 101A and 101B are in a dormant state (steps S42 and S44). Therefore, the wireless terminal devices 202A, 202B, and 202C are in a state where the coverage base station 201 is selected as a communication destination and the communication with the coverage base station 201 is performed (steps S46, S48, and S50).
  • the coverage base station 201 monitors the amount of communication traffic between itself and each wireless terminal device 202 (step S52).
  • the communication traffic volume is monitored at regular intervals in each base station.
  • coverage base station 201 determines the activation of capacity booster base stations 101A and 101B when the amount of communication traffic between itself and each wireless terminal device 202 increases and the amount of communication traffic exceeds a predetermined threshold. (Step S54). That is, the coverage base station 201 operates the capacity booster base station to distribute communication traffic in order to reduce its own communication load.
  • the coverage base station 201 notifies the capacity booster base station 101A of a cell activation request via the X2 interface (step S56).
  • the coverage base station 201 notifies the capacity booster base station 101B of a cell activation request via the X2 interface (step S58).
  • the capacity booster base station 101A receives the notification of the cell activation request from the coverage base station 201 via the X2 interface, and confirms that the notification has been received with respect to the coverage base station 201 using the X2
  • a cell activation response (CellActivationResponse) is notified via the interface (step S60).
  • the capacity booster base station 101B receives the notification of the cell activation request from the coverage base station 201 via the X2 interface, and confirms that the notification has been received with respect to the coverage base station 201.
  • a cell activation response is notified via (step S62).
  • the capacity booster base station 101A increases the power of the transmission radio wave and transitions to the active state (step S64). Further, the capacity booster base station 101B increases the power of the transmission radio wave and transitions to the active state (step S66).
  • the wireless terminal device 202A measures the received power of the wireless signal transmitted from the coverage base station 201 and the capacity booster base station 101A.
  • the wireless terminal device 202B measures the received power of the wireless signal transmitted from the coverage base station 201 and the capacity booster base station 101B.
  • the wireless terminal device 202A and the wireless terminal device 202B transmit a measurement result notification indicating the measurement result of the received power to the coverage base station 201.
  • the coverage base station 201 performs a handover operation based on the received measurement result notification (step S68). The procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
  • the wireless terminal device 202A selects the capacity booster base station 101A as a communication destination by the handover operation and is in communication with the capacity booster base station 101A (step S70).
  • the wireless terminal device 202B selects the capacity booster base station 101B as a communication destination by the handover operation and is in communication with the capacity booster base station 101B (step S72).
  • the wireless terminal device 202C is in a state where it continues to select the coverage base station 201 as a communication destination and communicate with the coverage base station 201 after the handover operation (step S74).
  • the coverage base station 201, the capacity booster base station 101A, and the capacity booster base station 101B monitor the amount of communication traffic between itself and each wireless terminal device 202 (step S76).
  • the capacity booster base station 101B determines its transition to a dormant state (step S78). .
  • the capacity booster base station 101B reduces the transmission power of the radio signal. (Step S80).
  • the wireless terminal device 202B measures the received power of the wireless signal transmitted from the coverage base station 201 and the capacity booster base station 101B.
  • the wireless terminal device 202B transmits a measurement result notification indicating the measurement result of the received power to the capacity booster base station 101B.
  • the capacity booster base station 101B performs a handover operation based on the received measurement result notification (step S82).
  • the procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
  • the wireless terminal apparatus 202B selects the coverage base station 201 as a communication destination by the handover operation and is in a state of communicating with the coverage base station 201 (step S84).
  • the capacity booster base station 101B confirms that the wireless terminal device 202B communicating with itself has communicated with the coverage base station 201 by the handover operation, so that the capacity booster base station 101B In order to make known to the base station, the following operation is performed. That is, the capacity booster base station 101B notifies the coverage base station 201 and the capacity booster base station 101A of an arrangement information update request (ENB Configuration Update Request) via the X2 interface (steps S86 and S88).
  • an arrangement information update request ENB Configuration Update Request
  • the capacity booster base station 101A receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the capacity booster base station 101A updates its neighbor cell information, and an arrangement information update response (ENB) indicating that it has been updated. Configuration Update Response) is notified to the capacity booster base station 101B via the X2 interface (step S90).
  • ENB arrangement information update response
  • the coverage base station 201 When the coverage base station 201 receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the coverage base station 201 updates its neighbor cell information and sends an arrangement information update response indicating that it has been updated to the capacity booster base The station 101B is notified via the X2 interface (step S92).
  • the capacity booster base station 101B when the capacity booster base station 101B receives the arrangement information update response via the X2 interface, the capacity booster base station 101B transitions to a dormant state by setting the amplification factor of the amplifier 11 in the wireless transmission unit 94 to 0, for example (step S94).
  • the capacity booster base station 101B can reduce the power of the transmission radio wave by transitioning to the dormant state, so that the power efficiency in the wireless communication system 301 is improved.
  • the capacity booster base station with a small amount of communication traffic is shifted to the dormant state, so that the power consumed by the capacity booster base station can be reduced.
  • the capacity booster base station 101B reduces the transmission power of the radio signal in step S80 of FIG. 10, the following problem may occur. That is, when the capacity booster base station 101B sharply decreases the power of the transmission radio wave, communication between the established self and the wireless terminal device 202B is interrupted. And the radio
  • FIG. 11 is a diagram illustrating an example of a sequence when the capacity booster base station transitions to a dormant state in the wireless communication system according to the embodiment of the present invention.
  • wireless terminal apparatus 202B is in a state where capacity booster base station 101B is selected as a communication destination and communication is performed with capacity booster base station 101B (step S112).
  • the capacity booster base station 101A and the capacity booster base station 101B monitor the amount of communication traffic between itself and each wireless terminal device 202 (step S114). For example, the capacity booster base station 101B determines its transition to the dormant state when the communication traffic volume between itself and the wireless terminal device 202B decreases and the communication traffic volume falls below a predetermined threshold (step). S116).
  • the capacity booster base station 101B reduces the power of the transmission radio wave, for example, by reducing the amplification factor of the amplifier 11 in the wireless transmission unit 94 (step S118). At this time, if the capacity booster base station 101B sharply reduces the power of the transmission radio wave, there is a possibility that communication with the wireless terminal device 202B that has selected itself is interrupted. In order to prevent the communication from being interrupted, the capacity booster base station 101B reduces the power of the transmission radio wave according to the following procedure.
  • FIG. 12 is a flowchart defining an operation procedure when the capacity booster base station in the wireless communication system according to the embodiment of the present invention transitions from the active state to the dormant state by reducing the power of the transmitted radio wave.
  • FIG. 12 shows in detail the operation from step S114 in which the capacity booster base station 101B in FIG. 11 monitors the communication traffic amount to step S132 in which the capacity booster base station 101B transitions to the dormant state.
  • capacity booster base station 101B is in an active state and is transmitting radio waves. (Step S152).
  • the capacity booster base station 101B monitors the communication traffic amount between itself and the wireless terminal device 202B that has selected itself (step S154).
  • the capacity booster base station 101B continues to monitor the amount of communication traffic when the amount of communication traffic being monitored does not fall below a predetermined threshold (NO in step S156).
  • capacity booster base station 101B decreases, for example, the amplification factor of amplifier 11 in radio transmission section 94 by ⁇ G1 (step S158). .
  • the capacity booster base station 101B waits for the waiting time ⁇ W1 while keeping the amplification factor of the amplifier 11 in the radio transmission unit 94 constant, for example (step S160). By doing so, the capacity booster base station 101B can gradually reduce the power of the transmission radio wave.
  • the capacity booster base station 101B confirms whether the wireless terminal device 202B that has selected itself continues to select itself. For example, when the capacity booster base station 101B selects all the other radio base station devices by handover (NO in step S162) due to a decrease in the power of the transmission radio wave, all of the radio terminal devices 202B that have selected itself have selected. The following operations are performed.
  • the capacity booster base station 101B sends an arrangement information update request via the X2 interface to the coverage base station 201 and the capacity booster base station 101A in order to inform the neighboring base stations that it will transition to the dormant state. (Step S164).
  • the capacity booster base station 101B transitions to a dormant state (step S168) by setting the amplification factor of the amplifier 11 in the wireless transmission unit 94 to 0 (step S166), for example.
  • the capacity booster base station 101B when there is a wireless terminal device 202B that continues to select the capacity booster base station 101B (YES in step S162), the capacity booster base station 101B further increases the amplification factor of the amplifier 11 in the wireless transmission unit 94, for example. Decrease by ⁇ G1 (step S158).
  • the capacity booster base station 101B increases the amplification factor of the amplifier 11 in the radio transmission unit 94 by ⁇ G1, for example, until all of the radio terminal apparatuses 202B that have selected itself select another radio base station apparatus by handover. Lowering (step S158), the process waits for the waiting time ⁇ W1 (step S160) while the amplification factor of the amplifier 11 is kept constant (step S160). That is, the capacity booster base station 101B performs stop control to stop the transmission of the radio signal after reducing the transmission power of the current radio signal by one or more steps.
  • the power of the transmission radio wave from the capacity booster base station 101B decreases by a constant power every standby time ⁇ W1. Therefore, the power of the radio wave transmitted from the capacity booster base station 101B measured by the wireless terminal device 202B decreases by a constant power for each standby time ⁇ W1. That is, the received power received by the wireless terminal device 202B is not abrupt but decreases gradually.
  • the capacity booster base station 101B can move the wireless terminal device 202B to the coverage base station 201 before the communication between the wireless terminal device 202B that has selected itself and the wireless booster device 202B is interrupted.
  • the capacity booster base station 101 can prevent the communication of the wireless terminal device 202 that has selected itself from being interrupted when transitioning to the dormant state.
  • the reception power of the radio signal transmitted from the capacity booster base station 101B in the radio terminal device 202B decreases due to the decrease in the power of the radio wave transmitted by the capacity booster base station 101B.
  • the wireless terminal device 202B transmits a measurement result notification indicating the measurement result of the received power of the radio signal from each base station to the capacity booster base station 101B.
  • the capacity booster base station 101B performs a handover operation based on the received measurement result notification (step S120).
  • the procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
  • the wireless terminal device 202B selects the coverage base station 201 as a communication destination by the above handover operation and is in communication with the coverage base station 201 (step S122).
  • the capacity booster base station 101B confirms that the wireless terminal device 202B communicating with itself has communicated with the coverage base station 201 by the handover operation, so that the capacity booster base station 101B In order to make known to the base station, the following operation is performed. That is, the capacity booster base station 101B notifies the coverage base station 201 and the capacity booster base station 101A of an arrangement information update request via the X2 interface (steps S124 and S126).
  • the coverage base station 201 when the coverage base station 201 receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the coverage base station 201 updates its own neighboring cell information and sends an arrangement information update response indicating that the capacity booster has been updated.
  • the base station 101B is notified via the X2 interface (step S128).
  • the capacity booster base station 101A when the capacity booster base station 101A receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the capacity booster base station 101A updates its own neighboring cell information and sends an arrangement information update response indicating the update to the capacity booster base station 101B.
  • the booster base station 101B is notified via the X2 interface (step S130).
  • the capacity booster base station 101B when the capacity booster base station 101B receives the arrangement information update response via the X2 interface, the capacity booster base station 101B transitions to a dormant state by setting the amplification factor of the amplifier 11 in the wireless transmission unit 94 to 0, for example (step S132).
  • Example 2 of transmission power control Referring to FIG. 10 again, when capacity booster base stations 101A and 101B transition to the active state in steps S64 and S66 of FIG. 10, the following problems may occur. That is, when the capacity booster base station 101 transitions to the active state, the capacity booster base station 101 transmits broadcast information including, for example, the position information of the capacity booster base station 101 or threshold information of the received power, by radio waves of normal power. To do.
  • the broadcast information is transmitted by radio signals in the same frequency band between the base stations so that all the radio terminal apparatuses 202 can receive the broadcast information.
  • the wireless terminal device 202 located in the vicinity of the capacity booster base station 101 receives a high-power radio signal from the capacity booster base station 101. Become.
  • the wireless terminal device 202 cannot receive a low-power wireless signal from the coverage base station 201 and is disconnected from the wireless network. Therefore, the above problem is solved by the following operation.
  • FIG. 13 is a diagram illustrating an example of a sequence when the capacity booster base station transitions to an active state in the wireless communication system according to the embodiment of the present invention.
  • capacity booster base stations 101A and 101B are in a dormant state (steps S194 and S196).
  • the wireless terminal device 202B is in a state of selecting the coverage base station 201 as a communication destination and communicating with the coverage base station 201 (step S192).
  • the coverage base station 201 monitors the amount of communication traffic between itself and each wireless terminal device 202 (step S198). For example, the coverage base station 201 determines to transition the capacity booster base stations 101A and 101B to the active state when the amount of communication traffic between itself and each wireless terminal device 202 exceeds a predetermined threshold (step). S200).
  • the coverage base station 201 notifies the capacity booster base stations 101A and 101B of the cell activation request via the X2 interface in order to shift the capacity booster base stations 101A and 101B to the active state ( Steps S202 and S204).
  • the capacity booster base stations 101A and 101B receive the cell activation request from the coverage base station 201 via the X2 interface, the capacity booster base stations 101A and 101B contact the coverage base station 201 with the X2 interface to confirm that the notification has been received. A cell activation response is notified via (steps S206 and S208).
  • the capacity booster base stations 101A and 101B increase the power of the transmission radio wave, for example, by increasing the amplification factor of the amplifier 11 in the wireless transmission unit 94 (steps S210 and 212).
  • the capacity booster base stations 101A and 101B rapidly increase the power of the transmission radio wave, there is a possibility that the communication with each wireless terminal device 202 that has selected itself is interrupted.
  • the capacity booster base stations 101A and 101B increase the power of the transmission radio wave according to the following procedure.
  • FIG. 14 is a flowchart that defines an operation procedure when the power of the radio wave transmitted by the capacity booster base station in the wireless communication system according to the embodiment of the present invention is increased to transition from the sleep state to the active state.
  • FIG. 14 shows in detail operations from step S202 in which the capacity booster base stations 101A and 101B in FIG. 13 receive a cell activation request from the coverage base station 201 via the X2 interface to step S212 in which the transmission power is increased. .
  • capacity booster base stations 101A and 101B are in a dormant state and do not transmit radio waves. (Step S242).
  • the capacity booster base stations 101A and 101B receive a cell activation request from the coverage base station 201 (step S244).
  • the capacity booster base stations 101A and 101B increase the amplification factor of the amplifier 11 in, for example, the wireless transmission unit 94 by ⁇ G2 (step S246).
  • the capacity booster base stations 101A and 101B wait for the waiting time ⁇ W2 while keeping the amplification factor of the amplifier 11 in the radio transmission unit 94 constant, for example (step S248). By doing so, the capacity booster base stations 101A and 101B can increase the power of the transmission radio wave stepwise.
  • the capacity booster base stations 101A and 101B confirm, for example, whether or not the amplification factor of the amplifier 11 in the wireless transmission unit 94 has reached a predetermined level. For example, when the amplification factor of amplifier 11 in wireless transmission unit 94 reaches a predetermined level (YES in step S250), capacity booster base stations 101A and 101B are activated (step S252).
  • the capacity booster base stations 101A and 101B use the amplification factor of the amplifier 11 in the wireless transmission unit 94. Is further increased by ⁇ G2 (step S246). Thereafter, the capacity booster base stations 101A and 101B increase the amplification factor of the amplifier 11 in the wireless transmission unit 94 by ⁇ G2 until the amplification factor of the amplifier 11 in the wireless transmission unit 94 reaches a predetermined level (step S246). The process of waiting for the waiting time ⁇ W2 while keeping the amplification factor of the amplifier 11 at its own constant (step S248) is repeatedly executed.
  • the power of the transmission radio wave from the capacity booster base station 101 increases by a constant power every standby time ⁇ W2. Therefore, the power of the radio wave transmitted from the capacity booster base station 101B measured by the wireless terminal device 202B increases by a constant power for each standby time ⁇ W2. That is, the received power received by the wireless terminal device 202 is not abrupt but increases gradually.
  • the capacity booster base station 101B can hand over the wireless terminal device 202B, which has selected the coverage base station 201, without interrupting communication.
  • the coverage base station 201 is selected and communication of the wireless terminal device 202B located in the vicinity of the capacity booster base station 101 is prevented from being interrupted. it can.
  • the reception power of radio signals transmitted from capacity booster base station 101B in radio terminal apparatus 202B increases. To do. However, there is no significant change in the reception power of the radio signal transmitted from the coverage base station 201 in the radio terminal device 202B.
  • the wireless terminal device 202B transmits a measurement result notification indicating the measurement result of the received power of the radio signal from each base station to the coverage base station 201.
  • the coverage base station 201 performs a handover operation based on the received measurement result notification (step S214).
  • the procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
  • the wireless terminal device 202B selects the capacity booster base station 101B as a communication destination by the handover operation and is in communication with the capacity booster base station 101B (step S216).
  • FIG. 15 is a diagram for explaining a problem that may occur when a capacity booster base station transitions from an active state to a dormant state.
  • capacity booster base stations 101A and 101B are active and transmitting radio waves (steps S272 and 274).
  • the wireless terminal device 202B is in a state of selecting the capacity booster base station 101B as a communication destination and communicating with the capacity booster base station 101B (step S276).
  • the capacity booster base station 101B monitors the amount of communication traffic between itself and the wireless terminal device 202B (step S278). For example, the capacity booster base station 101B determines its transition to the dormant state when the communication traffic volume between itself and the wireless terminal device 202B decreases and the communication traffic volume falls below a predetermined threshold (step). S280). On the other hand, for example, the capacity booster base station 101A maintains the active state because the communication traffic amount between itself and the wireless terminal device 202 communicating with itself is large.
  • the capacity booster base station 101B reduces the power of the transmission radio wave by, for example, reducing the amplification factor of the amplifier 11 in the wireless transmission unit 94 (step S282). At this time, the capacity booster base station 101B may reduce the power of the transmission radio wave according to the procedure shown in FIG.
  • the reception power of the radio signal transmitted from the capacity booster base station 101B in the wireless terminal device 202B decreases. However, there is no significant change in the reception power of the radio signal transmitted from the coverage base station 201 in the radio terminal device 202B.
  • the wireless terminal device 202B transmits a measurement result notification indicating the measurement result of the received power of the radio signal from each base station to the capacity booster base station 101B.
  • the capacity booster base station 101B performs a handover operation based on the received measurement result notification (step S284).
  • the procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
  • the wireless terminal device 202B selects the coverage base station 201 as a communication destination by the handover operation and is in a state of communicating with the coverage base station 201 (step S286).
  • the capacity booster base station 101B confirms that the wireless terminal device 202B communicating with itself has communicated with the coverage base station 201 by the handover operation, so that the capacity booster base station 101B In order to make known to the base station, the following operation is performed. That is, the capacity booster base station 101B notifies an arrangement information update request via the X2 interface to the coverage base station 201 and the capacity booster base station 101A (steps S288 and S290).
  • the capacity booster base station 101A when the capacity booster base station 101A receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the capacity booster base station 101A updates its neighbor cell information and receives an arrangement information update response indicating that the update has been performed.
  • the city booster base station 101B is notified via the X2 interface (step S292).
  • the coverage base station 201 When the coverage base station 201 receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the coverage base station 201 updates its neighbor cell information and sends an arrangement information update response indicating that it has been updated to the capacity booster base The station 101B is notified via the X2 interface (step S294).
  • the capacity booster base station 101B when the capacity booster base station 101B receives the arrangement information update response via the X2 interface, the capacity booster base station 101B transitions to a dormant state by setting the amplification factor of the amplifier 11 in the wireless transmission unit 94 to 0, for example (step S298).
  • the coverage base station 201 monitors the communication traffic amount between itself and each wireless terminal device 202 communicating with itself (step S296). For example, the coverage base station 201 transitions the capacity booster base station 101 in a dormant state to an active state when the amount of communication traffic between itself and each wireless terminal device 202 communicating with the self exceeds a predetermined threshold value. Is determined (step S300).
  • the coverage base station 201 notifies the capacity booster base station 101B of a cell activation request via the X2 interface (step S302). Further, since the capacity booster base station 101A continues in the active state, the coverage base station 201 does not notify the capacity booster base station 101A of the cell activation request.
  • the capacity booster base station 101B receives the notification of the cell activation request from the coverage base station 201 via the X2 interface, and sends the X2 to the coverage base station 201 to confirm that the notification has been received.
  • a cell activation response is notified via the interface (step S304).
  • the capacity booster base station 101B increases the power of the transmission radio wave, for example, by increasing the amplification factor of the amplifier 11 in the wireless transmission unit 94 (step S306). At this time, the capacity booster base station 101B may increase the power of the transmission radio wave according to the procedure shown in FIG.
  • the reception power of the radio signal transmitted from the capacity booster base station 101B in the wireless terminal device 202B increases. However, there is no significant change in the reception power of the radio signal transmitted from the coverage base station 201 in the radio terminal device 202B.
  • the wireless terminal device 202B transmits a measurement result notification indicating the measurement result of the received power of the radio signal from each base station to the coverage base station 201.
  • the coverage base station 201 performs a handover operation based on the received measurement result notification (step S308).
  • the procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
  • the wireless terminal device 202B selects the capacity booster base station 101B as a communication destination by the handover operation and is in communication with the capacity booster base station 101B (step S310).
  • the capacity booster base station 101B monitors the amount of communication traffic between itself and the wireless terminal device 202B (step S312). However, since the amount of communication traffic between the capacity booster base station 101B and the wireless terminal device 202B remains small, the amount of communication traffic falls below a predetermined threshold (step S314). Next, the capacity booster base station 101B reduces the power of the transmission radio wave (step S316).
  • step S284 handover of the wireless terminal device 202B that has selected the capacity booster base station 101B occurs (step S318), and thereafter, the operations after step S286 are repeated.
  • the handover operation in which the coverage base station 201 is selected as the communication destination of the wireless terminal device 202B and the handover operation in which the capacity booster base station 101B is selected as the communication destination of the wireless terminal device 202B are alternately repeated.
  • the wireless terminal device 202B cannot start communication.
  • a control message such as a cell activation request or a cell activation response transmitted / received between the radio base station apparatuses may be congested and cause a communication delay. Therefore, the above problem is solved by the following operation.
  • FIG. 16 is a diagram illustrating an example of a sequence in a case where the transition to the dormant state of the capacity booster base station in the wireless communication system according to the embodiment of the present invention is permitted by the coverage base station.
  • capacity booster base station 101B is in an active state (step S342). Further, for example, the wireless terminal device 202B is in a state in which the capacity booster base station 101B is selected as a communication destination and is communicating with the capacity booster base station 101B (step S344).
  • the capacity booster base station 101B monitors the amount of communication traffic between itself and the wireless terminal device 202B (step S346). For example, when the amount of communication traffic between itself and the wireless terminal device 202B falls below the threshold Th1, the capacity booster base station 101B notifies the capacity booster base station 101A and the coverage base station 201 of the following request. Is determined (step S348).
  • the capacity booster base station 101B notifies a temporary arrangement information update request (ENB Temporary Configuration Update Request) to the capacity booster base station 101A and the coverage base station 201 via the X2 interface (steps S350 and S352).
  • This temporary arrangement information update request includes information that the capacity booster base station 101B transitions to a dormant state.
  • the coverage base station 201 monitors the amount of communication traffic between itself and each wireless terminal device 202 communicating with itself (step S354).
  • the coverage base station 201 decides to accept the received temporary location information update request when, for example, the amount of communication traffic between itself and each wireless terminal device 202 communicating with itself falls below a predetermined threshold ( Step S356).
  • the coverage base station 201 notifies the capacity booster base station 101B of a temporary location information update response (ENB Temporary Configuration Update Response) via the X2 interface (step S360).
  • This temporary arrangement information update response includes information that allows the capacity booster base station 101B to transition to the dormant state.
  • the capacity booster base station 101A accepts the received temporary arrangement information update request, for example, the capacity booster base station 101A notifies the capacity booster base station 101B of a temporary arrangement information update response via the X2 interface (step S358).
  • the capacity booster base station 101B receives the temporary location information update response via the X2 interface from the capacity booster base station 101A and the coverage base station 201, the capacity booster base station 101B continuously determines the communication traffic volume between itself and the wireless terminal device 202B. Monitoring is performed (step S362).
  • the capacity booster base station 101B determines its transition to the dormant state when, for example, the amount of communication traffic between itself and the wireless terminal device 202B falls below the threshold Th2 (step S364).
  • the capacity booster base station 101B reduces the power of the transmission radio wave, for example, by reducing the amplification factor of the amplifier 11 in the wireless transmission unit 94 (step S366). At this time, the capacity booster base station 101B may reduce the power of the transmission radio wave according to the procedure shown in FIG.
  • the reception power of the radio signal transmitted from the capacity booster base station 101B in the wireless terminal device 202B decreases. However, there is no significant change in the reception power of the radio signal transmitted from the coverage base station 201 in the radio terminal device 202B.
  • the wireless terminal device 202B transmits a measurement result notification indicating the measurement result of the received power of the radio signal from each base station to the capacity booster base station 101B.
  • the capacity booster base station 101B executes a handover operation based on the received measurement result notification (step S368).
  • the procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
  • the wireless terminal device 202B selects the coverage base station 201 as a communication destination by the handover operation and is in a state of communicating with the coverage base station 201 (step S370).
  • the capacity booster base station 101B confirms that the wireless terminal device 202B communicating with itself has communicated with the coverage base station 201 by the handover operation, so that the capacity booster base station 101B In order to make known to the base station, the following operation is performed. That is, the capacity booster base station 101B notifies an arrangement information update request via the X2 interface to the coverage base station 201 and the capacity booster base station 101A (steps S372 and S374).
  • the capacity booster base station 101A when the capacity booster base station 101A receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the capacity booster base station 101A updates its neighbor cell information and receives an arrangement information update response indicating that the update has been performed.
  • the city booster base station 101B is notified via the X2 interface (step S376).
  • the coverage base station 201 When the coverage base station 201 receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the coverage base station 201 updates its neighbor cell information and sends an arrangement information update response indicating that it has been updated to the capacity booster base The station 101B is notified via the X2 interface (step S378).
  • the capacity booster base station 101B when the capacity booster base station 101B receives the arrangement information update response via the X2 interface, the capacity booster base station 101B transitions to a dormant state, for example, by setting the amplification factor of the amplifier 11 in the wireless transmission unit 94 to 0 (step S380).
  • FIG. 17 is a diagram showing an example of a time change of the communication traffic amount when the threshold value Th1 and the threshold value Th2 of the communication traffic amount are the same value in the wireless communication system according to the embodiment of the present invention.
  • FIG. 17 shows a case where the threshold value Th1 and the threshold value Th2 in FIG. 16 are the same.
  • the amount of communication traffic falls below the threshold value Th1 at time T11. That is, the capacity booster base station 101B notifies the capacity booster base station 101A and the coverage base station 201 via the X2 interface at time T11 (steps S350 and S352 in FIG. 16).
  • the capacity booster base station 101B completes reception of the temporary location information update response from the coverage base station 201 and the capacity booster base station 101A at time T12 (steps S358 and S360 in FIG. 16).
  • the capacity booster base station 101B starts to reduce the power of the transmission radio wave at time T13 because the amount of communication traffic is below the threshold Th2 (step S366 in FIG. 16).
  • the capacity booster base station 101B completes the handover operation at time T14 (step S368 in FIG. 16).
  • FIG. 18 is a diagram illustrating an example of a temporal change in the communication traffic volume when the communication traffic volume threshold Th2 is smaller than the threshold Th1 in the wireless communication system according to the embodiment of the present invention.
  • the horizontal axis represents time
  • the vertical axis represents the amount of communication traffic between capacity booster base station 101B and wireless terminal apparatus 202B.
  • FIG. 18 shows a case where the threshold value Th2 in FIG. 16 is lower than the threshold value Th1.
  • the amount of communication traffic falls below the threshold value Th1 at time T21. That is, the capacity booster base station 101B notifies the capacity booster base station 101A and the coverage base station 201 via the X2 interface at time T21 (steps S350 and S352 in FIG. 16).
  • the capacity booster base station 101B completes reception of the temporary location information update response from the coverage base station 201 and the capacity booster base station 101A at time T22 (steps S358 and S360 in FIG. 16).
  • the capacity booster base station 101B starts to reduce the power of the transmission radio wave at time T23 (step S366 in FIG. 16).
  • the capacity booster base station 101B completes the handover operation at time T24 (step S368 in FIG. 16).
  • the capacity booster base station 101B can confirm with the coverage base station 201 that the capacity booster base station 101B transitions to the dormant state before the communication traffic volume falls below the threshold value Th2. As a result, the capacity booster base station 101B does not need to confirm with the coverage base station 201 about the transition to the dormant state when the communication traffic amount falls below the threshold Th2. Immediately reduce the power of the transmitted radio wave. That is, capacity booster base station 101B can transition to a dormant state more quickly than when threshold value Th1 and threshold value Th2 in FIG. 17 have the same value.
  • FIG. 19 is a diagram illustrating an example of a sequence in a case where the transition to the dormant state of the capacity booster base station in the wireless communication system according to the embodiment of the present invention is not permitted by the coverage base station.
  • capacity booster base station 101B is in an active state (step S402).
  • the wireless terminal device 202B is in a state where the capacity booster base station 101B is selected as a communication destination and is communicating with the capacity booster base station 101B (step S404).
  • the capacity booster base station 101B monitors the amount of communication traffic between itself and the wireless terminal device 202B (step S406). For example, when the amount of communication traffic between itself and the wireless terminal device 202B falls below the threshold Th1, the capacity booster base station 101B notifies the capacity booster base station 101A and the coverage base station 201 of the following request. Is determined (step S408).
  • the capacity booster base station 101B notifies the temporary location information update request to the capacity booster base station 101A and the coverage base station 201 via the X2 interface (steps S410 and S412).
  • This temporary arrangement information update request includes information that the capacity booster base station 101B transitions to a dormant state.
  • the coverage base station 201 monitors the communication traffic amount between itself and each wireless terminal device 202 communicating with itself (step S414).
  • the coverage base station 201 determines not to accept the received temporary location information update request when, for example, the amount of communication traffic between itself and each wireless terminal device 202 communicating with the coverage base station 201 exceeds a predetermined threshold ( Step S416).
  • the coverage base station 201 notifies the capacity booster base station 101B of temporary allocation information update rejection (ENB Temporary Configuration Update Failure) via the X2 interface (step S420).
  • the capacity booster base station 101A accepts the received temporary arrangement information update request, for example, the capacity booster base station 101A notifies the capacity booster base station 101B of a temporary arrangement information update response via the X2 interface (step S418).
  • the capacity booster base station 101B receives a temporary arrangement information update response from the capacity booster base station 101A via the X2 interface. Further, the capacity booster base station 101B receives a temporary arrangement information update refusal from the coverage base station 201 via the X2 interface. The capacity booster base station 101B waits for a predetermined time before transitioning to the sleep state when the communication traffic volume between itself and the wireless terminal device 202B falls below the threshold value Th2 due to reception of the temporary location information update rejection. Decide that. Then, the capacity booster base station 101B continues to monitor the amount of communication traffic between itself and the wireless terminal device 202B (step S422).
  • step S424 when the amount of communication traffic between the capacity booster base station 101B and the wireless terminal device 202B falls below the threshold value Th2 (step S424), the capacity booster base station 101B determines that it is between itself and the wireless terminal device 202B. Wait for a predetermined time while continuing communication (step S426).
  • step S428) when the amount of communication traffic between the capacity booster base station 101B and the wireless terminal device 202B continuously falls below the threshold Th2 while waiting for a predetermined time, the capacity booster base station 101B The transition to its own sleep state is determined (step S428).
  • the capacity booster base station 101B reduces the power of the transmission radio wave by, for example, reducing the amplification factor of the amplifier 11 in the wireless transmission unit 94 (step S430). At this time, the capacity booster base station 101B may reduce the power of the transmission radio wave according to the procedure shown in FIG.
  • the reception power of the radio signal from the capacity booster base station 101B in the wireless terminal device 202B decreases. However, there is no significant change in the reception power of the radio signal transmitted from the coverage base station 201 in the radio terminal device 202B.
  • the wireless terminal device 202B transmits a measurement result notification indicating the measurement result of the received power of the radio signal from each base station to the capacity booster base station 101B.
  • the capacity booster base station 101B performs a handover operation based on the received measurement result notification (step S432).
  • the procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
  • the wireless terminal device 202B selects the coverage base station 201 as a communication destination by the handover operation and is in a state of communicating with the coverage base station 201 (step S434).
  • the capacity booster base station 101B confirms that the wireless terminal device 202B communicating with itself has communicated with the coverage base station 201 by the handover operation, so that the capacity booster base station 101B In order to make known to the base station, the following operation is performed. That is, the capacity booster base station 101B notifies the coverage base station 201 and the capacity booster base station 101A of an arrangement information update request via the X2 interface (steps S436 and S438).
  • the capacity booster base station 101A when the capacity booster base station 101A receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the capacity booster base station 101A updates its neighbor cell information and receives an arrangement information update response indicating that the update has been performed.
  • the city booster base station 101B is notified via the X2 interface (step S440).
  • the coverage base station 201 When the coverage base station 201 receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the coverage base station 201 updates its neighbor cell information and sends an arrangement information update response indicating that it has been updated to the capacity booster base The station 101B is notified via the X2 interface (step S442).
  • the capacity booster base station 101B when the capacity booster base station 101B receives the arrangement information update response via the X2 interface, the capacity booster base station 101B transitions to a dormant state, for example, by setting the amplification factor of the amplifier 11 in the wireless transmission unit 94 to 0 (step S444).
  • FIG. 20 is a diagram illustrating an example of a time change of the communication traffic amount when the communication traffic amount exceeds the threshold Th2 during the standby operation in the wireless communication system according to the embodiment of the present invention.
  • the horizontal axis represents time
  • the vertical axis represents the amount of communication traffic between capacity booster base station 101B and wireless terminal apparatus 202B.
  • FIG. 20 shows a case where the threshold value Th2 in FIG. 19 is lower than the threshold value Th1.
  • the capacity booster base station 101B sends a temporary location information update request to the capacity booster base station 101A and the coverage base station 201 at time T31. Notification is made via the X2 interface (steps S410 and S412 in FIG. 19).
  • the capacity booster base station 101B receives a temporary arrangement information update refusal from the coverage base station 201 at time T32 (step S420 in FIG. 16).
  • step S426 when the amount of communication traffic falls below threshold value Th2 at time T33, capacity booster base station 101B enters standby operation from time T33 to standby operation end scheduled time T35 (step S426 in FIG. 16).
  • step S416 since the amount of communication traffic in the coverage base station 201 exceeds a predetermined threshold (step S416 in FIG. 16), the amount of communication traffic in the capacity booster base station 101B is likely to increase.
  • the capacity booster base station 101B continues to be in an active state.
  • the traffic amount in the capacity booster base station 101 may increase after a while even if the traffic amount in the capacity booster base station 101 is small at a certain time. is there.
  • the capacity booster base station 101 quickly transitions to a dormant state when the communication traffic volume in itself falls below the threshold value Th2
  • the communication traffic volume in the coverage base station 201 becomes a predetermined value. The threshold may be exceeded. In this case, the coverage base station 201 transmits a cell activation request to the capacity booster base station 101.
  • the capacity booster base station 101 When the capacity booster base station 101 receives a cell activation request from the coverage base station 201, the capacity booster base station 101 transitions to the active state again. That is, the capacity booster base station 101 performs a useless operation of transitioning from the active state to the dormant state and immediately returning to the active state.
  • the capacity booster base station 101 is active if the communication traffic volume is less than the threshold value Th2 and the state where the communication traffic volume is less than the threshold value Th2 does not continue for a predetermined time. By continuing the state, it is possible to suppress the occurrence of the useless operation. That is, the capacity booster base station 101 can transmit and receive radio signals continuously without transitioning to a dormant state.
  • the capacity booster base station 101 can make a transition to a dormant state after confirming that the traffic amount in the coverage base station 201 is small. That is, the capacity booster base station 101 can transition to the dormant state after confirming that the coverage booster base station 101 is in a state where it is unlikely that the coverage base station 201 can transition to the active state again.
  • the capacity booster base station 101 receives a response corresponding to the traffic amount in the coverage base station 201 as a response to make a temporary arrangement information update request including a transition to the dormant state. Thereby, capacity booster base station 101 can change the operation
  • the coverage base station 201 responds to the temporary location information update response shown in step S360 of FIG. Is transmitted to the capacity booster base station 101. Further, when the amount of communication traffic exceeds a predetermined threshold, the coverage base station 201 transmits a temporary arrangement information update refusal shown in step S420 of FIG. 19 to the capacity booster base station 101.
  • the capacity booster base station 101 When the capacity booster base station 101 receives a temporary location information update response from the coverage base station 201, the capacity booster base station 101 immediately performs processing for transitioning to a dormant state when the communication traffic amount in itself falls below the threshold Th2. On the other hand, when the capacity booster base station 101 receives the temporary allocation information update refusal from the coverage base station 201, the capacity booster base station 101 immediately transitions to the dormant state even if the communication traffic amount in itself falls below the threshold Th2. The standby operation is performed for a predetermined time.
  • the capacity booster base station 101 can change the operation procedure until transition to the dormant state according to the response according to the traffic amount in the coverage base station 201.
  • threshold time Th1, threshold value Th2, and predetermined time for determining the standby operation time shown in FIGS. 16 to 20 may be set as follows. That is, the capacity booster base station 101 uses the above-mentioned parameters that are stored in a storage unit (not shown) after an initial value is given in advance. Further, the parameter may be rewritable by a host device.
  • the wireless terminal device 202 when the wireless terminal device 202 performs high-priority communication such as voice data in a call or video data in moving image distribution, the wireless terminal device 202 desirably selects a wireless base station device that can communicate at higher speed. For example, the wireless terminal device 202 can perform communication stably and at high speed by selecting the capacity booster base station 101 located in the vicinity of itself instead of the coverage base station 201 located far from itself as a communication destination. There is sex.
  • the wireless terminal device 202 can transmit and receive wireless signals with a large amount of power with a wireless base station device located in the vicinity, so that communication can be performed stably and at high speed, and there is a margin in the amount of communication traffic in the capacity booster base station 101. It depends on what can be expected. Therefore, the above problem is solved by the following operation.
  • FIG. 21 is a diagram showing an exemplary sequence when the capacity booster base station in the wireless communication system according to the embodiment of the present invention transitions to an active state in response to a request from the wireless terminal device.
  • capacity booster base stations 101A and 101B are in a dormant state (steps S464 and S466). Further, for example, the wireless terminal device 202B is in a state in which the coverage base station 201 is selected as a communication destination and is communicating with the coverage base station 201 (step S462).
  • the wireless terminal device 202B determines to use the capacity booster base station 101 located in the vicinity for communication, and transmits a capacity booster base station activation request to the coverage base station 201. (Step S468).
  • This capacity booster base station activation request includes a request from the wireless terminal device 202B to cause the capacity base booster base station 101 in a dormant state to transition to the active state by the coverage base station 201.
  • Step S468 of transmitting a station activation request to the coverage base station 201 is executed.
  • the wireless terminal device 202B detects its own entry into the capacity booster cell formed by the capacity booster base station by its own GPS (Global Positioning System) function, the wireless terminal device 202B Since stable and high-speed communication with the booster base station can be expected, a capacity booster base station activation request is transmitted to the coverage base station 201.
  • GPS Global Positioning System
  • the wireless terminal device 202B issues a capacity booster base station activation request in order to perform stable and high-speed communication. Transmit to coverage base station 201.
  • the wireless terminal device 202B activates the capacity booster base station in order to realize stable and high-speed communication.
  • the request is transmitted to the coverage base station 201.
  • an IP packet transmitted / received by communication is accompanied by a QCI indicating the priority of the IP packet.
  • the wireless terminal device 202B monitors the QCI field in the IP packet transmitted / received in TCP / IP, and when the QCI is equal to or greater than a predetermined threshold, a capacity booster base station activation request is sent to the coverage base station 201. Send.
  • the wireless terminal device 202B monitors the activation of a predetermined application, and transmits a capacity booster base station activation request to the coverage base station 201 when the application is activated.
  • the wireless terminal device 202B issues a capacity booster base station activation request when the time is reached. Send to.
  • the coverage base station 201 receives the capacity booster base station activation request from the wireless terminal device 202B, and determines to shift the capacity booster base stations 101A and 101B in the dormant state to the active state (step S470). .
  • the coverage base station 201 notifies the capacity booster base station 101A of a cell activation request via the X2 interface (step S472). Further, the coverage base station 201 notifies the capacity booster base station 101B of a cell activation request via the X2 interface (step S474).
  • the capacity booster base station 101A receives the notification of the cell activation request from the coverage base station 201 via the X2 interface, and confirms that the notification has been received with respect to the coverage base station 201 using the X2 A cell activation response is notified via the interface (step S476). Further, the capacity booster base station 101B receives the notification of the cell activation request from the coverage base station 201 via the X2 interface, and confirms that the notification has been received with respect to the coverage base station 201. A cell activation response is notified via (step S478).
  • the capacity booster base stations 101A and 101B increase the power of the transmission radio wave, for example, by increasing the amplification factor of the amplifier 11 in the wireless transmission unit 94 (steps S480 and 482). At this time, the capacity booster base stations 101A and 101B may increase the power of the transmission radio wave according to the procedure shown in FIG.
  • the capacity booster base station 101B increases the power of the transmission radio wave
  • the reception power of the radio signal transmitted from the capacity booster base station 101B in the wireless terminal device 202B increases.
  • the wireless terminal device 202B transmits a measurement result notification indicating the measurement result of the received power of the radio signal from each base station to the coverage base station 201.
  • the coverage base station 201 performs a handover operation based on the received measurement result notification (step S484).
  • the procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
  • the wireless terminal device 202B selects the capacity booster base station 101B as a communication destination by the handover operation and is in communication with the capacity booster base station 101B (step S486).
  • the capacity booster base station 101A monitors the amount of communication traffic between itself and the wireless terminal device 202 communicating with itself (step S488). For example, the capacity booster base station 101A determines its transition to the dormant state when the amount of communication traffic between itself and the wireless terminal device 202 communicating with itself falls below a predetermined threshold (step S490).
  • the capacity booster base station 101A reduces the power of the transmission radio wave, for example, by reducing the amplification factor of the amplifier 11 in the wireless transmission unit 94 (step S492). At this time, the capacity booster base station 101A may reduce the power of the transmission radio wave according to the procedure shown in FIG.
  • the capacity booster base station 101A When the capacity booster base station 101A confirms that all of the wireless terminal apparatuses 202 that have selected itself by reducing the power of the transmission radio wave have selected another wireless base station apparatus by handover, the capacity booster base station 101A performs the following operation. .
  • the capacity booster base station 101A is arranged via the X2 interface with respect to the coverage base station 201 and the capacity booster base station 101B in order to inform the neighboring base stations that it will transition to a dormant state.
  • An information update request is notified (steps S494, S496).
  • the capacity booster base station 101B when the capacity booster base station 101B receives an arrangement information update request from the capacity booster base station 101A via the X2 interface, the capacity booster base station 101B updates its own neighboring cell information and receives an arrangement information update response indicating that the update has been performed.
  • the city booster base station 101A is notified via the X2 interface (step S498).
  • the coverage base station 201 When the coverage base station 201 receives an arrangement information update request from the capacity booster base station 101A via the X2 interface, the coverage base station 201 updates its neighbor cell information and sends an arrangement information update response indicating that the capacity booster base station has updated. The station 101A is notified via the X2 interface (step S500).
  • the capacity booster base station 101A when the capacity booster base station 101A receives the arrangement information update response via the X2 interface, the capacity booster base station 101A transitions to a dormant state by setting the amplification factor of the amplifier 11 in the wireless transmission unit 94 to 0, for example (step S502).
  • the wireless terminal device 202B shifts the capacity booster base station 101B to an active state when a predetermined condition is satisfied, thereby self-powering the wireless terminal device 202B with power larger than the reception power of the radio wave from the coverage base station 201.
  • wireless terminal apparatus 202B can receive the electromagnetic wave from capacity booster base station 101B with big electric power compared with the reception power of the electromagnetic wave from coverage base station 201, Moreover, in the said capacity booster base station 101B Since it can be expected to occupy and use radio resources such as communication channels, communication can be performed stably and at high speed.
  • the wireless terminal device 202B when the wireless terminal device 202B needs to perform communication including data having a priority level equal to or higher than a predetermined level, which is an appropriate condition for causing the capacity booster base station 101B to transition to the active state, the wireless terminal device 202B The communication destination can be changed to the capacity booster base station 101B that can receive radio waves with power larger than the received power of radio waves.
  • the wireless terminal device 202B can receive radio waves from the capacity booster base station 101B with higher power than the received power of radio waves from the coverage base station 201, and a communication channel in the capacity booster base station 101B. Therefore, it can be expected to occupy and use wireless resources such as, so that communication can be performed stably and at high speed.
  • the wireless terminal device 202B selects the capacity booster base station 101B as a communication destination and performs high-priority communication at high speed (step S486 in FIG. 21), the following problem may occur. . That is, the capacity booster base station 101B monitors the amount of communication traffic between itself and the wireless terminal device 202B communicating with itself, and transitions to a dormant state when the amount of communication traffic falls below a predetermined threshold. If the capacity booster base station 101B transitions to the dormant state, the wireless terminal device 202B cannot perform high-priority communication with the capacity booster base station 101B at high speed. Therefore, the above problem is solved by the following operation.
  • FIG. 22 is a flowchart defining an operation procedure when a capacity booster base station performing high-priority communication in the wireless communication system according to the embodiment of the present invention transitions to a dormant state.
  • capacity booster base station 101B is in an active state and is transmitting radio waves (step S522).
  • the capacity booster base station 101B monitors the QCI field of the IP packet transmitted / received between itself and the wireless terminal device 202B that has selected itself, and acquires the traffic amount per unit time of each priority. (Step S524).
  • the capacity booster base station 101B calculates the communication traffic amount per unit time by totaling the traffic amounts per unit time of the obtained priorities, and the calculated communication traffic amount is a predetermined threshold value. It is determined whether or not below (step S526).
  • the capacity booster base station 101B continues to monitor the QCI field of the IP packet and obtains the traffic volume per unit time for each priority (step S526). NO).
  • the capacity booster base station 101B determines that the traffic with a priority level equal to or higher than a predetermined level is the wireless terminal device 202B that has selected itself and itself. It is determined whether or not there is communication in between (step S528).
  • the capacity booster base station 101B continues to monitor the QCI field of the IP packet and obtains the traffic amount per unit time of each priority (Ste S524).
  • the capacity booster base station 101B has a priority of a predetermined level or higher when communication is performed in an emergency such as lifesaving, for example, in communication between itself and the wireless terminal device 202B that has selected itself.
  • the same processing as when there is traffic may be performed. That is, the capacity booster base station 101B continuously monitors the QCI field of the IP packet shown in step S524 and performs the priority unit when the emergency communication is performed in the above communication (YES in step S528). You may perform the process which acquires the traffic amount per time.
  • the capacity booster base station 101B transitions to a dormant state (step S530). At this time, the capacity booster base station 101B may reduce the power of the transmission radio wave according to the procedure shown in FIG.
  • the capacity booster base station 101B continues the communication even when the traffic amount of the communication in the capacity booster base station 101B is less than a predetermined threshold when performing communication with high priority. .
  • the capacity booster base station 101B stops the communication and shifts to a dormant state if the traffic volume of the communication in itself is less than a predetermined threshold value. .
  • the capacity booster base station 101B can make an appropriate determination according to the presence or absence of high-priority communication regarding the continuation of the active state or the transition to the dormant state.
  • the capacity booster base station 101 to which the operation procedure shown in FIG. 22 is applied receives the capacity booster base station activation request from the capacity booster base station 101B shown in FIG.
  • the coverage base station 201 is not limited to the capacity booster base station 101 that has transitioned to the active state.
  • the determination that the communication is continued even if the traffic volume of the communication is less than a predetermined threshold is shown in FIG. 12 may be performed in the capacity booster base station 101B shown in FIGS.
  • the handover operation in which the coverage base station 201 is selected as the communication destination of the wireless terminal device 202 and the handover operation in which the capacity booster base station 101 is selected as the communication destination of the wireless terminal device 202 are alternately repeated.
  • the wireless terminal device 202 cannot start communication.
  • a control message such as a cell activation request or a cell activation response transmitted / received between the coverage base station 201 and the capacity booster base station 101 may be congested and cause a communication delay.
  • the radio reception unit 93 and the radio transmission unit 94 transmit and receive radio signals to and from the radio terminal device 202.
  • the transmission power control unit 99 controls the wireless reception unit 93 and the wireless transmission unit 94, thereby communicating with the wireless terminal device 202.
  • the communication traffic monitoring unit 98 acquires the traffic amount of communication with the wireless terminal device 202.
  • the transmission power control unit 99 stops at least transmission of the radio signal based on the traffic amount acquired by the communication traffic monitoring unit 98 in a state where transmission / reception of the radio signal is started in response to the cell activation request. Determine whether or not.
  • the transmission power control unit 99 determines that the transmission of the wireless signal is stopped, the wireless power transmission unit 93 and the wireless transmission unit 94 are controlled to reduce the transmission power of the wireless signal step by step. Wave stop control to stop.
  • the wireless signal transmission power received by the wireless terminal device 202 is not abrupt, but gradually, by the configuration in which the wireless signal transmission power is stopped by reducing the transmission power of the wireless signal step by step without greatly reducing it at once. Decrease. Accordingly, the capacity booster base station 101 can hand over the wireless terminal device 202 to the coverage base station 201 before communication between the wireless terminal device 202 that has selected itself and the wireless booster device 202 is interrupted. As a result, the capacity booster base station 101 can prevent the communication of the wireless terminal device 202 that has selected itself from being interrupted when transitioning to the dormant state.
  • the transmission power control unit 99 determines to stop the transmission of the radio signal
  • the transmission of the radio signal is performed before the stop control is performed.
  • At least the coverage base station 201 is notified of a temporary location information update request including the fact that it is stopped.
  • the transmission power control unit 99 performs at least a temporary arrangement information update response or a temporary arrangement information update rejection including a response to the temporary arrangement information update request. After receiving from the coverage base station 201, the stop control is performed.
  • the transmission power control unit 99 determines that the transmission of the radio signal is stopped when the traffic amount is less than the threshold value Th1, and is temporarily arranged. After receiving the information update response or the temporary arrangement information update refusal, the stop control is performed when the traffic volume is less than the threshold value Th2, which is smaller than the threshold value Th1.
  • the transition to the dormant state can be quickly made when the traffic amount becomes less than the threshold value Th2.
  • the transmission power control unit 99 updates the temporary arrangement information including the content based on the traffic volume of communication with the radio terminal apparatus 202 in the coverage base station 201.
  • a condition for performing the wave stopping control is set based on the contents of the temporary arrangement information update response or the temporary arrangement information update rejection.
  • the capacity booster base station 101 when the capacity booster base station 101 receives a temporary arrangement information update response, for example, the capacity booster base station 101 recognizes that the communication traffic amount in the coverage base station 201 is small, and performs the stop control corresponding to this. Execution conditions can be set, and wave stop control can be performed when the set execution conditions are satisfied. Also, when the capacity booster base station 101 receives, for example, refusal to update the temporary arrangement information, the capacity booster base station 101 recognizes that there is a large amount of communication traffic in the coverage base station 201, and sets the execution condition of the stop control corresponding to this. Then, the stop control can be performed when the set execution condition is satisfied. That is, it is possible to appropriately determine the transition to the dormant state according to the communication traffic amount in the coverage base station 201 that determines the start of communication between the own wireless base station device and the wireless terminal device 202.
  • the transmission power control unit 99 has received a temporary arrangement information update refusal including contents corresponding to the case where the traffic volume of the coverage base station 201 is large In this case, as the above condition, it is set that a state in which the traffic amount acquired by the communication traffic monitoring unit 98 is less than a predetermined threshold continues for a predetermined time.
  • the traffic volume at the capacity booster base station 101 may increase after a while. .
  • the coverage base station 201 receives a cell activation request. Transmit to the city booster base station 101.
  • the capacity booster base station 101 When the capacity booster base station 101 receives a cell activation request from the coverage base station 201, the capacity booster base station 101 transitions to the active state again, so that the transition to the dormant state becomes a useless operation. Even in such a case, the capacity booster base station 101 is active if the communication traffic volume is less than the threshold value Th2 and the state where the communication traffic volume is less than the threshold value Th2 does not continue for a predetermined time. By continuing the state, it is possible to suppress occurrence of a transition to a useless sleep state. That is, the capacity booster base station 101 can transmit and receive radio signals continuously without transitioning to a dormant state.
  • the transmission power control unit 99 has received a temporary arrangement information update response including content corresponding to the case where the traffic amount of the coverage base station 201 is small
  • the traffic amount acquired by the communication traffic monitoring unit 98 is set to be less than a predetermined threshold value.
  • the capacity booster base station 101 can make a transition to a dormant state after confirming that the traffic amount in the coverage base station 201 is small. That is, the capacity booster base station 101 can transition to the dormant state after confirming that the coverage booster base station 101 is in a state where it is unlikely that the coverage base station 201 can transition to the active state again.
  • the transmission power control unit 99 receives data of a priority level equal to or higher than a predetermined level in a state where transmission / reception of a radio signal is started in response to a cell activation request. Is included in the communication performed by the wireless signal, the determination to stop at least the transmission of the wireless signal is not performed.
  • the radio reception unit 93 and the radio transmission unit 94 transmit and receive radio signals to and from the radio terminal device 202.
  • the transmission power control unit 99 controls the wireless reception unit 93 and the wireless transmission unit 94 to thereby increase the transmission power of the wireless signal.
  • the communication with the wireless terminal device 202 is started.
  • the wireless signal transmission power received by the wireless terminal device 202 is not abrupt, but gradually, by increasing the transmission power of the wireless signal step by step without increasing it at once.
  • the capacity booster base station 101 interrupts wireless communication with the wireless terminal device 202 that is in wireless communication with the coverage base station 201, which receives excessive power when it transmits radio waves with normal power. And can be handed over to itself.
  • the coverage base station 201 is selected, and communication of the wireless terminal device 202 located in the vicinity of the capacity booster base station 101 is prevented from being interrupted. it can.
  • the radio reception unit 93 and the radio transmission unit 94 transmit and receive radio signals to and from the radio terminal device 202.
  • the transmission power control unit 99 controls the wireless reception unit 93 and the wireless transmission unit 94, thereby communicating with the wireless terminal device 202. Starts transmission / reception of wireless signals.
  • the transmission power control unit 99 determines whether or not to stop at least transmission of a radio signal in a state where transmission / reception of the radio signal is started in response to a cell activation request, and stops transmission of the radio signal. If it is determined, a temporary location information update request including the stop of radio signal transmission is notified to the coverage base station 201 and the capacity booster base station 101 other than itself.
  • the capacity booster base station 101 determines to stop transmitting radio signals, the capacity booster base station 101 notifies the coverage base station 201 and the capacity booster base stations 101 other than itself of the temporary location information update request. It is possible to prevent the handover operation of the wireless terminal device 202 between itself and the coverage base station 201 from being repeated.
  • the coverage base station 201 communicates with the wireless terminal device 202 by transmitting and receiving wireless signals to and from the wireless terminal device 202.
  • the capacity booster base station 101 communicates with the wireless terminal device 202 by transmitting and receiving wireless signals to and from the wireless terminal device 202.
  • the capacity booster base station 101 upon receiving a cell activation request including a communication start instruction from the coverage base station 201, the capacity booster base station 101 starts transmission / reception of radio signals with the radio terminal apparatus 202.
  • the capacity booster base station 101 determines whether or not to stop at least transmission of the radio signal in a state where transmission / reception of the radio signal is started, and if it determines to stop transmission of the radio signal, The coverage base station 201 is notified of a temporary arrangement information update request including the fact that the transmission of the transmission is stopped.
  • the coverage base station 201 receives the temporary arrangement information update request, acquires the traffic volume of communication with the wireless terminal device 202, and receives a temporary arrangement information update response or a temporary response including a response based on the acquired traffic volume.
  • An arrangement information update refusal is transmitted to the capacity booster base station 101.
  • the capacity booster base station 101 stops transmission of a radio signal after receiving a temporary arrangement information update response or a temporary arrangement information update rejection.
  • the capacity booster base station 101 notifies the coverage base station 201 of the temporary location information update request, so that the capacity booster base station 101 is in a dormant state based on the traffic amount in the coverage base station 201. Therefore, an appropriate operation according to the amount of traffic in the coverage base station 201 can be realized.
  • the activation of the capacity booster base station 101 is determined by the coverage base station 201 or the host device 204 by measuring the amount of communication traffic and based on the measured amount of communication traffic.
  • the capacity booster base station 101 determines whether or not the capacity booster base station 101 is stopped by measuring the communication traffic amount in itself and based on the measured communication traffic amount or the like.
  • the wireless terminal device 202 When the wireless terminal device 202 communicates with the coverage base station 201 for covering a large radius area, it is necessary to share wireless resources such as a communication channel in the coverage base station 201 with a large number of wireless terminal devices. There is a high possibility that the communication speed in the communication will decrease. On the other hand, when the wireless terminal device 202 communicates with the capacity booster base station 101 that covers an area of a small radius, the number of wireless terminal devices 202 that share wireless resources is small, and thus one wireless terminal device 202 is provided. However, since many radio resources can be used, there is a possibility that the communication can be performed at high speed.
  • the wireless terminal device 202 When the wireless terminal device 202 performs high-priority communication such as voice data in a call or video data in moving image distribution, it is desirable that the wireless terminal device 202 selects a wireless base station device that can communicate at higher speed.
  • the radio terminal device 202 occupies radio resources such as a communication channel by selecting the capacity booster base station 101 located in the vicinity of itself as a communication destination, not the coverage base station 201 located far from itself. Therefore, there is a possibility that communication can be performed at high speed.
  • the wireless terminal device 202 selects the capacity booster base station 101 as a communication destination and performs high-priority communication at high speed, the following problem may occur. That is, the capacity booster base station 101 monitors the amount of communication traffic between itself and the wireless terminal device 202 communicating with itself, and transitions to a dormant state when the amount of communication traffic falls below a predetermined threshold. If the capacity booster base station 101 transitions to a dormant state, the wireless terminal device 202 cannot perform high-priority communication with the capacity booster base station 101 at high speed.
  • the capacity booster base station 101 is used for reducing the load on the coverage base station 201.
  • the capacity booster base station 101 In this way, there is an advantage that the communication speed is improved.
  • the capacity booster base station 101 is started and stopped based on the judgment of the coverage base station 201 or the capacity booster base station 101, the capacity booster base station 101 is started in response to a request from the wireless terminal device 202. I can't do it.
  • the capacity booster base station 101 may be a pico base station installed outdoors or a femto base station installed indoors.
  • the femto base station is activated by a request from the wireless terminal device 202, and moves the communication destination of the wireless terminal device 202 to the femto base station activated from the coverage base station 201. It occupies the radio resources of the activated femto base station and performs high-speed communication.
  • radio terminal apparatus 202 transmits a capacity booster base station activation request to coverage base station 201 when a predetermined condition is satisfied. Then, the coverage base station 201 receives the capacity booster base station activation request and transmits the cell activation request to the capacity booster base station 101.
  • the wireless terminal device 202 transmits a capacity booster base station activation request to the coverage base station 201 when a predetermined condition is satisfied, thereby self-powering the wireless terminal device 202 with power larger than the reception power of the radio wave from the coverage base station 201.
  • wireless terminal apparatus 202 can receive the electromagnetic wave from the capacity booster base station 101 with big electric power compared with the reception power of the electromagnetic wave from the coverage base station 201, and in the said capacity booster base station 101, Since it can be expected to occupy and use radio resources such as communication channels, communication can be performed stably and at high speed.
  • the capacity booster base station activation request is transmitted to the coverage base station. To 201.
  • the communication can be performed at high speed.
  • the wireless terminal device 202 transmits radio waves with power larger than the reception power of radio waves from the coverage base station 201.
  • the communication destination can be changed to the capacity booster base station 101 capable of receiving.
  • the wireless terminal device 202 can receive radio waves from the capacity booster base station 101 with higher power than the received power of radio waves from the coverage base station 201, and the communication channel in the capacity booster base station 101 Therefore, it can be expected to occupy and use wireless resources such as, so that communication can be performed stably and at high speed.
  • the capacity booster base station 101 acquires the traffic volume of communication with the wireless terminal device 202 in the active state, and the acquired traffic volume is a predetermined threshold value. If the communication with the wireless terminal device 202 does not include data having a priority level equal to or higher than a predetermined level, at least transmission of the wireless signal is stopped.
  • the capacity booster base station 101 continues the communication even when the communication traffic volume in the capacity booster base station 101 is less than a predetermined threshold when performing communication with high priority.
  • the capacity booster base station 101 stops the communication and shifts to a dormant state if the traffic volume of the communication in itself is less than a predetermined threshold value. .
  • the capacity booster base station 101 can make an appropriate determination according to the presence / absence of high-priority communication regarding the continuation of the active state or the transition to the dormant state.
  • the radio reception unit 93 and the radio transmission unit 94 transmit and receive radio signals to and from the radio terminal device 202.
  • the transmission power control unit 99 controls the wireless reception unit 93 and the wireless transmission unit 94 to transmit and receive wireless signals to and from the wireless terminal device 202.
  • the communication traffic monitoring unit 98 acquires the traffic amount of communication with the wireless terminal device 202.
  • the transmission power control unit 99 receives a cell activation request and starts transmission / reception of a radio signal, the communication traffic volume acquired by the communication traffic monitoring unit 98 is less than a predetermined threshold, and the radio terminal If the communication with the apparatus 202 does not include data having a priority level equal to or higher than a predetermined level, at least transmission of the radio signal is stopped.
  • the capacity booster base station 101 continues the communication even when the communication traffic volume in the capacity booster base station 101 is less than a predetermined threshold when performing communication with high priority.
  • the capacity booster base station 101 stops the communication and shifts to a dormant state if the traffic volume of the communication in itself is less than a predetermined threshold value. .
  • the capacity booster base station 101 can make an appropriate determination according to the presence or absence of high priority communication regarding the continuation of the active state or the transition to the dormant state.
  • radio reception unit 123 and radio transmission unit 124 transmit and receive radio signals to and from coverage base station 201 and capacity booster base station 101. Then, when the predetermined condition is satisfied, the radio terminal control unit 128 transmits a capacity booster base station activation request to the coverage base station 201 via the radio transmission unit 124.
  • the wireless terminal device 202 transmits a capacity booster base station activation request to the coverage base station 201 when a predetermined condition is satisfied, thereby self-powering the wireless terminal device 202 with power larger than the reception power of the radio wave from the coverage base station 201.
  • wireless terminal apparatus 202 can receive the electromagnetic wave from the capacity booster base station 101 with big electric power compared with the reception power of the electromagnetic wave from the coverage base station 201, and in the said capacity booster base station 101, Since it can be expected to occupy and use radio resources such as communication channels, communication can be performed stably and at high speed.
  • the radio reception unit 113 and the radio transmission unit 114 transmit and receive radio signals to and from the radio terminal device 202.
  • the neighboring base station control unit 119 communicates with the wireless terminal device 202 by transmitting and receiving wireless signals to and from the wireless terminal device 202, receives a capacity booster base station activation request from the wireless terminal device 202, and A cell activation request is transmitted to the capacity booster base station 101.
  • the wireless terminal device 202 transitions the capacity booster base station 101 to the active state, thereby allowing the wireless terminal device 202 to power itself with a power higher than the reception power of the radio wave from the coverage base station 201.
  • the communication destination can be changed to the capacity booster base station 101 capable of receiving radio waves.
  • wireless terminal apparatus 202 can receive the electromagnetic wave from the capacity booster base station 101 with big electric power compared with the reception power of the electromagnetic wave from the coverage base station 201, and in the said capacity booster base station 101, Since it can be expected to occupy and use radio resources such as communication channels, communication can be performed stably and at high speed.
  • the handover operation of the wireless terminal device has been specifically described.
  • inter-base station movement (inter-cell movement) operation performed by the wireless terminal device in communication with the wireless base station device The present invention is applied not only to a certain handover but also to an inter-base station movement (inter-cell movement) operation performed by an idle wireless terminal device. That is, in the embodiment of the present invention, the present invention is also applied to a configuration and operation in which “handover” is replaced with “movement”.
  • the wireless terminal device 202 and the host device 204 in FIG. 1 are not essential components in the present invention. Even if the wireless communication system 301 does not include these components, a wireless base station device that starts transmission / reception of a wireless signal with a wireless terminal device when receiving a communication start instruction from another wireless base station device. It is possible to achieve the object of the present invention to perform an appropriate operation in a communication system provided.
  • the antenna 91, the circulator 92, the signal processing unit 95, and the communication traffic monitoring unit 98 in FIG. 2 are not essential components in the present invention. Even if the capacity booster base station 101 does not include these components, the radio base station apparatus starts transmission / reception of radio signals to / from the radio terminal apparatus when receiving a communication start instruction from another radio base station apparatus. It is possible to achieve the object of the present invention to execute an appropriate operation in a communication system comprising:
  • the antenna 111, the circulator 112, the signal processing unit 115, and the communication traffic monitoring unit 118 in FIG. 4 are not essential components in the present invention. Even if the coverage base station 201 does not include these components, a radio base station device that starts transmission / reception of a radio signal with a radio terminal device when receiving a communication start instruction from another radio base station device, It is possible to achieve the object of the present invention to perform an appropriate operation in a communication system provided.
  • the antenna 121, the circulator 122, the signal processing unit 125, and the input / output unit 129 in FIG. 5 are not essential components in the present invention. Even if the wireless terminal device 202 does not include these components, a wireless base station device that starts transmission / reception of a wireless signal with the wireless terminal device when receiving a communication start instruction from another wireless base station device. It is possible to achieve the object of the present invention to perform an appropriate operation in a communication system provided.
  • Wireless transmission unit (wireless communication unit) 95 signal processing unit 96 reception signal processing unit 97 transmission signal processing unit 98 communication traffic monitoring unit (traffic information acquisition unit) 99 Transmission power control unit 111 Antenna 112 Circulator 113 Wireless reception unit (wireless communication unit) 114 Wireless transmission unit (wireless communication unit) DESCRIPTION OF SYMBOLS 115 Signal processing part 116 Reception signal processing part 117 Transmission signal processing part 118 Communication traffic monitoring part 119 Peripheral base station control part 121 Antenna 122 Circulator 123 Wireless reception part (wireless communication part) 124 Wireless transmission unit (wireless communication unit) 125 signal processing unit 126 reception signal processing unit 127 transmission signal processing unit 128 wireless terminal control unit 129 input / output unit 101A, 101B capacity booster base station (radio base station apparatus) 201 Coverage base station (radio base station device) 202A, 202B, 202C Wireless terminal device 203 Core network 204 Host device

Abstract

The communication system (301) is provided with: a wireless terminal device (202); a coverage base station (201) for communicating with the wireless terminal device (202) through sending and receiving of wireless signals to and from the wireless terminal device (202); and a capacity booster base station (101) for transitioning to an activity state to initiate sending and receiving of wireless signals to and from the wireless terminal device (202), when a communication initiation command is received from the coverage base station (201). When a predetermined condition is satisfied, the wireless terminal device (202) transmits to the coverage base station (201) a request to transition the capacity booster base station (101) to an active activity state, and upon receiving the request, the coverage base station (201) transmits a communication initiation command to the capacity booster base station (101).

Description

通信システム、無線基地局装置、無線端末装置、および通信制御方法COMMUNICATION SYSTEM, RADIO BASE STATION DEVICE, RADIO TERMINAL DEVICE, AND COMMUNICATION CONTROL METHOD
 本発明は、通信システム、無線基地局装置、無線端末装置、および通信制御方法に関し、特に、無線端末装置が「移動」することにより複数の無線基地局装置と通信可能な通信システムにおける無線基地局装置、無線端末装置、当該通信システムおよび通信制御方法に関する。 The present invention relates to a communication system, a radio base station apparatus, a radio terminal apparatus, and a communication control method, and in particular, a radio base station in a communication system capable of communicating with a plurality of radio base station apparatuses by “moving” the radio terminal apparatus. The present invention relates to a device, a wireless terminal device, the communication system, and a communication control method.
 近年、移動通信サービスの加入者数の劇的な増加およびデータ通信による通信トラフィック量の増大から、所望の通信エリアの無線通信の容量を増加するためのセル、すなわち無線端末装置が通信可能なエリアを形成するカバレッジ基地局に加えて、たとえば当該カバレッジ基地局の形成するカバレッジセル内に、カバレッジセルよりも半径の小さいセルを形成するキャパシティブースタ基地局を設ける通信システムが提案されている。 In recent years, a cell for increasing the wireless communication capacity in a desired communication area, that is, an area in which a wireless terminal device can communicate, due to a dramatic increase in the number of mobile communication service subscribers and an increase in the amount of communication traffic due to data communication In addition to a coverage base station that forms a base station, for example, a communication system is proposed in which a capacity booster base station that forms a cell having a smaller radius than the coverage cell is provided in a coverage cell formed by the coverage base station.
 しかしながら、ある無線通信エリアを、カバレッジ基地局および複数のキャパシティブースタ基地局により構成する場合、カバレッジ基地局のみで構成する場合と比較して、無線通信エリアの使用電力は増加する。 However, when a certain wireless communication area is configured by a coverage base station and a plurality of capacity booster base stations, the power used in the wireless communication area is increased as compared to a case where only a coverage base station is configured.
 通信システムにおける使用電力の増加は、無線通信事業における事業運営費(OPEX)および二酸化炭素排出量を増加させるため、使用電力の削減は重要な課題である。たとえば、3GPP, "TS36.300 V9.7.0 Stage 2", 2011-03, P160(非特許文献1)には、ある無線通信エリアを複数の無線基地局装置を用いて構成する場合の電力利用効率改善の一例として、以下のような技術が開示されている。 An increase in power consumption in a communication system increases business operation costs (OPEX) and carbon dioxide emissions in the wireless communication business, so reduction of power consumption is an important issue. For example, in 3GPP, “TS36.300 V9.7.0 Stage 2”, 2011-03, P160 (Non-Patent Document 1), power use efficiency when a certain wireless communication area is configured using a plurality of wireless base station devices The following techniques are disclosed as an example of improvement.
 すなわち、無線通信の容量を補うセルを活用することにより、カバレッジセルを構成する無線基地局装置の通信負荷を軽減すること、当該セルが必要とされていないときには当該セルを消滅させること、および通信の需要に応じて当該セルを再度形成させることにより、使用電力の節減が実現する。 That is, by utilizing a cell that supplements the capacity of radio communication, the communication load of the radio base station apparatus constituting the coverage cell is reduced, the cell is extinguished when the cell is not needed, and communication The power consumption can be reduced by forming the cell again according to the demand.
 具体的には、キャパシティブースタ基地局は、他の無線基地局装置からの通信開始指示を受けると、無線端末装置との間の無線信号の送受信を開始する活性(Active)状態へ遷移し、無線端末装置との間の通信トラフィック量が少なくなると、無線端末装置との間の無線信号の送受信を停止する休止(Dormant)状態へ遷移する。 Specifically, when the capacity booster base station receives a communication start instruction from another radio base station apparatus, the capacity booster base station transitions to an active (Active) state in which transmission / reception of a radio signal with the radio terminal apparatus starts, When the amount of communication traffic with the wireless terminal device decreases, the state transits to a dormant state where transmission / reception of wireless signals with the wireless terminal device is stopped.
 非特許文献1に記載のシーケンス等におけるキャパシティブースタ基地局の活性状態および休止状態の切り替えに関し、上記のような通信システムの動作の効率化、およびキャパシティブースタ基地局の有効利用等、適切な動作を実行する技術が望まれる。 Regarding the switching of the active state and the dormant state of the capacity booster base station in the sequence described in Non-Patent Document 1, it is appropriate to improve the efficiency of the operation of the communication system as described above and to effectively use the capacity booster base station. A technique for performing the operation is desired.
 この発明は、上述の課題を解決するためになされたもので、その目的は、他の無線基地局装置からの通信開始指示を受けると無線端末装置との間の無線信号の送受信を開始する無線基地局装置、を備える通信システムにおいて、適切な動作を実行することが可能な通信システム、無線基地局装置、無線端末装置、および通信制御方法を提供することである。 The present invention has been made in order to solve the above-described problems, and an object of the present invention is to start wireless signal transmission / reception with a wireless terminal device when receiving a communication start instruction from another wireless base station device. To provide a communication system, a radio base station apparatus, a radio terminal apparatus, and a communication control method capable of executing an appropriate operation in a communication system including a base station apparatus.
 (1)上記課題を解決するために、この発明のある局面に係わる通信システムは、無線端末装置と、上記無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信するカバレッジ基地局と、上記無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信し、上記カバレッジ基地局から通信開始指示を受けると、上記無線端末装置との間の無線信号の送受信を開始する活性状態へ遷移するキャパシティブースタ基地局とを備える通信システムであって、上記無線端末装置は、所定条件が満たされると、上記キャパシティブースタ基地局を上記活性状態へ遷移させる要求を上記カバレッジ基地局へ送信し、上記カバレッジ基地局は、上記要求を受けて、上記通信開始指示を上記キャパシティブースタ基地局へ送信する。 (1) In order to solve the above-described problem, a communication system according to an aspect of the present invention provides coverage for communicating with the wireless terminal device by transmitting and receiving wireless signals between the wireless terminal device and the wireless terminal device. Communicating with the wireless terminal device by transmitting and receiving wireless signals between the base station and the wireless terminal device, and receiving a communication start instruction from the coverage base station, the wireless signal between the wireless terminal device A communication system comprising a capacity booster base station that transitions to an active state for starting transmission and reception, wherein the wireless terminal device requests that the capacity booster base station transition to the active state when a predetermined condition is satisfied To the coverage base station, and the coverage base station receives the request and sends the communication start instruction to the capacity booster. And transmits it to the ground stations.
 (4)またこの発明の別の局面に係わる無線基地局装置は、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信する無線基地局装置であって、上記無線端末装置との間で無線信号を送受信する無線通信部と、他の無線基地局装置からの通信開始指示を受けると、上記無線通信部を制御することにより、上記無線端末装置との間の無線信号の送受信を開始する制御部と、上記無線端末装置との通信のトラフィック量を取得するトラフィック情報取得部とを備え、上記制御部は、上記通信開始指示を受けて上記無線信号の送受信を開始した状態において、上記トラフィック情報取得部によって取得された上記トラフィック量が所定のしきい値未満であり、かつ上記無線端末装置との通信が所定レベル以上の優先度のデータを含んでいない場合には、上記無線信号の少なくとも送信を停止する。 (4) A radio base station apparatus according to another aspect of the present invention is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus. Upon receiving a communication start instruction from another wireless base station device and a wireless communication unit that transmits / receives a wireless signal to / from the device, the wireless signal between the wireless terminal device is controlled by controlling the wireless communication unit And a traffic information acquisition unit that acquires a traffic amount of communication with the wireless terminal device, and the control unit receives the communication start instruction and starts transmitting and receiving the wireless signal. In the state, the traffic amount acquired by the traffic information acquisition unit is less than a predetermined threshold value, and communication with the wireless terminal device has a priority level equal to or higher than a predetermined level. If not contain over data stops at least transmission of the radio signal.
 (5)またこの発明の別の局面に係わる無線端末装置は、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信するカバレッジ基地局と、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信し、上記カバレッジ基地局から通信開始指示を受けると、無線端末装置との間の無線信号の送受信を開始する活性状態へ遷移するキャパシティブースタ基地局とを備える通信システムにおける無線端末装置であって、上記カバレッジ基地局および上記キャパシティブースタ基地局との間で無線信号を送受信する無線通信部と、所定条件が満たされると、上記キャパシティブースタ基地局を上記活性状態へ遷移させる要求を上記無線通信部経由で上記カバレッジ基地局へ送信する制御部とを備える。 (5) A radio terminal apparatus according to another aspect of the present invention is provided between a coverage base station that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus, and the radio terminal apparatus. A capacity booster base that communicates with the wireless terminal device by transmitting / receiving a wireless signal and transitions to an active state that starts transmission / reception of the wireless signal to / from the wireless terminal device when receiving a communication start instruction from the coverage base station A wireless communication device comprising: a wireless communication unit that transmits and receives wireless signals between the coverage base station and the capacity booster base station; and when the predetermined condition is satisfied, the capacity booster A control unit that transmits a request to transition the base station to the active state to the coverage base station via the wireless communication unit.
 (6)またこの発明の別の局面に係わる無線基地局装置は、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信する無線基地局装置であって、上記無線端末装置との間で無線信号を送受信する無線通信部と、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信し、他の無線基地局装置から通信開始指示を受けると、無線端末装置との間の無線信号の送受信を開始する活性状態へ遷移するキャパシティブースタ基地局、を上記活性状態へ遷移させる要求を無線端末装置から受けて、上記通信開始指示を上記キャパシティブースタ基地局へ送信する制御部とを備える。 (6) A radio base station apparatus according to another aspect of the present invention is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus. When communicating with the wireless terminal device by transmitting / receiving a wireless signal to / from a wireless terminal device and receiving a communication start instruction from another wireless base station device, a wireless communication unit that transmits / receives a wireless signal to / from the device A capacity booster base station that transitions to an active state that starts transmission / reception of radio signals to / from the wireless terminal device is received from the wireless terminal device, and the communication start instruction is transmitted to the capacity And a control unit for transmitting to the booster base station.
 (7)上記課題を解決するために、この発明のある局面に係わる通信制御方法は、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信するカバレッジ基地局と、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信し、上記カバレッジ基地局から通信開始指示を受けると、無線端末装置との間の無線信号の送受信を開始する活性状態へ遷移するキャパシティブースタ基地局とを備える通信システムにおける通信制御方法であって、上記カバレッジ基地局が、上記キャパシティブースタ基地局を上記活性状態へ遷移させる要求を無線端末装置から受けて、上記通信開始指示を上記キャパシティブースタ基地局へ送信するステップと、上記キャパシティブースタ基地局が、上記カバレッジ基地局から上記通信開始指示を受けて上記活性状態へ遷移するステップとを含む。 (7) In order to solve the above problem, a communication control method according to an aspect of the present invention includes a coverage base station that communicates with the wireless terminal device by transmitting and receiving wireless signals to and from the wireless terminal device, It communicates with the wireless terminal device by transmitting / receiving a wireless signal to / from the terminal device, and when receiving a communication start instruction from the coverage base station, enters an active state in which transmission / reception of the wireless signal to / from the wireless terminal device is started. A communication control method in a communication system including a capacity booster base station for transition, wherein the coverage base station receives a request for transitioning the capacity booster base station to the active state from a wireless terminal device, and performs the communication Transmitting a start instruction to the capacity booster base station, and the capacity booster base station From the ground station receives the communication start instruction; and a transition to the active state.
 (11)上記課題を解決するために、この発明のある局面に係わる無線基地局装置は、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信する無線基地局装置であって、上記無線端末装置との間で無線信号を送受信する無線通信部と、他の無線基地局装置からの通信開始指示を受けると、上記無線通信部を制御することにより、上記無線端末装置との間の無線信号の送受信を開始する制御部と、上記無線端末装置との通信のトラフィック量を取得するトラフィック情報取得部とを備え、上記制御部は、上記通信開始指示を受けて上記無線信号の送受信を開始した状態において、上記トラフィック情報取得部によって取得された上記トラフィック量に基づいて、上記無線信号の少なくとも送信を停止するか否かを判断し、上記無線信号の送信を停止すると判断した場合には、上記無線通信部を制御することにより、上記無線信号の送信電力を段階的に下げて上記無線信号の送信を停止する停波制御を行う。 (11) In order to solve the above problem, a radio base station apparatus according to an aspect of the present invention is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus. When receiving a communication start instruction from another wireless base station device and a wireless communication unit that transmits / receives a wireless signal to / from the wireless terminal device, the wireless terminal device is controlled by controlling the wireless communication unit. And a traffic information acquisition unit that acquires a traffic amount of communication with the wireless terminal device. The control unit receives the communication start instruction and receives the communication start instruction. Whether or not to stop at least transmission of the radio signal based on the traffic amount acquired by the traffic information acquisition unit in a state where signal transmission / reception has started. And stopping the transmission of the radio signal by stepping down the transmission power of the radio signal stepwise by controlling the radio communication unit when it is determined to stop the transmission of the radio signal. I do.
 (19)またこの発明の別の局面に係わる無線基地局装置は、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信する無線基地局装置であって、上記無線端末装置との間で無線信号を送受信する無線通信部と、他の無線基地局装置からの通信開始指示を受けると、上記無線通信部を制御することにより、上記無線信号の送信電力を段階的に上げて上記無線端末装置との通信を開始する制御部とを備える。 (19) A radio base station apparatus according to another aspect of the present invention is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus. Upon receiving a communication start instruction from another wireless base station device and a wireless communication unit that transmits / receives a wireless signal to / from the device, the transmission power of the wireless signal is gradually increased by controlling the wireless communication unit. And a control unit that starts communication with the wireless terminal device.
 (20)またこの発明の別の局面に係わる無線基地局装置は、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信する無線基地局装置であって、上記無線端末装置との間で無線信号を送受信する無線通信部と、他の無線基地局装置からの通信開始指示を受けると、上記無線通信部を制御することにより、上記無線端装置との間の無線信号の送受信を開始する制御部とを備え、上記制御部は、上記通信開始指示を受けて上記無線信号の送受信を開始した状態において、上記無線信号の少なくとも送信を停止するか否かを判断し、上記無線信号の送信を停止すると判断した場合には、上記無線信号の送信を停止する旨を上記他の無線基地局装置に通知する。 (20) A radio base station apparatus according to another aspect of the present invention is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus. When receiving a communication start instruction from another wireless base station device and a wireless communication unit that transmits / receives a wireless signal to / from the device, the wireless signal between the wireless terminal device is controlled by controlling the wireless communication unit A control unit that starts transmission / reception of the radio signal, and the control unit determines whether to stop at least transmission of the radio signal in a state in which transmission / reception of the radio signal is started in response to the communication start instruction, If it is determined that the transmission of the radio signal is to be stopped, the other radio base station apparatus is notified that the transmission of the radio signal is to be stopped.
 (21)上記課題を解決するために、この発明のある局面に係わる通信システムは、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信するカバレッジ基地局と、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信するキャパシティブースタ基地局とを備える通信システムであって、上記キャパシティブースタ基地局は、上記カバレッジ基地局からの通信開始指示を受けると、上記無線端末装置との間の無線信号の送受信を開始し、上記無線信号の送受信を開始した状態において、上記無線信号の少なくとも送信を停止するか否かを判断し、上記無線信号の送信を停止すると判断した場合には、上記無線信号の送信を停止する旨を上記カバレッジ基地局に通知し、上記カバレッジ基地局は、上記通知を受けて、上記無線端末装置との通信のトラフィック量を取得し、取得した上記トラフィック量に基づく内容の応答を上記キャパシティブースタ基地局へ送信し、上記キャパシティブースタ基地局は、上記応答を受けた後、上記無線信号の送信を停止する。 (21) In order to solve the above problems, a communication system according to an aspect of the present invention includes a coverage base station that communicates with the wireless terminal device by transmitting and receiving wireless signals to and from the wireless terminal device, and a wireless terminal A capacity booster base station that communicates with the wireless terminal device by transmitting and receiving wireless signals to and from the device, wherein the capacity booster base station is a communication start instruction from the coverage base station. The wireless terminal starts transmission / reception of the wireless signal, and determines whether to stop at least transmission of the wireless signal in a state where transmission / reception of the wireless signal is started, If it is determined that the transmission of the radio signal is to be stopped, the coverage base station is notified that the transmission of the radio signal is to be stopped, and the coverage base The station receives the notification, acquires the traffic volume of communication with the wireless terminal device, transmits a response of the content based on the acquired traffic volume to the capacity booster base station, and the capacity booster base station Stops receiving the wireless signal after receiving the response.
 (22)上記課題を解決するために、この発明のある局面に係わる通信制御方法は、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信する無線基地局装置における通信制御方法であって、他の無線基地局装置からの通信開始指示を受けると、上記無線端末装置との間の無線信号の送受信を開始するステップと、上記無線端末装置との通信のトラフィック量を取得するステップと、取得した上記トラフィック量に基づいて、上記無線信号の少なくとも送信を停止するか否かを判断し、上記無線信号の送信を停止すると判断した場合には、上記無線信号の送信電力を段階的に下げて上記無線信号の送信を停止する停波制御を行うステップとを含む。 (22) In order to solve the above-described problem, a communication control method according to an aspect of the present invention provides communication in a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus. When a communication start instruction is received from another radio base station apparatus, the control method includes a step of starting transmission / reception of a radio signal with the radio terminal apparatus, and a traffic volume of communication with the radio terminal apparatus. Based on the acquired step and the acquired traffic volume, it is determined whether or not to stop at least transmission of the radio signal. If it is determined to stop transmission of the radio signal, transmission power of the radio signal is determined. And a step of performing wave stop control for stopping the transmission of the radio signal by lowering the signal stepwise.
 本発明によれば、他の無線基地局装置からの通信開始指示を受けると無線端末装置との間の無線信号の送受信を開始する無線基地局装置、を備える通信システムにおいて、適切な動作を実行することができる。 According to the present invention, an appropriate operation is performed in a communication system including a radio base station apparatus that starts transmission / reception of a radio signal to / from a radio terminal apparatus when receiving a communication start instruction from another radio base station apparatus. can do.
図1は、本発明の実施の形態に係る無線通信システムの構成を示す図である。FIG. 1 is a diagram showing a configuration of a radio communication system according to an embodiment of the present invention. 図2は、本発明の実施の形態に係るキャパシティブースタ基地局の構成を示す図である。FIG. 2 is a diagram showing a configuration of a capacity booster base station according to the embodiment of the present invention. 図3は、本発明の実施の形態に係るキャパシティブースタ基地局における無線送信部の構成を示す図である。FIG. 3 is a diagram showing a configuration of a radio transmission unit in the capacity booster base station according to the embodiment of the present invention. 図4は、本発明の実施の形態に係るカバレッジ基地局の構成を示す図である。FIG. 4 is a diagram showing a configuration of a coverage base station according to the embodiment of the present invention. 図5は、本発明の実施の形態に係る無線端末装置の構成を示す図である。FIG. 5 is a diagram showing the configuration of the wireless terminal apparatus according to the embodiment of the present invention. 図6は、本発明の実施の形態に係る無線通信システムにおけるハンドオーバ動作のシーケンスの一例を示す図である。FIG. 6 is a diagram showing an exemplary sequence of a handover operation in the radio communication system according to the embodiment of the present invention. 図7は、電力効率の改善を図る際の無線通信システムの構成を示す図である。FIG. 7 is a diagram illustrating a configuration of a wireless communication system when power efficiency is improved. 図8は、キャパシティブースタ基地局101Aおよび101Bがカバレッジ基地局201からの活性状態への遷移要求に従って活性状態に遷移した状態を示す図である。FIG. 8 is a diagram illustrating a state in which the capacity booster base stations 101A and 101B have transitioned to the active state in accordance with a transition request from the coverage base station 201 to the active state. 図9は、キャパシティブースタ基地局101Bが休止状態に遷移した際の、無線通信システムの状態を示す図である。FIG. 9 is a diagram illustrating a state of the wireless communication system when the capacity booster base station 101B transitions to a dormant state. 図10は、本発明の実施の形態に係る無線通信システムにおける電力効率の改善動作のシーケンスの一例を示す図である。FIG. 10 is a diagram showing an exemplary sequence of a power efficiency improvement operation in the wireless communication system according to the embodiment of the present invention. 図11は、本発明の実施の形態に係る無線通信システムにおけるキャパシティブースタ基地局が休止状態へ遷移する際のシーケンスの一例を示す図である。FIG. 11 is a diagram illustrating an example of a sequence when the capacity booster base station transitions to a dormant state in the wireless communication system according to the embodiment of the present invention. 図12は、本発明の実施の形態に係る無線通信システムにおけるキャパシティブースタ基地局が送信する電波の電力を下げて活性状態から休止状態へ遷移する際の動作手順を定めたフローチャートである。FIG. 12 is a flowchart that defines an operation procedure when the power of the radio wave transmitted by the capacity booster base station in the wireless communication system according to the embodiment of the present invention is lowered to transition from the active state to the dormant state. 図13は、本発明の実施の形態に係る無線通信システムにおけるキャパシティブースタ基地局が活性状態へ遷移する際のシーケンスの一例を示す図である。FIG. 13 is a diagram showing an exemplary sequence when the capacity booster base station transitions to the active state in the wireless communication system according to the embodiment of the present invention. 図14は、本発明の実施の形態に係る無線通信システムにおけるキャパシティブースタ基地局が送信する電波の電力を上げて休止状態から活性状態へ遷移する際の動作手順を定めたフローチャートである。FIG. 14 is a flowchart defining an operation procedure when the power of the radio wave transmitted by the capacity booster base station in the wireless communication system according to the embodiment of the present invention is increased to transition from the sleep state to the active state. 図15は、キャパシティブースタ基地局が活性状態から休止状態へ遷移する際に生ずる問題点を説明するための図である。FIG. 15 is a diagram for explaining problems that occur when a capacity booster base station transitions from an active state to a dormant state. 図16は、本発明の実施の形態に係る無線通信システムにおけるキャパシティブースタ基地局の休止状態への遷移がカバレッジ基地局により容認される場合のシーケンスの一例を示す図である。FIG. 16 is a diagram showing an example of a sequence in a case where the transition to the dormant state of the capacity booster base station in the wireless communication system according to the embodiment of the present invention is accepted by the coverage base station. 図17は、本発明の実施の形態に係る無線通信システムにおける通信トラフィック量のしきい値Th1およびしきい値Th2が同じ値である場合の通信トラフィック量の時間変化の一例を示す図である。FIG. 17 is a diagram showing an example of temporal change in the amount of communication traffic when the threshold value Th1 and the threshold value Th2 of the communication traffic amount are the same value in the wireless communication system according to the embodiment of the present invention. 図18は、本発明の実施の形態に係る無線通信システムにおける通信トラフィック量のしきい値Th2がしきい値Th1より小さい値である場合の通信トラフィック量の時間変化の一例を示す図である。FIG. 18 is a diagram illustrating an example of a temporal change in the communication traffic volume when the communication traffic volume threshold Th2 is smaller than the threshold Th1 in the wireless communication system according to the embodiment of the present invention. 図19は、本発明の実施の形態に係る無線通信システムにおけるキャパシティブースタ基地局の休止状態への遷移がカバレッジ基地局により容認されない場合のシーケンスの一例を示す図である。FIG. 19 is a diagram illustrating an example of a sequence in a case where the transition to the dormant state of the capacity booster base station in the wireless communication system according to the embodiment of the present invention is not permitted by the coverage base station. 図20は、本発明の実施の形態に係る無線通信システムにおける通信トラフィック量が待機動作中にしきい値Th2を上回る場合の通信トラフィック量の時間変化の一例を示す図である。FIG. 20 is a diagram illustrating an example of a temporal change in the amount of communication traffic when the amount of communication traffic in the wireless communication system according to the embodiment of the present invention exceeds the threshold value Th2 during the standby operation. 図21は、本発明の実施の形態に係る無線通信システムにおけるキャパシティブースタ基地局が無線端末装置からの要求により活性状態へ遷移する際のシーケンスの一例を示す図である。FIG. 21 is a diagram illustrating an example of a sequence when the capacity booster base station in the wireless communication system according to the embodiment of the present invention transitions to the active state in response to a request from the wireless terminal device. 図22は、本発明の実施の形態に係る無線通信システムにおける優先度の高い通信を行っているキャパシティブースタ基地局が休止状態へ遷移する際の動作手順を定めたフローチャートである。FIG. 22 is a flowchart that defines an operation procedure when a capacity booster base station that performs high-priority communication in the wireless communication system according to the embodiment of the present invention transitions to a dormant state.
 (1)上記課題を解決するために、この発明のある局面に係わる通信システムは、無線端末装置と、上記無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信するカバレッジ基地局と、上記無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信し、上記カバレッジ基地局から通信開始指示を受けると、上記無線端末装置との間の無線信号の送受信を開始する活性状態へ遷移するキャパシティブースタ基地局とを備える通信システムであって、上記無線端末装置は、所定条件が満たされると、上記キャパシティブースタ基地局を上記活性状態へ遷移させる要求を上記カバレッジ基地局へ送信し、上記カバレッジ基地局は、上記要求を受けて、上記通信開始指示を上記キャパシティブースタ基地局へ送信する。 (1) In order to solve the above-described problem, a communication system according to an aspect of the present invention provides coverage for communicating with the wireless terminal device by transmitting and receiving wireless signals between the wireless terminal device and the wireless terminal device. Communicating with the wireless terminal device by transmitting and receiving wireless signals between the base station and the wireless terminal device, and receiving a communication start instruction from the coverage base station, the wireless signal between the wireless terminal device A communication system comprising a capacity booster base station that transitions to an active state for starting transmission and reception, wherein the wireless terminal device requests that the capacity booster base station transition to the active state when a predetermined condition is satisfied To the coverage base station, and the coverage base station receives the request and sends the communication start instruction to the capacity booster. And transmits it to the ground stations.
 このように、無線端末装置は、所定条件が満たされるとキャパシティブースタ基地局を活性状態へ遷移させる要求をカバレッジ基地局へ送信することにより、カバレッジ基地局からの電波の受信電力よりも大きな電力で無線端末装置が電波を受信可能なキャパシティブースタ基地局へ通信先を変更することができる。そして、無線端末装置は、カバレッジ基地局からの電波の受信電力と比べて大きな電力でキャパシティブースタ基地局からの電波を受信することができ、また、当該キャパシティブースタ基地局における通信トラフィック量に余裕があることが期待できるので、通信の安定化および高速化を行うことができる。 In this way, the wireless terminal device transmits a request for transitioning the capacity booster base station to the active state when the predetermined condition is satisfied, thereby increasing the power larger than the reception power of the radio wave from the coverage base station. Thus, the communication destination can be changed to a capacity booster base station capable of receiving radio waves by the wireless terminal device. The wireless terminal device can receive the radio wave from the capacity booster base station with a large power compared to the reception power of the radio wave from the coverage base station, and the communication traffic amount in the capacity booster base station can be increased. Since it can be expected that there is room, communication can be stabilized and speeded up.
 (2)好ましくは、上記無線端末装置は、所定レベル以上の優先度のデータを含む通信を行う必要が生じると、上記要求を上記カバレッジ基地局へ送信してもよい。 (2) Preferably, the wireless terminal device may transmit the request to the coverage base station when it becomes necessary to perform communication including data having a priority level equal to or higher than a predetermined level.
 このように、キャパシティブースタ基地局を活性状態へ遷移させる適切な条件である所定レベル以上の優先度のデータを含む通信を行う必要が生じた際に、当該通信を高速で行うことができる。具体的には、無線端末装置は、自己において所定レベル以上の優先度のデータを含む通信を行う必要が生じると、カバレッジ基地局からの電波の受信電力よりも大きな電力で自己が電波を受信できるキャパシティブースタ基地局へ通信先を変更することができる。無線端末装置は、カバレッジ基地局からの電波の受信電力と比べて大きな電力でキャパシティブースタ基地局からの電波を受信することができ、また、当該キャパシティブースタ基地局における通信トラフィック量に余裕があることが期待できるので、優先度の高い通信を安定かつ高速に行うことができる。 As described above, when it becomes necessary to perform communication including data having a priority level equal to or higher than a predetermined level, which is an appropriate condition for transitioning the capacity booster base station to the active state, the communication can be performed at high speed. Specifically, when it becomes necessary for the wireless terminal device to perform communication including data having a priority level equal to or higher than a predetermined level, the wireless terminal device can receive the radio wave with power larger than the reception power of the radio wave from the coverage base station. The communication destination can be changed to the capacity booster base station. The wireless terminal device can receive radio waves from the capacity booster base station with a large amount of power compared to the reception power of radio waves from the coverage base station, and the communication traffic volume in the capacity booster base station has a margin. Since it can be expected, high-priority communication can be performed stably and at high speed.
 (3)好ましくは、上記キャパシティブースタ基地局は、上記活性状態において、上記無線端末装置との通信のトラフィック量を取得し、取得した上記トラフィック量が所定のしきい値未満であり、かつ上記無線端末装置との通信が所定レベル以上の優先度のデータを含んでいない場合には、上記無線信号の少なくとも送信を停止してもよい。 (3) Preferably, the capacity booster base station acquires a traffic volume of communication with the wireless terminal device in the active state, the acquired traffic volume is less than a predetermined threshold value, and When communication with the wireless terminal device does not include data having a priority level equal to or higher than a predetermined level, at least transmission of the wireless signal may be stopped.
 このような動作により、キャパシティブースタ基地局は、優先度の高い通信を行っている場合には、自己における通信のトラフィック量が所定のしきい値未満であっても当該通信を継続する。また、キャパシティブースタ基地局は、優先度の高い通信を行っていない場合には、自己における通信のトラフィック量が所定のしきい値未満であれば当該通信を停止し、休止状態へ遷移する。これにより、キャパシティブースタ基地局は、活性状態の継続または無線信号の送信を停止する休止状態への遷移について、高い優先度の通信の有無に応じた適切な判断を行うことができる。 With this operation, the capacity booster base station continues the communication even when the communication traffic volume in the capacity booster base station is less than a predetermined threshold when performing communication with high priority. Further, when the high-priority communication is not performed, the capacity booster base station stops the communication and shifts to a dormant state if the traffic volume of the communication in itself is less than a predetermined threshold. Thereby, the capacity booster base station can make an appropriate determination according to the presence / absence of high-priority communication regarding the continuation of the active state or the transition to the dormant state in which the transmission of the radio signal is stopped.
 (4)またこの発明の別の局面に係わる無線基地局装置は、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信する無線基地局装置であって、上記無線端末装置との間で無線信号を送受信する無線通信部と、他の無線基地局装置からの通信開始指示を受けると、上記無線通信部を制御することにより、上記無線端末装置との間の無線信号の送受信を開始する制御部と、上記無線端末装置との通信のトラフィック量を取得するトラフィック情報取得部とを備え、上記制御部は、上記通信開始指示を受けて上記無線信号の送受信を開始した状態において、上記トラフィック情報取得部によって取得された上記トラフィック量が所定のしきい値未満であり、かつ上記無線端末装置との通信が所定レベル以上の優先度のデータを含んでいない場合には、上記無線信号の少なくとも送信を停止する。 (4) A radio base station apparatus according to another aspect of the present invention is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus. Upon receiving a communication start instruction from another wireless base station device and a wireless communication unit that transmits / receives a wireless signal to / from the device, the wireless signal between the wireless terminal device is controlled by controlling the wireless communication unit And a traffic information acquisition unit that acquires a traffic amount of communication with the wireless terminal device, and the control unit receives the communication start instruction and starts transmitting and receiving the wireless signal. In the state, the traffic volume acquired by the traffic information acquisition unit is less than a predetermined threshold value, and communication with the wireless terminal device has a priority level equal to or higher than a predetermined level. If not contain over data stops at least transmission of the radio signal.
 このような動作により、キャパシティブースタ基地局は、優先度の高い通信を行っている場合には、自己における通信のトラフィック量が所定のしきい値未満であっても当該通信を継続する。また、キャパシティブースタ基地局は、優先度の高い通信を行っていない場合には、自己における通信のトラフィック量が所定のしきい値未満であれば当該通信を停止し、休止状態へ遷移する。これにより、キャパシティブースタ基地局は、活性状態の継続または無線信号の送信を停止する休止状態への遷移について高い優先度の通信の有無に応じた適切な判断を行うことができる。 With this operation, the capacity booster base station continues the communication even when the communication traffic volume in the capacity booster base station is less than a predetermined threshold when performing communication with high priority. Further, when the high-priority communication is not performed, the capacity booster base station stops the communication and shifts to a dormant state if the traffic volume of the communication in itself is less than a predetermined threshold. Thereby, the capacity booster base station can make an appropriate determination according to the presence / absence of high-priority communication regarding the continuation of the active state or the transition to the dormant state in which the transmission of the radio signal is stopped.
 (5)またこの発明の別の局面に係わる無線端末装置は、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信するカバレッジ基地局と、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信し、上記カバレッジ基地局から通信開始指示を受けると、無線端末装置との間の無線信号の送受信を開始する活性状態へ遷移するキャパシティブースタ基地局とを備える通信システムにおける無線端末装置であって、上記カバレッジ基地局および上記キャパシティブースタ基地局との間で無線信号を送受信する無線通信部と、所定条件が満たされると、上記キャパシティブースタ基地局を上記活性状態へ遷移させる要求を上記無線通信部経由で上記カバレッジ基地局へ送信する制御部とを備える。 (5) A radio terminal apparatus according to another aspect of the present invention is provided between a coverage base station that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus, and the radio terminal apparatus. A capacity booster base that communicates with the wireless terminal device by transmitting / receiving a wireless signal and transitions to an active state that starts transmission / reception of the wireless signal to / from the wireless terminal device when receiving a communication start instruction from the coverage base station A wireless communication device comprising: a wireless communication unit that transmits and receives wireless signals between the coverage base station and the capacity booster base station; and when the predetermined condition is satisfied, the capacity booster A control unit that transmits a request to transition the base station to the active state to the coverage base station via the wireless communication unit.
 このように、無線端末装置は、所定条件が満たされるとキャパシティブースタ基地局を活性状態へ遷移させる要求をカバレッジ基地局へ送信することにより、カバレッジ基地局からの電波の受信電力よりも大きな電力で無線端末装置が電波を受信可能なキャパシティブースタ基地局へ通信先を変更することができる。そして、無線端末装置は、カバレッジ基地局からの電波の受信電力と比べて大きな電力でキャパシティブースタ基地局からの電波を受信することができ、また、当該キャパシティブースタ基地局における通信チャネル等の無線リソースを占有して使用することが期待できるので、通信を安定かつ高速に行うことができる。 In this way, the wireless terminal device transmits a request for transitioning the capacity booster base station to the active state when the predetermined condition is satisfied, thereby increasing the power larger than the reception power of the radio wave from the coverage base station. Thus, the communication destination can be changed to a capacity booster base station capable of receiving radio waves by the wireless terminal device. And the wireless terminal device can receive the radio wave from the capacity booster base station with a large power compared to the received power of the radio wave from the coverage base station, and the communication channel etc. in the capacity booster base station Since it can be expected to occupy and use radio resources, communication can be performed stably and at high speed.
 (6)またこの発明の別の局面に係わる無線基地局装置は、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信する無線基地局装置であって、上記無線端末装置との間で無線信号を送受信する無線通信部と、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信し、他の無線基地局装置から通信開始指示を受けると、無線端末装置との間の無線信号の送受信を開始する活性状態へ遷移するキャパシティブースタ基地局、を上記活性状態へ遷移させる要求を無線端末装置から受けて、上記通信開始指示を上記キャパシティブースタ基地局へ送信する制御部とを備える。 (6) A radio base station apparatus according to another aspect of the present invention is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus. When communicating with the wireless terminal device by transmitting / receiving a wireless signal to / from a wireless terminal device and receiving a communication start instruction from another wireless base station device, a wireless communication unit that transmits / receives a wireless signal to / from the device A capacity booster base station that transitions to an active state that starts transmission / reception of radio signals to / from the wireless terminal device is received from the wireless terminal device, and the communication start instruction is transmitted to the capacity And a control unit for transmitting to the booster base station.
 これにより、無線端末装置は、たとえば所定条件が満たされた場合にキャパシティブースタ基地局を活性状態へ遷移させる要求をカバレッジ基地局へ送信することにより、カバレッジ基地局からの電波の受信電力よりも大きな電力で無線端末装置が電波を受信可能なキャパシティブースタ基地局へ通信先を変更することができる。そして、無線端末装置は、カバレッジ基地局からの電波の受信電力と比べて大きな電力でキャパシティブースタ基地局からの電波を受信することができ、また、当該キャパシティブースタ基地局における通信チャネル等の無線リソースを占有して使用することが期待できるので、通信を安定かつ高速に行うことができる。 As a result, the wireless terminal device, for example, by transmitting a request for transitioning the capacity booster base station to the active state when a predetermined condition is satisfied, than the received power of the radio wave from the coverage base station. The communication destination can be changed to a capacity booster base station that can receive radio waves with a large amount of power. And the wireless terminal device can receive the radio wave from the capacity booster base station with a large power compared to the received power of the radio wave from the coverage base station, and the communication channel etc. in the capacity booster base station Since it can be expected to occupy and use radio resources, communication can be performed stably and at high speed.
 (7)上記課題を解決するために、この発明のある局面に係わる通信制御方法は、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信するカバレッジ基地局と、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信し、上記カバレッジ基地局から通信開始指示を受けると、無線端末装置との間の無線信号の送受信を開始する活性状態へ遷移するキャパシティブースタ基地局とを備える通信システムにおける通信制御方法であって、上記カバレッジ基地局が、上記キャパシティブースタ基地局を上記活性状態へ遷移させる要求を無線端末装置から受けて、上記通信開始指示を上記キャパシティブースタ基地局へ送信するステップと、上記キャパシティブースタ基地局が、上記カバレッジ基地局から上記通信開始指示を受けて上記活性状態へ遷移するステップとを含む。 (7) In order to solve the above problem, a communication control method according to an aspect of the present invention includes a coverage base station that communicates with the wireless terminal device by transmitting and receiving wireless signals to and from the wireless terminal device, It communicates with the wireless terminal device by transmitting / receiving a wireless signal to / from the terminal device, and when receiving a communication start instruction from the coverage base station, enters an active state in which transmission / reception of the wireless signal to / from the wireless terminal device is started. A communication control method in a communication system including a capacity booster base station for transition, wherein the coverage base station receives a request for transitioning the capacity booster base station to the active state from a wireless terminal device, and performs the communication Transmitting a start instruction to the capacity booster base station, and the capacity booster base station From the ground station receives the communication start instruction; and a transition to the active state.
 これにより、無線端末装置は、たとえば所定条件が満たされた場合にキャパシティブースタ基地局を活性状態へ遷移させる要求をカバレッジ基地局へ送信することにより、カバレッジ基地局からの電波の受信電力よりも大きな電力で無線端末装置が電波を受信可能なキャパシティブースタ基地局へ通信先を変更することができる。そして、無線端末装置は、カバレッジ基地局からの電波の受信電力と比べて大きな電力でキャパシティブースタ基地局からの電波を受信することができ、また、当該キャパシティブースタ基地局における通信チャネル等の無線リソースを占有して使用することが期待できるので、通信を安定かつ高速に行うことができる。 As a result, the wireless terminal device, for example, by transmitting a request for transitioning the capacity booster base station to the active state when a predetermined condition is satisfied, than the received power of the radio wave from the coverage base station. The communication destination can be changed to a capacity booster base station that can receive radio waves with a large amount of power. And the wireless terminal device can receive the radio wave from the capacity booster base station with a large power compared to the received power of the radio wave from the coverage base station, and the communication channel etc. in the capacity booster base station Since it can be expected to occupy and use radio resources, communication can be performed stably and at high speed.
 (11)上記課題を解決するために、この発明のある局面に係わる無線基地局装置は、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信する無線基地局装置であって、上記無線端末装置との間で無線信号を送受信する無線通信部と、他の無線基地局装置からの通信開始指示を受けると、上記無線通信部を制御することにより、上記無線端末装置との間の無線信号の送受信を開始する制御部と、上記無線端末装置との通信のトラフィック量を取得するトラフィック情報取得部とを備え、上記制御部は、上記通信開始指示を受けて上記無線信号の送受信を開始した状態において、上記トラフィック情報取得部によって取得された上記トラフィック量に基づいて、上記無線信号の少なくとも送信を停止するか否かを判断し、上記無線信号の送信を停止すると判断した場合には、上記無線通信部を制御することにより、上記無線信号の送信電力を段階的に下げて上記無線信号の送信を停止する停波制御を行う。 (11) In order to solve the above problem, a radio base station apparatus according to an aspect of the present invention is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus. When receiving a communication start instruction from another wireless base station device and a wireless communication unit that transmits / receives a wireless signal to / from the wireless terminal device, the wireless terminal device is controlled by controlling the wireless communication unit. And a traffic information acquisition unit that acquires a traffic amount of communication with the wireless terminal device. The control unit receives the communication start instruction and receives the communication start instruction. Whether or not to stop at least transmission of the radio signal based on the traffic amount acquired by the traffic information acquisition unit in a state where signal transmission / reception has started. And stopping the transmission of the radio signal by stepping down the transmission power of the radio signal stepwise by controlling the radio communication unit when it is determined to stop the transmission of the radio signal. I do.
 このようにして無線信号の送信電力を一度に大きく下げずに段階的に下げて無線信号の送信を停止する構成により、無線端末装置が受信する無線信号の電力は、急激ではなく、緩やかに減少する。これにより、無線基地局装置は、自己および自己を選択している無線端末装置間の通信が途絶えてしまう前に、当該無線端末装置を他の無線基地局装置に「移動」させることができる。この結果、無線基地局装置は、停波制御を行う際に、自己を選択している無線端末装置の通信が途絶えてしまうことを防ぐことができる。 In this way, the wireless signal power received by the wireless terminal device is gradually reduced rather than suddenly by the configuration in which the wireless signal transmission power is stopped step by step without reducing the wireless signal transmission power at once. To do. Accordingly, the radio base station apparatus can “move” the radio terminal apparatus to another radio base station apparatus before communication between the radio terminal apparatus and the radio terminal apparatus that has selected the radio base station apparatus is interrupted. As a result, the radio base station apparatus can prevent the communication of the radio terminal apparatus that has selected itself from being interrupted when performing the stop control.
 (12)好ましくは、上記制御部は、上記無線信号の送信を停止すると判断した場合には、上記停波制御を行う前に、上記無線信号の送信を停止する旨を上記他の無線基地局装置に通知してもよい。 (12) Preferably, when the control unit determines to stop the transmission of the radio signal, the other radio base station indicates that the transmission of the radio signal is stopped before performing the stop control. The device may be notified.
 このように、無線信号の送信を停止する旨を他の無線基地局装置に周知することにより、自己の無線基地局装置および他の無線基地局装置間での無線端末装置の「移動」動作が繰り返されることを防ぐことができる。 In this way, by notifying other radio base station apparatuses that transmission of radio signals is to be stopped, the “movement” operation of the radio terminal apparatus between its own radio base station apparatus and other radio base station apparatuses can be performed. It can be prevented from being repeated.
 (13)より好ましくは、上記制御部は、上記通知に対する応答を上記他の無線基地局装置から受けた後、上記停波制御を行ってもよい。 (13) More preferably, the control unit may perform the stop control after receiving a response to the notification from the other radio base station apparatus.
 このように、無線信号の送信を停止する旨の通知に対する応答を他の無線基地局装置から受けることにより、当該応答に応じた停波制御を行うことができる。 As described above, by receiving a response to the notification that the transmission of the radio signal is stopped from another radio base station apparatus, it is possible to perform the stop control according to the response.
 (14)より好ましくは、上記制御部は、上記トラフィック量が第一のしきい値未満である場合に上記無線信号の送信を停止すると判断し、上記応答を受けた後、上記トラフィック量が上記第一のしきい値より小さい第二のしきい値未満である場合に上記停波制御を行ってもよい。 (14) More preferably, the control unit determines to stop the transmission of the radio signal when the traffic amount is less than a first threshold, and after receiving the response, the traffic amount is The wave stopping control may be performed when the second threshold value is less than the second threshold value.
 このように、第二のしきい値より大きい第一のしきい値を設定することにより、トラフィック量が第二のしきい値未満である場合に無線信号の停止を判断する場合と比べて、より早い時点で無線信号の停止を判断するので、トラフィック量が第二のしきい値未満になると速やかに停波制御を行うことができる。 In this way, by setting the first threshold value larger than the second threshold value, compared with the case where the stop of the radio signal is determined when the traffic amount is less than the second threshold value, Since the stop of the radio signal is determined at an earlier time point, the stop control can be quickly performed when the traffic amount becomes less than the second threshold value.
 (15)より好ましくは、上記制御部は、上記他の無線基地局装置における無線端末装置との通信のトラフィック量に基づく内容の上記応答を受けて、上記応答の内容に基づいて、上記停波制御を行う条件を設定してもよい。 (15) More preferably, the control unit receives the response based on the traffic volume of communication with the wireless terminal device in the other wireless base station device, and receives the response based on the content of the response. Conditions for performing control may be set.
 このような構成により、自己の無線基地局装置は、たとえば他の無線基地局装置における無線端末装置との通信のトラフィック量が少ないという内容を含む上記応答を受けると、他の無線基地局装置における通信のトラフィック量が少ないことを認識して、これに対応した停波制御の実行条件を設定し、設定した実行条件を満たした場合に停波制御を行うことができる。また、自己の無線基地局装置は、たとえば他の無線基地局装置における無線端末装置との通信のトラフィック量が多いという内容を含む上記応答を受けると、他の無線基地局装置における通信のトラフィック量が多いことを認識して、これに対応した停波制御の実行条件を設定し、設定した実行条件を満たした場合に停波制御を行うことができる。すなわち、自己の無線基地局装置および無線端末装置間の通信開始を判断する他の無線基地局装置における通信のトラフィック量に応じて、無線信号の送信停止を適切に判断することができる。 With such a configuration, when the own radio base station apparatus receives the above response including the content that the traffic volume of communication with the radio terminal apparatus in the other radio base station apparatus is small, for example, in the other radio base station apparatus Recognizing that the traffic volume of communication is small, setting the execution condition of the stop control corresponding to this, and setting the execution condition, the stop control can be performed. Further, when the own radio base station apparatus receives the above response including the content that the communication traffic volume with the radio terminal apparatus in the other radio base station apparatus is large, for example, the communication traffic volume in the other radio base station apparatus It is possible to recognize that there are many, set execution conditions of the stop control corresponding to this, and perform the stop control when the set execution conditions are satisfied. That is, it is possible to appropriately determine whether to stop transmitting radio signals according to the amount of communication traffic in other radio base station apparatuses that determine the start of communication between their own radio base station apparatus and radio terminal apparatus.
 (16)より好ましくは、上記制御部は、上記他の無線基地局装置の上記トラフィック量が多い場合に対応する内容の上記応答を受けた場合には、上記条件として、上記トラフィック情報取得部によって取得された上記トラフィック量が所定のしきい値未満である状態が所定時間継続することを設定してもよい。 (16) More preferably, when the control unit receives the response of the content corresponding to the case where the traffic volume of the other radio base station device is large, the traffic information acquisition unit sets the condition as the condition. It may be set that the state in which the acquired traffic amount is less than a predetermined threshold continues for a predetermined time.
 このような構成により、トラフィック量に応じた適切な動作を行うことができる。具体的には、ある時点で自己の無線基地局装置におけるトラフィック量が少なくても、他の無線基地局装置のトラフィック量が多い場合、しばらくすると自己の無線基地局装置におけるトラフィック量が多くなる場合がある。このような場合、たとえば、自己の無線基地局装置が停波制御を行い、他の無線基地局装置における通信トラフィック量が他の無線基地局装置において定められたしきい値を上回ると、他の無線基地局装置は、通信開始指示を自己の無線基地局装置へ送信する。自己の無線基地局装置は、他の無線基地局装置から通信開始指示を受けると、再度活性状態へ遷移するので、上記停波制御が無駄な動作となってしまう。このような場合においても、自己の無線基地局装置が、自己における通信トラフィック量が所定のしきい値を下回っても、通信トラフィック量が所定のしきい値未満である状態が所定時間継続しない場合は活性状態を継続することにより、無駄な停波制御の発生を抑えることができる。すなわち、自己の無線基地局装置は、停波制御を行うことなく継続して無線信号を送受信することができる。 With such a configuration, it is possible to perform an appropriate operation according to the traffic volume. Specifically, even if the traffic volume of the own radio base station apparatus is small at a certain point in time, if the traffic volume of the other radio base station apparatus is large, the traffic volume of the own radio base station apparatus increases after a while There is. In such a case, for example, when the own radio base station apparatus performs the stop control and the communication traffic amount in the other radio base station apparatus exceeds a threshold value determined in the other radio base station apparatus, The radio base station apparatus transmits a communication start instruction to its own radio base station apparatus. When the own radio base station apparatus receives a communication start instruction from another radio base station apparatus, the own radio base station apparatus transitions to the active state again, so that the above-described wave stopping control becomes a useless operation. Even in such a case, even if the own radio base station apparatus has a communication traffic volume below a predetermined threshold value, the communication traffic volume does not continue below the predetermined threshold value for a predetermined time. By continuing the active state, it is possible to suppress the occurrence of useless stop control. That is, its own radio base station apparatus can continuously transmit and receive radio signals without performing stop control.
 (17)より好ましくは、上記制御部は、上記他の無線基地局装置の上記トラフィック量が少ない場合に対応する内容の上記応答を受けた場合には、上記条件として、上記トラフィック情報取得部によって取得された上記トラフィック量が所定のしきい値未満になることを設定してもよい。 (17) More preferably, when the control unit receives the response of the content corresponding to the case where the traffic amount of the other radio base station device is small, the traffic information acquisition unit as the condition You may set that the acquired said traffic amount becomes less than a predetermined threshold value.
 このような構成により、無線基地局装置は、他の無線基地局装置のトラフィック量が少ないことを確認した上で、停波制御を行うことができる。すなわち、無線基地局装置は、停波制御を行った後に他の無線基地局装置により再度無線信号の送受信を開始させられる可能性が低い状態であることを確認した上で、停波制御を行うことができる。 With such a configuration, the radio base station apparatus can perform the wave stop control after confirming that the traffic volume of the other radio base station apparatus is small. That is, the radio base station apparatus performs wave stop control after confirming that it is unlikely that another radio base station apparatus can start transmission / reception of radio signals again after performing wave stop control. be able to.
 (18)好ましくは、上記制御部は、上記通信開始指示を受けて上記無線信号の送受信を開始した状態において、所定レベル以上の優先度のデータが上記無線信号により行われる通信に含まれる場合は、上記無線信号の少なくとも送信を停止する判断を行わなくてもよい。 (18) Preferably, when the control unit receives the communication start instruction and starts transmission / reception of the wireless signal, data having a priority level equal to or higher than a predetermined level is included in communication performed by the wireless signal. The determination of stopping at least transmission of the radio signal may not be performed.
 このように、自己の無線基地局装置において優先度の高い通信が行われている場合には、通信のトラフィック量が所定のしきい値未満であっても当該無線信号の少なくとも送信を停止する判断が行われないので、高い優先度の通信の有無に応じて、活性状態の継続または休止状態への遷移についての判断を行うことができる。 In this way, when high-priority communication is performed in its own radio base station apparatus, it is determined to stop transmission of at least the radio signal even if the traffic volume of communication is less than a predetermined threshold value. Therefore, it is possible to determine whether to continue the active state or transition to the dormant state according to the presence or absence of high priority communication.
 (19)またこの発明の別の局面に係わる無線基地局装置は、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信する無線基地局装置であって、上記無線端末装置との間で無線信号を送受信する無線通信部と、他の無線基地局装置からの通信開始指示を受けると、上記無線通信部を制御することにより、上記無線信号の送信電力を段階的に上げて上記無線端末装置との通信を開始する制御部とを備える。 (19) A radio base station apparatus according to another aspect of the present invention is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus. Upon receiving a communication start instruction from another wireless base station device and a wireless communication unit that transmits / receives a wireless signal to / from the device, the transmission power of the wireless signal is gradually increased by controlling the wireless communication unit. And a control unit that starts communication with the wireless terminal device.
 このようにして無線信号の送信電力を一度に大きく上げずに段階的に上げて無線信号の送信を開始する構成により、無線端末装置が受信する無線信号の電力は、急激ではなく、緩やかに増加する。これにより、無線基地局装置は、自己が通常時の電力で電波を送信すると受信電力が過大となる、他の無線基地局装置と通信中の無線端末装置を、通信を途絶えさせることなく自己に「移動」させることができる。この結果、無線基地局装置は、無線端末装置との通信を開始する際に、たとえば他の無線基地局装置を選択し、かつ自己の近傍に位置する無線端末装置の通信が途絶えてしまうことを防ぐことができる。 In this way, the wireless signal power received by the wireless terminal device is gradually increased rather than suddenly increased by increasing the transmission power of the wireless signal step by step without increasing it at once. To do. As a result, the wireless base station device can receive the wireless terminal device that is communicating with other wireless base station devices without interrupting communication. Can be “moved”. As a result, when the radio base station apparatus starts communication with the radio terminal apparatus, for example, the radio base station apparatus selects another radio base station apparatus and the communication of the radio terminal apparatus located in the vicinity of itself is interrupted. Can be prevented.
 (20)またこの発明の別の局面に係わる無線基地局装置は、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信する無線基地局装置であって、上記無線端末装置との間で無線信号を送受信する無線通信部と、他の無線基地局装置からの通信開始指示を受けると、上記無線通信部を制御することにより、上記無線端装置との間の無線信号の送受信を開始する制御部とを備え、上記制御部は、上記通信開始指示を受けて上記無線信号の送受信を開始した状態において、上記無線信号の少なくとも送信を停止するか否かを判断し、上記無線信号の送信を停止すると判断した場合には、上記無線信号の送信を停止する旨を上記他の無線基地局装置に通知する。 (20) A radio base station apparatus according to another aspect of the present invention is a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus. When receiving a communication start instruction from another wireless base station device and a wireless communication unit that transmits / receives a wireless signal to / from the device, the wireless signal between the wireless terminal device is controlled by controlling the wireless communication unit A control unit that starts transmission / reception of the radio signal, and the control unit determines whether to stop at least transmission of the radio signal in a state in which transmission / reception of the radio signal is started in response to the communication start instruction, If it is determined that the transmission of the radio signal is to be stopped, the other radio base station apparatus is notified that the transmission of the radio signal is to be stopped.
 このように、無線基地局装置は、無線信号の送信を停止すると判断する際に、無線信号の送信を停止する旨を他の無線基地局装置に通知することにより、自己および他の無線基地局装置間での無線端末装置の「移動」動作が繰り返されることを防ぐことができる。 As described above, when the radio base station apparatus determines to stop the transmission of the radio signal, the radio base station apparatus notifies the other radio base station apparatus that the transmission of the radio signal is stopped. It is possible to prevent the “movement” operation of the wireless terminal device between the devices from being repeated.
 (21)上記課題を解決するために、この発明のある局面に係わる通信システムは、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信するカバレッジ基地局と、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信するキャパシティブースタ基地局とを備える通信システムであって、上記キャパシティブースタ基地局は、上記カバレッジ基地局からの通信開始指示を受けると、上記無線端末装置との間の無線信号の送受信を開始し、上記無線信号の送受信を開始した状態において、上記無線信号の少なくとも送信を停止するか否かを判断し、上記無線信号の送信を停止すると判断した場合には、上記無線信号の送信を停止する旨を上記カバレッジ基地局に通知し、上記カバレッジ基地局は、上記通知を受けて、上記無線端末装置との通信のトラフィック量を取得し、取得した上記トラフィック量に基づく内容の応答を上記キャパシティブースタ基地局へ送信し、上記キャパシティブースタ基地局は、上記応答を受けた後、上記無線信号の送信を停止する。 (21) In order to solve the above problems, a communication system according to an aspect of the present invention includes a coverage base station that communicates with the wireless terminal device by transmitting and receiving wireless signals to and from the wireless terminal device, and a wireless terminal A capacity booster base station that communicates with the wireless terminal device by transmitting and receiving wireless signals to and from the device, wherein the capacity booster base station is a communication start instruction from the coverage base station The wireless terminal starts transmission / reception of the wireless signal, and determines whether to stop at least transmission of the wireless signal in a state where transmission / reception of the wireless signal is started, If it is determined that the transmission of the radio signal is to be stopped, the coverage base station is notified that the transmission of the radio signal is to be stopped, and the coverage base station is notified. The station receives the notification, acquires the traffic volume of communication with the wireless terminal device, transmits a response of the content based on the acquired traffic volume to the capacity booster base station, and the capacity booster base station Stops receiving the wireless signal after receiving the response.
 このように、キャパシティブースタ基地局が無線信号の送信を停止する旨をカバレッジ基地局に周知することにより、キャパシティブースタ基地局は、カバレッジ基地局におけるトラフィック量に基づいて無線信号の停止を行うことができるため、カバレッジ基地局におけるトラフィック量に応じた適切な動作を実現できる。 In this way, the coverage booster base station notifies the coverage base station that the capacity booster base station stops transmitting radio signals, so that the capacity booster base station stops the radio signal based on the traffic amount in the coverage base station. Therefore, an appropriate operation according to the traffic amount in the coverage base station can be realized.
 (22)上記課題を解決するために、この発明のある局面に係わる通信制御方法は、無線端末装置との間で無線信号を送受信することにより上記無線端末装置と通信する無線基地局装置における通信制御方法であって、他の無線基地局装置からの通信開始指示を受けると、上記無線端末装置との間の無線信号の送受信を開始するステップと、上記無線端末装置との通信のトラフィック量を取得するステップと、取得した上記トラフィック量に基づいて、上記無線信号の少なくとも送信を停止するか否かを判断し、上記無線信号の送信を停止すると判断した場合には、上記無線信号の送信電力を段階的に下げて上記無線信号の送信を停止する停波制御を行うステップとを含む。 (22) In order to solve the above-described problem, a communication control method according to an aspect of the present invention provides communication in a radio base station apparatus that communicates with the radio terminal apparatus by transmitting and receiving radio signals to and from the radio terminal apparatus. When a communication start instruction is received from another radio base station apparatus, the control method includes a step of starting transmission / reception of a radio signal with the radio terminal apparatus, and a traffic volume of communication with the radio terminal apparatus. Based on the acquired step and the acquired traffic volume, it is determined whether or not to stop at least transmission of the radio signal. If it is determined to stop transmission of the radio signal, transmission power of the radio signal is determined. And a step of performing wave stop control for stopping the transmission of the radio signal by lowering the signal stepwise.
 このようにして無線信号の送信電力を一度に大きく下げずに段階的に下げて無線信号の送信を停止する構成により、無線端末装置が受信する無線信号の電力は、急激ではなく、緩やかに減少する。これにより、無線基地局装置は、自己および自己を選択している無線端末装置間の通信が途絶えてしまう前に、当該無線端末装置を他の無線基地局装置に「移動」させることができる。この結果、無線基地局装置は、停波制御を行う際に、自己を選択している無線端末装置の通信が途絶えてしまうことを防ぐことができる。 In this way, the wireless signal power received by the wireless terminal device is gradually reduced rather than suddenly by the configuration in which the wireless signal transmission power is stopped step by step without reducing the wireless signal transmission power at once. To do. Accordingly, the radio base station apparatus can “move” the radio terminal apparatus to another radio base station apparatus before communication between the radio terminal apparatus and the radio terminal apparatus that has selected the radio base station apparatus is interrupted. As a result, the radio base station apparatus can prevent the communication of the radio terminal apparatus that has selected itself from being interrupted when performing the stop control.
 以下、本発明の実施の形態について図面を用いて説明する。なお、図中同一または相当部分には同一符号を付してその説明は繰り返さない。 Hereinafter, embodiments of the present invention will be described with reference to the drawings. In the drawings, the same or corresponding parts are denoted by the same reference numerals and description thereof will not be repeated.
 無線基地局装置は、自らの形成するセルおよび周辺セルについての情報、すなわち無線信号の周波数および周辺セルのID(identification)等を無線端末装置に通知する。無線端末装置は、無線基地局装置から通知された情報に基づいて、周辺セルの検出および測定を行なう。無線端末装置は、この測定結果に基づいて、周辺セルへの移動を開始する。ここで、無線端末装置の「移動」とは、ハンドオーバを意味することに加えて、アイドル状態の無線端末装置が今後通信を開始する、すなわち通話またはデータ通信を開始する際にどのセルを介して通信を行なうかを選択することを意味する。また、ハンドオーバとは、待機中または通信中の無線端末装置の通信相手となる無線基地局装置が切り替えられることを意味する。 The radio base station apparatus notifies the radio terminal apparatus of information about the cell and the neighboring cell that it forms, that is, the frequency of the radio signal and the ID (identification) of the neighboring cell. The wireless terminal device detects and measures neighboring cells based on information notified from the wireless base station device. The wireless terminal device starts moving to the neighboring cell based on the measurement result. Here, “movement” of the wireless terminal device means not only handover but also through which cell the wireless terminal device in an idle state starts communication in the future, that is, when a call or data communication is started. This means selecting whether to perform communication. In addition, handover means that a radio base station apparatus that is a communication partner of a radio terminal apparatus that is on standby or in communication is switched.
 たとえば、無線端末装置が無線基地局装置と通信しているときには、無線端末装置の移動先は無線基地局装置またはコアネットワークにおける上位装置が決定する。また、無線端末装置が無線基地局装置と通信していないときには、無線端末装置の移動先は無線端末装置が決定する。 For example, when the wireless terminal device is communicating with the wireless base station device, the destination of the wireless terminal device is determined by the wireless base station device or the higher-level device in the core network. Further, when the wireless terminal device is not communicating with the wireless base station device, the wireless terminal device determines the destination of the wireless terminal device.
 [構成および基本動作]
 図1は、本発明の実施の形態に係る無線通信システムの構成を示す図である。
[Configuration and basic operation]
FIG. 1 is a diagram showing a configuration of a radio communication system according to an embodiment of the present invention.
 図1を参照して、無線通信システム301は、たとえば3GPP(Third Generation Partnership Project)で規格化されたLTE(Long Term Evolution)に従う移動体通信システムであり、カバレッジ基地局(無線基地局装置)201と、キャパシティブースタ基地局(無線基地局装置)101A,101Bと、無線端末装置202と、上位装置204とを備える。 Referring to FIG. 1, a wireless communication system 301 is a mobile communication system in accordance with LTE (Long Term Evolution) standardized by, for example, 3GPP (Third Generation Partnership Project), and includes a coverage base station (wireless base station apparatus) 201. And capacity booster base stations (radio base station apparatuses) 101A and 101B, a radio terminal apparatus 202, and a host apparatus 204.
 以下、キャパシティブースタ基地局101Aおよび101Bの各々をキャパシティブースタ基地局101と称する場合がある。また、図1では、1つのカバレッジ基地局と、2つのキャパシティブースタ基地局とを代表的に示しているが、少数またはさらに多数のカバレッジ基地局およびキャパシティブースタ基地局が設けられてもよい。 Hereinafter, each of the capacity booster base stations 101A and 101B may be referred to as a capacity booster base station 101. Further, in FIG. 1, one coverage base station and two capacity booster base stations are representatively shown, but a small number or a larger number of coverage base stations and capacity booster base stations may be provided. .
 カバレッジ基地局201は、たとえば、マクロ基地局であり、半径数キロメートルのカバレッジセルCCを形成する。カバレッジ基地局201は、カバレッジセルCC内に存在する無線端末装置202A,202B,202Cと無線信号を送受信することにより、当該無線端末装置202A,202B,202Cと通信することが可能である。以下、無線端末装置202A,202B,202Cの各々を無線端末装置202と称する場合がある。 The coverage base station 201 is, for example, a macro base station, and forms a coverage cell CC having a radius of several kilometers. The coverage base station 201 can communicate with the wireless terminal devices 202A, 202B, and 202C by transmitting and receiving wireless signals to and from the wireless terminal devices 202A, 202B, and 202C existing in the coverage cell CC. Hereinafter, each of the wireless terminal devices 202A, 202B, and 202C may be referred to as a wireless terminal device 202.
 キャパシティブースタ基地局101A,101Bは、カバレッジ基地局201の通信容量の不足を補うために、カバレッジセルCC内に設置される。また、キャパシティブースタ基地局101A,101Bは、たとえばピコ基地局であり、半径10~50メートルのキャパシティブースタセルCBCA,CBCBをそれぞれ形成する。また、キャパシティブースタ基地局101は、フェムト基地局であっても構わない。 The capacity booster base stations 101A and 101B are installed in the coverage cell CC in order to compensate for the shortage of communication capacity of the coverage base station 201. The capacity booster base stations 101A and 101B are pico base stations, for example, and form capacity booster cells CBCA and CBCB having a radius of 10 to 50 meters, respectively. Further, the capacity booster base station 101 may be a femto base station.
 キャパシティブースタ基地局101Aは、キャパシティブースタセルCBCA内に存在する無線端末装置202Aと無線信号を送受信することにより、当該無線端末装置202Aと通信することが可能である。また、キャパシティブースタ基地局101Bは、キャパシティブースタセルCBCB内に存在する無線端末装置202Bと無線信号を送受信することにより、当該無線端末装置202Bと通信することが可能である。 The capacity booster base station 101A can communicate with the wireless terminal device 202A by transmitting and receiving wireless signals to and from the wireless terminal device 202A existing in the capacity booster cell CBCA. The capacity booster base station 101B can communicate with the wireless terminal device 202B by transmitting and receiving wireless signals to and from the wireless terminal device 202B existing in the capacity booster cell CBCB.
 また、カバレッジ基地局201およびキャパシティブースタ基地局101A,101Bは、自己が形成するカバレッジセルCCおよびキャパシティブースタセルCBCA,CBCBを識別するためのセルIDを持つ。 Also, the coverage base station 201 and the capacity booster base stations 101A and 101B have cell IDs for identifying the coverage cells CC and capacity booster cells CBCA and CBCB formed by itself.
 無線端末装置202A、無線端末装置202B、および無線端末装置202Cは、同一の機能を持ち、本質的な違いはない。しかしながら、無線端末装置202が、どの基地局により形成されるセル内に存在するかに応じて、通信することが可能な基地局が異なる。 The wireless terminal device 202A, the wireless terminal device 202B, and the wireless terminal device 202C have the same function and have no essential difference. However, the base stations that can perform communication differ depending on which base station the wireless terminal apparatus 202 is in.
 図2は、本発明の実施の形態に係るキャパシティブースタ基地局の構成を示す図である。
 図2を参照して、キャパシティブースタ基地局101は、アンテナ91と、サーキュレータ92と、無線受信部(無線通信部)93と、無線送信部(無線通信部)94と、信号処理部95と、通信トラフィック監視部(トラフィック情報取得部)98と、送信電力制御部99とを備える。信号処理部95は、受信信号処理部96と、送信信号処理部97とを含む。信号処理部95、通信トラフィック監視部98、および送信電力制御部99は、CPU(Central Processing Unit)またはDSP(Digital Signal Processor)等によって実現される。
FIG. 2 is a diagram showing a configuration of a capacity booster base station according to the embodiment of the present invention.
Referring to FIG. 2, capacity booster base station 101 includes an antenna 91, a circulator 92, a wireless reception unit (wireless communication unit) 93, a wireless transmission unit (wireless communication unit) 94, and a signal processing unit 95. A communication traffic monitoring unit (traffic information acquisition unit) 98 and a transmission power control unit 99. The signal processing unit 95 includes a reception signal processing unit 96 and a transmission signal processing unit 97. The signal processing unit 95, the communication traffic monitoring unit 98, and the transmission power control unit 99 are realized by a CPU (Central Processing Unit) or a DSP (Digital Signal Processor).
 サーキュレータ92は、アンテナ91において受信された無線端末装置202からの無線信号を無線受信部93へ出力し、また、無線送信部94から受けた無線信号をアンテナ91へ出力する。 The circulator 92 outputs the radio signal from the radio terminal device 202 received by the antenna 91 to the radio reception unit 93 and outputs the radio signal received from the radio transmission unit 94 to the antenna 91.
 無線受信部93は、サーキュレータ92から受けた無線信号をベースバンド信号に変換して受信信号処理部96へ出力する。また、無線受信部93は、サーキュレータ92から受けた無線信号をIF(Intermediate Frequency)信号に周波数変換し、この周波数変換した信号をデジタル信号に変換して受信信号処理部96へ出力する。 The radio reception unit 93 converts the radio signal received from the circulator 92 into a baseband signal and outputs it to the reception signal processing unit 96. The radio reception unit 93 converts the frequency of the radio signal received from the circulator 92 into an IF (Intermediate Frequency) signal, converts the frequency-converted signal into a digital signal, and outputs the digital signal to the reception signal processing unit 96.
 受信信号処理部96は、無線受信部93から受けたデジタル信号に対してCDMA(Code Division Multiple Access)方式における逆拡散等の信号処理、またはOFDM(Orthogonal Frequency Division Multiplex)方式におけるFFT(Fast Fourier Transform)等の信号処理を行ない、この信号処理後のデジタル信号の一部または全部を所定のフレームフォーマットに変換し、コアネットワーク203経由で上位装置204へ送信する。 The received signal processing unit 96 performs signal processing such as despreading in the CDMA (Code Division Multiple Access) method on the digital signal received from the wireless receiving unit 93, or FFT (Fast Fourier Transform) in the OFDM (Orthogonal Frequency Division Multiplex) method. ) And the like, and a part or all of the digital signal after the signal processing is converted into a predetermined frame format and transmitted to the host device 204 via the core network 203.
 送信信号処理部97は、コアネットワーク203経由で上位装置204から受信した通信データを所定のフレームフォーマットに変換した通信データ、または自ら生成した通信データに対してOFDM(Orthogonal Frequency Division Multiplex)方式におけるIFFT(Inverse Fast Fourier Transform)等の信号処理、またはCDMA(Code Division Multiple Access)方式における拡散等の信号処理を行ない、この信号処理後のデジタル信号を無線送信部94へ出力する。 The transmission signal processing unit 97 performs IFFT in the OFDM (Orthogonal Frequency Division Multiplex) method on communication data obtained by converting communication data received from the host device 204 via the core network 203 into a predetermined frame format or communication data generated by itself. Signal processing such as (Inverse Fast Fourier Transform) or signal processing such as spreading in the CDMA (Code Division Multiple Access) system is performed, and the digital signal after this signal processing is output to the wireless transmission unit 94.
 無線送信部94は、送信信号処理部97から受けたベースバンド信号をアナログ信号に変換し、変換したアナログ信号を無線信号に周波数変換してサーキュレータ92へ出力する。 The wireless transmission unit 94 converts the baseband signal received from the transmission signal processing unit 97 into an analog signal, converts the frequency of the converted analog signal into a wireless signal, and outputs the signal to the circulator 92.
 図3は、本発明の実施の形態に係るキャパシティブースタ基地局における無線送信部の構成を示す図である。
 図3を参照して、無線送信部94は、アンプ11と、アンプ15と、オシレータ12と、ミキサ13とデジタルアナログコンバータ(DAC)14とを含む。
FIG. 3 is a diagram showing a configuration of a radio transmission unit in the capacity booster base station according to the embodiment of the present invention.
Referring to FIG. 3, the wireless transmission unit 94 includes an amplifier 11, an amplifier 15, an oscillator 12, a mixer 13, and a digital analog converter (DAC) 14.
 無線送信部94において、デジタルアナログコンバータ14は、送信信号処理部97から受けたベースバンド信号をアナログ信号に変換し、アンプ15へ出力する。アンプ15は、デジタルアナログコンバータ14から受けたアナログ信号を増幅し、増幅したアナログ信号をミキサ13へ出力する。ミキサ13は、オシレータ12において生成された搬送波と、デジタルアナログコンバータ14から受けたアナログ信号とを乗算することによって無線信号を発生させ、この無線信号をアンプ11に出力する。アンプ11は、ミキサ13から受けた無線信号を増幅し、増幅した無線信号をサーキュレータ92へ出力する。 In the wireless transmission unit 94, the digital / analog converter 14 converts the baseband signal received from the transmission signal processing unit 97 into an analog signal and outputs the analog signal to the amplifier 15. The amplifier 15 amplifies the analog signal received from the digital-analog converter 14 and outputs the amplified analog signal to the mixer 13. The mixer 13 multiplies the carrier wave generated in the oscillator 12 by the analog signal received from the digital-analog converter 14 to generate a radio signal and outputs the radio signal to the amplifier 11. The amplifier 11 amplifies the radio signal received from the mixer 13 and outputs the amplified radio signal to the circulator 92.
 アンプ15における増幅率は、送信電力制御部99により制御される。増幅率は、アンプ15がデジタルアナログコンバータ14から受けたアナログ信号の電力と、アンプ15がミキサ13へ出力するアナログ信号の電力の比で表される。 The amplification factor in the amplifier 15 is controlled by the transmission power control unit 99. The amplification factor is expressed as a ratio of the power of the analog signal received by the amplifier 15 from the digital-analog converter 14 and the power of the analog signal output from the amplifier 15 to the mixer 13.
 アンプ11における増幅率は、送信電力制御部99により制御される。増幅率は、アンプ11がミキサ13から受けた無線信号の電力と、アンプ11がサーキュレータ92へ出力する無線信号の電力の比で表される。 The amplification factor in the amplifier 11 is controlled by the transmission power control unit 99. The amplification factor is represented by the ratio of the power of the radio signal received by the amplifier 11 from the mixer 13 and the power of the radio signal output from the amplifier 11 to the circulator 92.
 キャパシティブースタ基地局101は、休止状態および活性状態となることが可能である。たとえば、キャパシティブースタ基地局101の休止状態においてアンプ11における増幅率は0となり、無線通信を行うための電波がキャパシティブースタ基地局101から送信されない。また、キャパシティブースタ基地局101の活性状態において、自己の形成するキャパシティブースタセル内の無線端末装置202と無線通信できる程度の電力で、電波がキャパシティブースタ基地局101から送信される。 The capacity booster base station 101 can be in a dormant state or an active state. For example, when the capacity booster base station 101 is in an inactive state, the amplification factor in the amplifier 11 is 0, and radio waves for wireless communication are not transmitted from the capacity booster base station 101. In addition, in the active state of the capacity booster base station 101, radio waves are transmitted from the capacity booster base station 101 with power sufficient to enable wireless communication with the wireless terminal device 202 in the capacity booster cell formed by itself.
 再び図2を参照して、通信トラフィック監視部98は、受信信号処理部96および送信信号処理部97において処理される無線端末装置202との間の通信データ、たとえば送受信されるIPパケットを監視する。また、通信データの内容に応じて処理方法を切り替えるために、通信データにはQoS(Quality of Service)が設定される。 Referring again to FIG. 2, communication traffic monitoring unit 98 monitors communication data with wireless terminal device 202 processed in reception signal processing unit 96 and transmission signal processing unit 97, for example, IP packets transmitted and received. . In addition, QoS (Quality of Service) is set in the communication data in order to switch the processing method according to the content of the communication data.
 具体的には、送受信されるIPパケットには、当該IPパケットの通信における優先度を9段階で示すQCI(QoS Class Identifier)が付随する。そして、通信トラフィック監視部98は、IPパケットにおけるQCIフィールドを監視することにより各優先度の単位時間当たりのトラフィック量を取得する。また、通信トラフィック監視部98は、取得した各優先度の単位時間当たりのトラフィック量を合計することにより、単位時間当たりの通信トラフィック量を算出する。通信トラフィック監視部98は、取得した各優先度の単位時間当たりのトラフィック量および単位時間当たりの通信トラフィック量を送信電力制御部99に通知する。 Specifically, an IP packet to be transmitted / received is accompanied by a QCI (QoS Class Identifier) that indicates the priority of communication of the IP packet in nine stages. And the communication traffic monitoring part 98 acquires the traffic amount per unit time of each priority by monitoring the QCI field in an IP packet. Further, the communication traffic monitoring unit 98 calculates the amount of communication traffic per unit time by summing the traffic amounts per unit time of the acquired priorities. The communication traffic monitoring unit 98 notifies the transmission power control unit 99 of the traffic amount per unit time and the communication traffic amount per unit time of each acquired priority.
 送信電力制御部99は、上位装置204、自己の周辺に配置されたカバレッジ基地局201およびキャパシティブースタ基地局101とコアネットワーク経由で通信を行い、基地局の状態、各種要求および当該要求に対する応答を送受信する。また、送信電力制御部99は、通信トラフィック監視部98から通知された各優先度の単位時間当たりのトラフィック量および単位時間当たりの通信トラフィック量と、カバレッジ基地局201または上位装置204からの要求とを基に、無線送信部94におけるアンプ11およびアンプ15の増幅率を独立に制御する。 The transmission power control unit 99 communicates with the host device 204, the coverage base station 201 and the capacity booster base station 101 arranged in the vicinity of the host device 204 via the core network, the state of the base station, various requests, and responses to the requests. Send and receive. In addition, the transmission power control unit 99 receives the traffic amount per unit time and the communication traffic amount per unit time notified from the communication traffic monitoring unit 98, the request from the coverage base station 201 or the host device 204. Based on the above, the amplification factors of the amplifier 11 and the amplifier 15 in the wireless transmission unit 94 are independently controlled.
 具体的には、送信電力制御部99は、カバレッジ基地局201または上位装置204からセル活性化要求(CellActivationRequest)を受信すると、所定の手順に従って無線送信部94におけるアンプ11またはアンプ15の少なくともどちらか一方の増幅率を上げる。 Specifically, when receiving a cell activation request (CellActivationRequest) from the coverage base station 201 or the higher-level device 204, the transmission power control unit 99 receives at least one of the amplifier 11 and the amplifier 15 in the wireless transmission unit 94 according to a predetermined procedure. Increase amplification on one side.
 また、送信電力制御部99は、単位時間当たりの通信トラフィック量が所定のしきい値を下回ると、所定に手順に従って無線送信部94におけるアンプ11またはアンプ15の少なくともどちらか一方の増幅率を下げる。 Further, when the amount of communication traffic per unit time falls below a predetermined threshold, the transmission power control unit 99 decreases the amplification factor of at least one of the amplifier 11 and the amplifier 15 in the wireless transmission unit 94 according to a predetermined procedure. .
 図4は、本発明の実施の形態に係るカバレッジ基地局の構成を示す図である。
 図4を参照して、カバレッジ基地局201は、アンテナ111と、サーキュレータ112と、無線受信部(無線通信部)113と、無線送信部(無線通信部)114と、信号処理部115と、通信トラフィック監視部118と、周辺基地局制御部119とを備える。信号処理部115は、受信信号処理部116と、送信信号処理部117とを含む。信号処理部115、通信トラフィック監視部118、および周辺基地局制御部119は、CPU(Central Processing Unit)またはDSP(Digital Signal Processor)等によって実現される。
FIG. 4 is a diagram showing a configuration of a coverage base station according to the embodiment of the present invention.
Referring to FIG. 4, coverage base station 201 includes antenna 111, circulator 112, wireless reception unit (wireless communication unit) 113, wireless transmission unit (wireless communication unit) 114, signal processing unit 115, and communication. A traffic monitoring unit 118 and a neighboring base station control unit 119 are provided. The signal processing unit 115 includes a reception signal processing unit 116 and a transmission signal processing unit 117. The signal processing unit 115, the communication traffic monitoring unit 118, and the peripheral base station control unit 119 are realized by a CPU (Central Processing Unit) or a DSP (Digital Signal Processor).
 アンテナ111、サーキュレータ112、無線受信部113、無線送信部114、および送信信号処理部117は、キャパシティブースタ基地局101におけるアンテナ91、サーキュレータ92、無線受信部93、無線送信部94、および送信信号処理部97とそれぞれ同様の機能を持つ。 The antenna 111, the circulator 112, the radio reception unit 113, the radio transmission unit 114, and the transmission signal processing unit 117 are the antenna 91, the circulator 92, the radio reception unit 93, the radio transmission unit 94, and the transmission signal in the capacity booster base station 101. Each of the processing units 97 has the same function.
 受信信号処理部116は、キャパシティブースタ基地局101における受信信号処理部96が持つ機能に加えて、以下の機能を持つ。すなわち、受信信号処理部116は、無線端末装置202からキャパシティブースタ基地局活性化要求(CapacityBoosterREQ)を受信すると、受信したキャパシティブースタ基地局活性化要求を周辺基地局制御部119へ送信する。このキャパシティブースタ基地局活性化要求は、休止状態にあるキャパシティブースタ基地局101をカバレッジ基地局201により活性状態に遷移させるという無線端末装置202の要求を少なくとも含む。 The received signal processing unit 116 has the following functions in addition to the functions of the received signal processing unit 96 in the capacity booster base station 101. That is, when the received signal processing unit 116 receives a capacity booster base station activation request (CapacityBoosterREQ) from the wireless terminal device 202, the received signal processing unit 116 transmits the received capacity booster base station activation request to the neighboring base station control unit 119. The capacity booster base station activation request includes at least a request from the wireless terminal device 202 to cause the coverage base station 201 to transition the capacity booster base station 101 in the dormant state to the active state.
 通信トラフィック監視部118は、受信信号処理部116および送信信号処理部117において処理される無線端末装置202との通信のトラフィック量、たとえば単位時間当たりのIPパケットのデータ量を監視し、監視した通信トラフィック量を周辺基地局制御部119に通知する。 The communication traffic monitoring unit 118 monitors the traffic amount of communication with the wireless terminal device 202 processed in the reception signal processing unit 116 and the transmission signal processing unit 117, for example, the data amount of IP packets per unit time, and monitors the monitored communication. The traffic amount is notified to the neighboring base station control unit 119.
 周辺基地局制御部119は、上位装置204および自己の周辺に配置されたキャパシティブースタ基地局101とコアネットワーク経由で通信を行い、基地局の状態、各種要求および当該要求に対する応答を送受信する。また、周辺基地局制御部119は、キャパシティブースタ基地局101A,101Bを活性化するかどうかを判断する。 The peripheral base station control unit 119 communicates with the host device 204 and the capacity booster base station 101 arranged in the vicinity of the host device 204 via the core network, and transmits and receives the status of the base station, various requests, and responses to the requests. Also, the peripheral base station control unit 119 determines whether to activate the capacity booster base stations 101A and 101B.
 たとえば、周辺基地局制御部119は、受信信号処理部116からキャパシティブースタ基地局活性化要求を受信した場合、または通信トラフィック監視部118から通知された単位時間当たりの通信トラフィック量が所定のしきい値を上回った場合に、キャパシティブースタ基地局101A,101Bの活性化を決定する。そして、周辺基地局制御部119は、キャパシティブースタ基地局101A,101Bの活性化を決定すると、セル活性化要求をキャパシティブースタ基地局101A,101Bへ送信する。 For example, when the neighboring base station control unit 119 receives a capacity booster base station activation request from the received signal processing unit 116, or the communication traffic amount per unit time notified from the communication traffic monitoring unit 118 is predetermined. When the threshold value is exceeded, the activation of the capacity booster base stations 101A and 101B is determined. Then, when the neighboring base station control unit 119 determines to activate the capacity booster base stations 101A and 101B, it transmits a cell activation request to the capacity booster base stations 101A and 101B.
 図5は、本発明の実施の形態に係る無線端末装置の構成を示す図である。
 図5を参照して、無線端末装置202は、アンテナ121と、サーキュレータ122と、無線受信部(無線通信部)123と、無線送信部(無線通信部)124と、信号処理部125と、無線端末制御部128と、入出力部129とを備える。信号処理部125は、受信信号処理部126と、送信信号処理部127とを含む。信号処理部125、無線端末制御部128、および入出力部129は、CPU(Central Processing Unit)またはDSP(Digital Signal Processor)等によって実現される。
FIG. 5 is a diagram showing the configuration of the wireless terminal apparatus according to the embodiment of the present invention.
Referring to FIG. 5, a wireless terminal device 202 includes an antenna 121, a circulator 122, a wireless reception unit (wireless communication unit) 123, a wireless transmission unit (wireless communication unit) 124, a signal processing unit 125, A terminal control unit 128 and an input / output unit 129 are provided. The signal processing unit 125 includes a reception signal processing unit 126 and a transmission signal processing unit 127. The signal processing unit 125, the wireless terminal control unit 128, and the input / output unit 129 are realized by a CPU (Central Processing Unit), a DSP (Digital Signal Processor), or the like.
 サーキュレータ122は、アンテナ121において受信されたカバレッジ基地局201またはキャパシティブースタ基地局101からの無線信号を無線受信部123へ出力し、また、無線送信部124から受けた無線信号をアンテナ121へ出力する。 Circulator 122 outputs the radio signal received from antenna 121 from coverage base station 201 or capacity booster base station 101 to radio receiving section 123, and outputs the radio signal received from radio transmitting section 124 to antenna 121. To do.
 無線受信部123は、サーキュレータ122から受けた無線信号をベースバンド信号に変換して受信信号処理部126へ出力する。また、無線受信部123は、サーキュレータ122から受けた無線信号をIF(Intermediate Frequency)信号に周波数変換し、この周波数変換した信号をベースバンド信号に変換して受信信号処理部126へ出力する。 The radio reception unit 123 converts the radio signal received from the circulator 122 into a baseband signal and outputs the baseband signal to the reception signal processing unit 126. The radio reception unit 123 converts the radio signal received from the circulator 122 into an IF (Intermediate Frequency) signal, converts the frequency-converted signal into a baseband signal, and outputs the baseband signal to the reception signal processing unit 126.
 受信信号処理部126は、無線受信部123から受けたデジタル信号に対してOFDM(Orthogonal Frequency Division Multiplex)方式におけるFFT(Fast Fourier Transform)等の信号処理、またはCDMA(Code Division Multiple Access)方式における逆拡散等の信号処理を行ない、この信号処理後のデジタル信号の一部または全部を所定のフレームフォーマットに変換し、無線端末制御部128へ送信する。 The reception signal processing unit 126 performs signal processing such as FFT (Fast Fourier Transform) in the OFDM (Orthogonal Frequency Division Multiplex) method on the digital signal received from the wireless reception unit 123, or reverse in the CDMA (Code Division Multiple Access) method. Signal processing such as spreading is performed, and a part or all of the digital signal after the signal processing is converted into a predetermined frame format and transmitted to the wireless terminal control unit 128.
 送信信号処理部127は、無線端末制御部128から受信した通信データを所定のフレームフォーマットに変換した通信データ、または自ら生成した通信データに対してCDMA(Code Division Multiple Access)方式における拡散処理等の信号処理、またはOFDM(Orthogonal Frequency Division Multiplex)方式におけるIFFT(Inverse Fast Fourier Transform)等の信号処理を行ない、この信号処理後のデジタル信号を無線送信部124へ出力する。 The transmission signal processing unit 127 performs, for example, spreading processing in the CDMA (Code Division Multiple Access) method on communication data obtained by converting communication data received from the wireless terminal control unit 128 into a predetermined frame format or communication data generated by itself. Signal processing such as IFFT (Inverse Fast Fourier Transform) in the OFDM (Orthogonal Frequency Division Multiplex) system is performed, and the digital signal after this signal processing is output to the wireless transmission unit 124.
 無線送信部124は、送信信号処理部127から受けたベースバンド信号をアナログ信号に変換し、変換したアナログ信号を無線信号に周波数変換してサーキュレータ122へ出力する。 The wireless transmission unit 124 converts the baseband signal received from the transmission signal processing unit 127 into an analog signal, converts the frequency of the converted analog signal into a wireless signal, and outputs it to the circulator 122.
 無線端末制御部128は、受信信号処理部126から受信したフレームフォーマットに格納されたデジタル信号を、たとえば音声データおよび映像データに変換し、必要であるならアナログ信号に変換したのち、スピーカ、マイク、ディスプレイおよびキー入力装置により構成される入出力部129へ送信する。 The wireless terminal control unit 128 converts the digital signal stored in the frame format received from the reception signal processing unit 126 into, for example, audio data and video data, and converts it into an analog signal if necessary, and then a speaker, a microphone, The data is transmitted to an input / output unit 129 configured by a display and a key input device.
 また、無線端末制御部128は、たとえば音声データおよびキー入力装置において受け付けた無線端末装置202を制御するための制御信号等を入出力部129から受信する。そして、無線端末制御部128は、必要に応じて受信した音声データおよび制御信号の一部を処理し、処理した音声データおよび制御信号を他の無線端末装置202へ送信するために所定のフレームフォーマット、たとえばIPパケットに変換する。この際、無線端末制御部128は、送信する音声データおよび制御信号の優先度に応じて当該IPパケットにおけるQCIを設定する。 Further, the wireless terminal control unit 128 receives from the input / output unit 129, for example, voice data and a control signal for controlling the wireless terminal device 202 received in the key input device. Then, the wireless terminal control unit 128 processes a part of the received voice data and control signal as required, and transmits a predetermined frame format for transmitting the processed voice data and control signal to another wireless terminal device 202. For example, it is converted into an IP packet. At this time, the wireless terminal control unit 128 sets the QCI in the IP packet according to the voice data to be transmitted and the priority of the control signal.
 また、無線端末制御部128は、後述する所定条件が満たされた場合、キャパシティブースタ基地局活性化要求を無線信号経由でカバレッジ基地局201へ送信する。 In addition, when a predetermined condition described later is satisfied, the wireless terminal control unit 128 transmits a capacity booster base station activation request to the coverage base station 201 via a wireless signal.
 図6は、本発明の実施の形態に係る無線通信システムにおけるハンドオーバ動作のシーケンスの一例を示す図である。図6は、カバレッジ基地局201と通信している無線端末装置202Cが、キャパシティブースタセルCBCB内に移動することにより、選択先をキャパシティブースタ基地局101Bに変更する動作を詳細に示すシーケンス図である。 FIG. 6 is a diagram showing an exemplary sequence of a handover operation in the radio communication system according to the embodiment of the present invention. FIG. 6 is a sequence diagram showing in detail an operation of changing the selection destination to the capacity booster base station 101B when the wireless terminal device 202C communicating with the coverage base station 201 moves into the capacity booster cell CBCB. It is.
 図6を参照して、まず、無線端末装置202Cは、カバレッジ基地局201と通信中である。すなわち、無線端末装置202Cは、カバレッジ基地局201を通信先として選択し、かつカバレッジ基地局201と通信を行っている状態である(ステップS2)。 Referring to FIG. 6, first, the wireless terminal device 202C is communicating with the coverage base station 201. That is, 202 C of radio | wireless terminal apparatuses are the states which have selected the coverage base station 201 as a communication destination, and are communicating with the coverage base station 201 (step S2).
 そして、たとえば、無線端末装置202Cが、キャパシティブースタセルCBCB内に移動する(ステップS4)。 Then, for example, the wireless terminal device 202C moves into the capacity booster cell CBCB (step S4).
 次に、カバレッジ基地局201は、自己と通信中の無線端末装置202Cの測定対象となる周波数と、当該周波数の無線信号を送信する他の無線基地局装置とを設定する(ステップS6)。 Next, the coverage base station 201 sets a frequency to be measured by the wireless terminal device 202C in communication with itself and another wireless base station device that transmits a wireless signal of the frequency (step S6).
 次に、カバレッジ基地局201は、設定した他の無線基地局装置から送信される無線信号の受信電力を無線端末装置202Cに測定させるための測定開始要求を無線端末装置202Cへ送信する。この測定開始要求には、測定対象となる無線基地局装置101,201の情報すなわちセルIDが含まれる。また、この測定開始要求には、各無線基地局装置101,201の送信周波数が含まれる(ステップS8)。 Next, the coverage base station 201 transmits a measurement start request for causing the wireless terminal device 202C to measure the reception power of the wireless signal transmitted from the other wireless base station device that has been set, to the wireless terminal device 202C. This measurement start request includes information of the radio base station apparatuses 101 and 201 to be measured, that is, the cell ID. Further, the measurement start request includes the transmission frequency of each of the radio base station apparatuses 101 and 201 (step S8).
 次に、無線端末装置202Cは、カバレッジ基地局201から測定開始要求を受信して、受信した測定開始要求の示す無線基地局装置から送信される無線信号の受信電力を測定する(ステップS10)。 Next, the wireless terminal device 202C receives the measurement start request from the coverage base station 201, and measures the received power of the wireless signal transmitted from the wireless base station device indicated by the received measurement start request (step S10).
 次に、無線端末装置202Cは、この受信電力の測定結果を示す測定結果通知をカバレッジ基地局201へ送信する(ステップS12)。 Next, the wireless terminal device 202C transmits a measurement result notification indicating the measurement result of the received power to the coverage base station 201 (step S12).
 次に、カバレッジ基地局201は、無線端末装置202から受信した測定結果通知に基づいて、セルIDごとの測定結果を示す測定情報を取得する。(ステップS14)。 Next, the coverage base station 201 acquires measurement information indicating a measurement result for each cell ID based on the measurement result notification received from the wireless terminal device 202. (Step S14).
 次に、カバレッジ基地局201は、取得した測定情報に基づいて、当該無線端末装置202C用の周辺セル情報を生成し、図示しない記憶部に保存する(ステップS16)。 Next, the coverage base station 201 generates neighboring cell information for the wireless terminal device 202C based on the acquired measurement information, and stores it in a storage unit (not shown) (step S16).
 次に、カバレッジ基地局201は、無線端末装置202Cから受信した測定結果通知に基づいて、当該無線端末装置202Cがハンドオーバすべきか否かを判断し、ハンドオーバすべきであると判断すると、対応の周辺セル情報を参照してたとえばキャパシティブースタ基地局101Bをハンドオーバ先として決定し、キャパシティブースタ基地局101Bを示すハンドオーバ要求を上位装置204へ送信する(ステップS18)。 Next, the coverage base station 201 determines whether or not the wireless terminal device 202C should be handed over based on the measurement result notification received from the wireless terminal device 202C. For example, the capacity booster base station 101B is determined as a handover destination with reference to the cell information, and a handover request indicating the capacity booster base station 101B is transmitted to the host apparatus 204 (step S18).
 次に、上位装置204は、カバレッジ基地局201からハンドオーバ要求を受信して、キャパシティブースタ基地局101Bへ当該ハンドオーバ要求を送信する(ステップS20)。 Next, the host device 204 receives the handover request from the coverage base station 201 and transmits the handover request to the capacity booster base station 101B (step S20).
 次に、キャパシティブースタ基地局101Bは、上位装置204からハンドオーバ要求を受信して、上位装置204へ当該ハンドオーバ要求に対するハンドオーバ応答を送信する(ステップS22)。 Next, the capacity booster base station 101B receives the handover request from the upper apparatus 204 and transmits a handover response to the handover request to the upper apparatus 204 (step S22).
 次に、上位装置204は、キャパシティブースタ基地局101Bからハンドオーバ応答を受信して、カバレッジ基地局201へハンドオーバ指示を送信する(ステップS24)。 Next, the host device 204 receives a handover response from the capacity booster base station 101B, and transmits a handover instruction to the coverage base station 201 (step S24).
 次に、カバレッジ基地局201は、上位装置204からハンドオーバ指示を受信して、無線端末装置202CへRRC(Radio Resource Control)コネクション再確立指示を送信する(ステップS26)。 Next, the coverage base station 201 receives a handover instruction from the host apparatus 204 and transmits an RRC (Radio Resource Control) connection re-establishment instruction to the wireless terminal apparatus 202C (step S26).
 次に、カバレッジ基地局201は、上位装置204へ自己の通信状態等を示す状態通知を送信する(ステップS28)。 Next, the coverage base station 201 transmits a status notification indicating its own communication status and the like to the higher-level device 204 (step S28).
 次に、上位装置204は、カバレッジ基地局201から状態通知を受信して、キャパシティブースタ基地局101Bへ無線端末装置202Cとの通信内容等を示す状態通知を送信する(ステップS30)。 Next, the host device 204 receives the status notification from the coverage base station 201, and transmits the status notification indicating the communication content and the like with the wireless terminal device 202C to the capacity booster base station 101B (step S30).
 また、無線端末装置202Cとキャパシティブースタ基地局101Bとの間でRRCコネクションが確立されると、無線端末装置202Cは、キャパシティブースタ基地局101BへRRCコネクション確立通知を送信する(ステップS32)。 Further, when the RRC connection is established between the wireless terminal device 202C and the capacity booster base station 101B, the wireless terminal device 202C transmits an RRC connection establishment notification to the capacity booster base station 101B (step S32).
 次に、キャパシティブースタ基地局101Bは、無線端末装置202CからRRCコネクション確立通知を受信して、上位装置204へハンドオーバ完了通知を送信する(ステップS34)。 Next, the capacity booster base station 101B receives the RRC connection establishment notification from the wireless terminal device 202C and transmits a handover completion notification to the higher-level device 204 (step S34).
 次に、上位装置204は、キャパシティブースタ基地局101Bからハンドオーバ完了通知を受信して、端末情報解放指示をカバレッジ基地局201へ送信する(ステップS36)。 Next, the host device 204 receives the handover completion notification from the capacity booster base station 101B, and transmits a terminal information release instruction to the coverage base station 201 (step S36).
 次に、カバレッジ基地局201は、上位装置204から端末情報解放指示を受信して、無線端末装置202Cに関する情報を解放し、上位装置204へ端末情報解放完了通知を送信する(ステップS38)。 Next, the coverage base station 201 receives a terminal information release instruction from the higher-level device 204, releases information related to the wireless terminal device 202C, and transmits a terminal information release completion notification to the higher-level device 204 (step S38).
 以上のような動作により、無線端末装置202Cは、キャパシティブースタ基地局101Bを通信先として選択し、かつキャパシティブースタ基地局101Bと通信を行っている状態となる(ステップS40)。 Through the above operation, the wireless terminal device 202C selects the capacity booster base station 101B as a communication destination and is in communication with the capacity booster base station 101B (step S40).
 また、図6では、無線端末装置202Cが通信先をカバレッジ基地局201からキャパシティブースタ基地局101Bへと切り替える場合を例示したが、通信先となる無線基地局装置を入れ替えても同様にハンドオーバ動作が達成される。すなわち、キャパシティブースタ基地局101Bと通信を行っている無線端末装置202Cが、通信先をカバレッジ基地局に切り替える場合も同様の手順により達成される。 6 illustrates the case where the wireless terminal device 202C switches the communication destination from the coverage base station 201 to the capacity booster base station 101B. However, the handover operation is similarly performed even if the wireless base station device serving as the communication destination is replaced. Is achieved. That is, the same procedure is achieved when the wireless terminal device 202C communicating with the capacity booster base station 101B switches the communication destination to the coverage base station.
 ここで、無線基地局装置から電波を送信するために消費される電力を節減することは、無線通信事業における事業運営費(OPEX)の削減に対して有効である。また、無線基地局装置における消費電力の節減は、二酸化炭素排出量の削減に対しても寄与する。 Here, reducing the power consumed to transmit radio waves from the radio base station apparatus is effective for reducing the business operation cost (OPEX) in the radio communication business. In addition, the reduction in power consumption in the radio base station apparatus also contributes to the reduction of carbon dioxide emissions.
 図7は、電力効率の改善を図る際の無線通信システムの構成を示す図である。図7において、キャパシティブースタ基地局101Aおよび101Bは休止状態であるので、キャパシティブースタセルCBCA,CBCBは形成されない。従って、無線端末装置202A、202Bおよび202Cは、すべてカバレッジセルCCに在圏する。 FIG. 7 is a diagram illustrating a configuration of a wireless communication system when power efficiency is improved. In FIG. 7, capacity booster base stations 101A and 101B are in a dormant state, so capacity booster cells CBCA and CBCB are not formed. Accordingly, all of the wireless terminal devices 202A, 202B, and 202C are located in the coverage cell CC.
 カバレッジ基地局201は、自己と無線端末装置202A、202Bおよび202Cとの間の通信トラフィック量が増大した場合、通信トラフィック量を軽減するためにキャパシティブースタ基地局101Aおよび101Bに対して活性状態に遷移することを要求する。 When the amount of communication traffic between itself and the wireless terminal devices 202A, 202B, and 202C increases, the coverage base station 201 becomes active with respect to the capacity booster base stations 101A and 101B in order to reduce the amount of communication traffic. Request to transition.
 図8は、キャパシティブースタ基地局101Aおよび101Bが、カバレッジ基地局201からの活性状態への遷移要求に従って、活性状態に遷移した状態を示す図である。 FIG. 8 is a diagram illustrating a state in which the capacity booster base stations 101A and 101B transition to the active state in accordance with the transition request to the active state from the coverage base station 201.
 図8を参照して、カバレッジセルに在圏していた無線端末装置202A、202Bおよび202Cのうち、キャパシティブースタ基地局101Aおよび101B付近にそれぞれ存在している無線端末装置202Aおよび202Bは、キャパシティブースタセルCBCAおよびCBCBにそれぞれ在圏することになる。ここでは、キャパシティブースタセルCBCAには、多くの無線端末装置202Aが在圏し、キャパシティブースタセルCBCBには、少数の無線端末装置202Bが在圏することになる。 Referring to FIG. 8, among radio terminal apparatuses 202A, 202B, and 202C that have been located in the coverage cell, radio terminal apparatuses 202A and 202B that exist near capacity booster base stations 101A and 101B, respectively, City booster cells CBCA and CBCB will be located respectively. Here, many radio terminal apparatuses 202A are located in the capacity booster cell CBCA, and a small number of radio terminal apparatuses 202B are located in the capacity booster cell CBCB.
 この場合、キャパシティブースタ基地局101Bは、カバレッジ基地局201における通信トラフィック量の軽減効果を十分に発揮できない一方で、活性状態であることから、電波の送信等のための電力を消費する。このため、キャパシティブースタ基地局101Bは、無線通信システムにおける電力効率を改善するために、休止状態に遷移する。 In this case, the capacity booster base station 101B cannot fully exhibit the effect of reducing the amount of communication traffic in the coverage base station 201, but consumes power for transmitting radio waves and the like because it is in an active state. For this reason, capacity booster base station 101B changes to a dormant state in order to improve the power efficiency in a radio | wireless communications system.
 図9は、キャパシティブースタ基地局101Bが休止状態に遷移した際の、無線通信システムの状態を示す図である。図9を参照して、キャパシティブースタ基地局101Bが、休止状態に遷移すると、キャパシティブースタセルCBCBに在圏していた無線端末装置202Bは、カバレッジセルCCに在圏することになる。 FIG. 9 is a diagram illustrating a state of the wireless communication system when the capacity booster base station 101B transitions to a dormant state. Referring to FIG. 9, when capacity booster base station 101B transitions to a dormant state, radio terminal apparatus 202B that has been in capacity booster cell CBCB will be in coverage cell CC.
 図10は、本発明の実施の形態に係る無線通信システムにおける電力効率の改善動作のシーケンスの一例を示す図である。図10は、図7~図9において説明した、カバレッジ基地局201の要求によりキャパシティブースタ基地局101A,101Bが活性状態に遷移する際の、電力効率の改善動作を詳細に示すシーケンス図である。 FIG. 10 is a diagram showing an example of a sequence of power efficiency improvement operation in the wireless communication system according to the embodiment of the present invention. FIG. 10 is a sequence diagram illustrating in detail the operation of improving the power efficiency when the capacity booster base stations 101A and 101B transition to the active state in response to a request from the coverage base station 201 described in FIGS. .
 図10を参照して、キャパシティブースタ基地局101A,101Bは、休止状態である(ステップS42,S44)。このため、無線端末装置202A,202B,202Cは、カバレッジ基地局201を通信先として選択し、かつカバレッジ基地局201と通信を行っている状態である(ステップS46,S48,S50)。 Referring to FIG. 10, capacity booster base stations 101A and 101B are in a dormant state (steps S42 and S44). Therefore, the wireless terminal devices 202A, 202B, and 202C are in a state where the coverage base station 201 is selected as a communication destination and the communication with the coverage base station 201 is performed (steps S46, S48, and S50).
 カバレッジ基地局201は、自己および各無線端末装置202間の通信トラフィック量を監視する(ステップS52)。この通信トラフィック量の監視は、各基地局において一定時間ごとに行われる。たとえば、カバレッジ基地局201は、自己および各無線端末装置202間の通信トラフィック量が多くなり、通信トラフィック量が所定のしきい値を超えると、キャパシティブースタ基地局101A,101Bの活性化を決定する(ステップS54)。すなわち、カバレッジ基地局201は、キャパシティブースタ基地局を稼働させることにより、自己の通信負荷を軽減するために、通信トラフィックの分散を図る。 The coverage base station 201 monitors the amount of communication traffic between itself and each wireless terminal device 202 (step S52). The communication traffic volume is monitored at regular intervals in each base station. For example, coverage base station 201 determines the activation of capacity booster base stations 101A and 101B when the amount of communication traffic between itself and each wireless terminal device 202 increases and the amount of communication traffic exceeds a predetermined threshold. (Step S54). That is, the coverage base station 201 operates the capacity booster base station to distribute communication traffic in order to reduce its own communication load.
 次に、カバレッジ基地局201は、キャパシティブースタ基地局101Aに対して、X2インタフェース経由でセル活性化要求を通知する(ステップS56)。また、カバレッジ基地局201は、キャパシティブースタ基地局101Bに対して、X2インタフェース経由でセル活性化要求を通知する(ステップS58)。 Next, the coverage base station 201 notifies the capacity booster base station 101A of a cell activation request via the X2 interface (step S56). The coverage base station 201 notifies the capacity booster base station 101B of a cell activation request via the X2 interface (step S58).
 次に、キャパシティブースタ基地局101Aは、カバレッジ基地局201からX2インタフェース経由でセル活性化要求の通知を受信して、通知を受信した旨の確認のためにカバレッジ基地局201に対して、X2インタフェース経由でセル活性化応答(CellActivationResponse)を通知する(ステップS60)。また、キャパシティブースタ基地局101Bは、カバレッジ基地局201からX2インタフェース経由でセル活性化要求の通知を受信して、通知を受信した旨の確認のためにカバレッジ基地局201に対して、X2インタフェース経由でセル活性化応答を通知する(ステップS62)。 Next, the capacity booster base station 101A receives the notification of the cell activation request from the coverage base station 201 via the X2 interface, and confirms that the notification has been received with respect to the coverage base station 201 using the X2 A cell activation response (CellActivationResponse) is notified via the interface (step S60). Further, the capacity booster base station 101B receives the notification of the cell activation request from the coverage base station 201 via the X2 interface, and confirms that the notification has been received with respect to the coverage base station 201. A cell activation response is notified via (step S62).
 次に、キャパシティブースタ基地局101Aは、送信電波の電力を増大させ、活性状態に遷移する(ステップS64)。また、キャパシティブースタ基地局101Bは、送信電波の電力を増大させ、活性状態に遷移する(ステップS66)。 Next, the capacity booster base station 101A increases the power of the transmission radio wave and transitions to the active state (step S64). Further, the capacity booster base station 101B increases the power of the transmission radio wave and transitions to the active state (step S66).
 無線端末装置202Aは、カバレッジ基地局201およびキャパシティブースタ基地局101Aから送信される無線信号の受信電力を測定する。また、無線端末装置202Bは、カバレッジ基地局201およびキャパシティブースタ基地局101Bから送信される無線信号の受信電力を測定する。無線端末装置202Aおよび無線端末装置202Bは、この受信電力の測定結果を示す測定結果通知をカバレッジ基地局201へ送信する。カバレッジ基地局201は、受信した測定結果通知に基づいて、ハンドオーバ動作を実行する(ステップS68)。ハンドオーバ動作の手順は、図6に示すステップS6からステップS38の手順に従う。 The wireless terminal device 202A measures the received power of the wireless signal transmitted from the coverage base station 201 and the capacity booster base station 101A. In addition, the wireless terminal device 202B measures the received power of the wireless signal transmitted from the coverage base station 201 and the capacity booster base station 101B. The wireless terminal device 202A and the wireless terminal device 202B transmit a measurement result notification indicating the measurement result of the received power to the coverage base station 201. The coverage base station 201 performs a handover operation based on the received measurement result notification (step S68). The procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
 次に、無線端末装置202Aは、上記ハンドオーバ動作によりキャパシティブースタ基地局101Aを通信先として選択し、かつキャパシティブースタ基地局101Aと通信を行っている状態となる(ステップS70)。 Next, the wireless terminal device 202A selects the capacity booster base station 101A as a communication destination by the handover operation and is in communication with the capacity booster base station 101A (step S70).
 また、無線端末装置202Bは、上記ハンドオーバ動作によりキャパシティブースタ基地局101Bを通信先として選択し、かつキャパシティブースタ基地局101Bと通信を行っている状態となる(ステップS72)。 In addition, the wireless terminal device 202B selects the capacity booster base station 101B as a communication destination by the handover operation and is in communication with the capacity booster base station 101B (step S72).
 また、無線端末装置202Cは、上記ハンドオーバ動作後も引き続きカバレッジ基地局201を通信先として選択し、かつカバレッジ基地局201と通信を行っている状態である(ステップS74)。 Further, the wireless terminal device 202C is in a state where it continues to select the coverage base station 201 as a communication destination and communicate with the coverage base station 201 after the handover operation (step S74).
 次に、カバレッジ基地局201、キャパシティブースタ基地局101A、およびキャパシティブースタ基地局101Bは、自己および各無線端末装置202間の通信トラフィック量を監視する(ステップS76)。 Next, the coverage base station 201, the capacity booster base station 101A, and the capacity booster base station 101B monitor the amount of communication traffic between itself and each wireless terminal device 202 (step S76).
 たとえば、キャパシティブースタ基地局101Bにおける通信トラフィック量が少なく、通信トラフィック量が所定のしきい値を下回ると、キャパシティブースタ基地局101Bは、自己の休止状態への遷移を決定する(ステップS78)。 For example, when the amount of communication traffic in the capacity booster base station 101B is small and the amount of communication traffic falls below a predetermined threshold, the capacity booster base station 101B determines its transition to a dormant state (step S78). .
 次に、キャパシティブースタ基地局101Bは、無線信号の送信電力を下げる。(ステップS80)。 Next, the capacity booster base station 101B reduces the transmission power of the radio signal. (Step S80).
 次に、無線端末装置202Bは、カバレッジ基地局201およびキャパシティブースタ基地局101Bから送信される無線信号の受信電力を測定する。無線端末装置202Bは、この受信電力の測定結果を示す測定結果通知をキャパシティブースタ基地局101Bへ送信する。キャパシティブースタ基地局101Bは、受信した測定結果通知に基づいて、ハンドオーバ動作を実行する(ステップS82)。ハンドオーバ動作の手順は、図6に示すステップS6からステップS38の手順に従う。 Next, the wireless terminal device 202B measures the received power of the wireless signal transmitted from the coverage base station 201 and the capacity booster base station 101B. The wireless terminal device 202B transmits a measurement result notification indicating the measurement result of the received power to the capacity booster base station 101B. The capacity booster base station 101B performs a handover operation based on the received measurement result notification (step S82). The procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
 次に、無線端末装置202Bは、上記ハンドオーバ動作によりカバレッジ基地局201を通信先として選択し、かつカバレッジ基地局201と通信を行っている状態となる(ステップS84)。 Next, the wireless terminal apparatus 202B selects the coverage base station 201 as a communication destination by the handover operation and is in a state of communicating with the coverage base station 201 (step S84).
 また、キャパシティブースタ基地局101Bは、自己と通信していた無線端末装置202Bがハンドオーバ動作によりカバレッジ基地局201と通信するようになったことを確認すると、自己が休止状態に遷移することを周辺基地局に対して周知するために、以下の動作を行う。すなわち、キャパシティブースタ基地局101Bは、カバレッジ基地局201およびキャパシティブースタ基地局101Aに対して、X2インタフェース経由で配置情報更新要求(ENB Configuration Update Request)を通知する(ステップS86,S88)。 In addition, the capacity booster base station 101B confirms that the wireless terminal device 202B communicating with itself has communicated with the coverage base station 201 by the handover operation, so that the capacity booster base station 101B In order to make known to the base station, the following operation is performed. That is, the capacity booster base station 101B notifies the coverage base station 201 and the capacity booster base station 101A of an arrangement information update request (ENB Configuration Update Request) via the X2 interface (steps S86 and S88).
 次に、キャパシティブースタ基地局101Aは、キャパシティブースタ基地局101Bから配置情報更新要求をX2インタフェース経由で受信すると、自己の周辺セル情報を更新し、更新した旨を示す配置情報更新応答(ENB Configuration Update Response)をキャパシティブースタ基地局101Bに対してX2インタフェース経由で通知する(ステップS90)。 Next, when the capacity booster base station 101A receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the capacity booster base station 101A updates its neighbor cell information, and an arrangement information update response (ENB) indicating that it has been updated. Configuration Update Response) is notified to the capacity booster base station 101B via the X2 interface (step S90).
 また、カバレッジ基地局201は、キャパシティブースタ基地局101Bから配置情報更新要求をX2インタフェース経由で受信すると、自己の周辺セル情報を更新し、更新した旨を示す配置情報更新応答をキャパシティブースタ基地局101Bに対してX2インタフェース経由で通知する(ステップS92)。 When the coverage base station 201 receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the coverage base station 201 updates its neighbor cell information and sends an arrangement information update response indicating that it has been updated to the capacity booster base The station 101B is notified via the X2 interface (step S92).
 次に、キャパシティブースタ基地局101Bは、配置情報更新応答をX2インタフェース経由で受信すると、たとえば無線送信部94におけるアンプ11の増幅率を0にすることにより休止状態に遷移する(ステップS94)。キャパシティブースタ基地局101Bは、休止状態に遷移することにより、送信電波の電力を節減することができるので、無線通信システム301における電力効率は改善する。 Next, when the capacity booster base station 101B receives the arrangement information update response via the X2 interface, the capacity booster base station 101B transitions to a dormant state by setting the amplification factor of the amplifier 11 in the wireless transmission unit 94 to 0, for example (step S94). The capacity booster base station 101B can reduce the power of the transmission radio wave by transitioning to the dormant state, so that the power efficiency in the wireless communication system 301 is improved.
 以上のような動作により、通信トラフィック量の少ないキャパシティブースタ基地局を休止状態に遷移させることによって、当該キャパシティブースタ基地局が消費する電力を節減することができる。 By the above operation, the capacity booster base station with a small amount of communication traffic is shifted to the dormant state, so that the power consumed by the capacity booster base station can be reduced.
 しかしながら、キャパシティブースタ基地局101Bが図10のステップS80において無線信号の送信電力を下げる際に、以下の問題を生ずる可能性がある。すなわち、キャパシティブースタ基地局101Bが、送信電波の電力を急激に下げると、確立していた自己と無線端末装置202Bとの間の通信が途絶えてしまう。そして、キャパシティブースタ基地局101Bを選択していた無線端末装置202Bは、通信が途絶えることにより他の無線基地局装置へ移動することができない。そこで、以下のような動作により上記問題を解決する。 However, when the capacity booster base station 101B reduces the transmission power of the radio signal in step S80 of FIG. 10, the following problem may occur. That is, when the capacity booster base station 101B sharply decreases the power of the transmission radio wave, communication between the established self and the wireless terminal device 202B is interrupted. And the radio | wireless terminal apparatus 202B which has selected the capacity booster base station 101B cannot move to another radio base station apparatus because communication stops. Therefore, the above problem is solved by the following operation.
[送信電力の制御の例1]
 図11は、本発明の実施の形態に係る無線通信システムにおけるキャパシティブースタ基地局が休止状態へ遷移する際のシーケンスの一例を示す図である。
[Example 1 of transmission power control]
FIG. 11 is a diagram illustrating an example of a sequence when the capacity booster base station transitions to a dormant state in the wireless communication system according to the embodiment of the present invention.
 図11を参照して、まず、無線端末装置202Bは、キャパシティブースタ基地局101Bを通信先として選択し、かつキャパシティブースタ基地局101Bと通信を行っている状態である(ステップS112)。 Referring to FIG. 11, first, wireless terminal apparatus 202B is in a state where capacity booster base station 101B is selected as a communication destination and communication is performed with capacity booster base station 101B (step S112).
 次に、キャパシティブースタ基地局101Aおよびキャパシティブースタ基地局101Bは、自己および各無線端末装置202間の通信トラフィック量を監視する(ステップS114)。たとえば、キャパシティブースタ基地局101Bは、自己および無線端末装置202B間の通信トラフィック量が少なくなり、通信トラフィック量が所定のしきい値を下回ると、自己の休止状態への遷移を決定する(ステップS116)。 Next, the capacity booster base station 101A and the capacity booster base station 101B monitor the amount of communication traffic between itself and each wireless terminal device 202 (step S114). For example, the capacity booster base station 101B determines its transition to the dormant state when the communication traffic volume between itself and the wireless terminal device 202B decreases and the communication traffic volume falls below a predetermined threshold (step). S116).
 次に、キャパシティブースタ基地局101Bは、たとえば無線送信部94におけるアンプ11の増幅率を下げることにより、送信電波の電力を下げる(ステップS118)。この際、キャパシティブースタ基地局101Bは、送信電波の電力を急激に下げると、自己を選択している無線端末装置202Bとの通信が途絶えてしまう可能性がある。通信が途絶えることを防ぐために、キャパシティブースタ基地局101Bは、以下の手順に従って送信電波の電力を下げる。 Next, the capacity booster base station 101B reduces the power of the transmission radio wave, for example, by reducing the amplification factor of the amplifier 11 in the wireless transmission unit 94 (step S118). At this time, if the capacity booster base station 101B sharply reduces the power of the transmission radio wave, there is a possibility that communication with the wireless terminal device 202B that has selected itself is interrupted. In order to prevent the communication from being interrupted, the capacity booster base station 101B reduces the power of the transmission radio wave according to the following procedure.
 図12は、本発明の実施の形態に係る無線通信システムにおけるキャパシティブースタ基地局が、送信する電波の電力を下げて活性状態から休止状態へ遷移する際の動作手順を定めたフローチャートである。図12は、図11におけるキャパシティブースタ基地局101Bが通信トラフィック量を監視するステップS114から休止状態へ遷移するステップS132までの動作を詳細に示している。 FIG. 12 is a flowchart defining an operation procedure when the capacity booster base station in the wireless communication system according to the embodiment of the present invention transitions from the active state to the dormant state by reducing the power of the transmitted radio wave. FIG. 12 shows in detail the operation from step S114 in which the capacity booster base station 101B in FIG. 11 monitors the communication traffic amount to step S132 in which the capacity booster base station 101B transitions to the dormant state.
 図12を参照して、キャパシティブースタ基地局101Bは、活性状態であり、電波を送信している。(ステップS152)。 Referring to FIG. 12, capacity booster base station 101B is in an active state and is transmitting radio waves. (Step S152).
 次に、キャパシティブースタ基地局101Bは、自己および自己を選択している無線端末装置202B間の通信トラフィック量を監視する(ステップS154)。 Next, the capacity booster base station 101B monitors the communication traffic amount between itself and the wireless terminal device 202B that has selected itself (step S154).
 キャパシティブースタ基地局101Bは、監視している通信トラフィック量が所定のしきい値を下回らない場合、引き続き通信トラフィック量を監視する(ステップS156でNO)。 The capacity booster base station 101B continues to monitor the amount of communication traffic when the amount of communication traffic being monitored does not fall below a predetermined threshold (NO in step S156).
 また、キャパシティブースタ基地局101Bは、通信トラフィック量が所定のしきい値を下回った場合に(ステップS156でYES)、たとえば無線送信部94におけるアンプ11の増幅率をΔG1だけ下げる(ステップS158)。 Further, when the amount of communication traffic falls below a predetermined threshold (YES in step S156), capacity booster base station 101B decreases, for example, the amplification factor of amplifier 11 in radio transmission section 94 by ΔG1 (step S158). .
 次に、キャパシティブースタ基地局101Bは、たとえば無線送信部94におけるアンプ11の増幅率を一定に保ったまま、待機時間ΔW1だけ待機する(ステップS160)。こうすることにより、キャパシティブースタ基地局101Bは、送信電波の電力を段階的に下げることができる。 Next, the capacity booster base station 101B waits for the waiting time ΔW1 while keeping the amplification factor of the amplifier 11 in the radio transmission unit 94 constant, for example (step S160). By doing so, the capacity booster base station 101B can gradually reduce the power of the transmission radio wave.
 次に、キャパシティブースタ基地局101Bは、自己を選択していた無線端末装置202Bが引き続き自己を選択しているか確認する。たとえば、キャパシティブースタ基地局101Bは、送信電波の電力の低下により、自己を選択していた無線端末装置202Bの全てがハンドオーバにより他の無線基地局装置を選択した場合(ステップS162でNO)、以下の動作を行う。 Next, the capacity booster base station 101B confirms whether the wireless terminal device 202B that has selected itself continues to select itself. For example, when the capacity booster base station 101B selects all the other radio base station devices by handover (NO in step S162) due to a decrease in the power of the transmission radio wave, all of the radio terminal devices 202B that have selected itself have selected. The following operations are performed.
 すなわち、キャパシティブースタ基地局101Bは、自己が休止状態に遷移することを周辺基地局に対して周知するために、X2インタフェース経由で配置情報更新要求をカバレッジ基地局201およびキャパシティブースタ基地局101Aへ通知する(ステップS164)。 That is, the capacity booster base station 101B sends an arrangement information update request via the X2 interface to the coverage base station 201 and the capacity booster base station 101A in order to inform the neighboring base stations that it will transition to the dormant state. (Step S164).
 次に、キャパシティブースタ基地局101Bは、たとえば無線送信部94におけるアンプ11の増幅率を0にすることにより(ステップS166)、休止状態に遷移する(ステップS168)。 Next, the capacity booster base station 101B transitions to a dormant state (step S168) by setting the amplification factor of the amplifier 11 in the wireless transmission unit 94 to 0 (step S166), for example.
 また、引き続きキャパシティブースタ基地局101Bを選択している無線端末装置202Bが存在する場合(ステップS162でYES)、キャパシティブースタ基地局101Bは、たとえば無線送信部94におけるアンプ11の増幅率を更にΔG1だけ下げる(ステップS158)。 Further, when there is a wireless terminal device 202B that continues to select the capacity booster base station 101B (YES in step S162), the capacity booster base station 101B further increases the amplification factor of the amplifier 11 in the wireless transmission unit 94, for example. Decrease by ΔG1 (step S158).
 以降、キャパシティブースタ基地局101Bは、自己を選択している無線端末装置202Bの全てがハンドオーバにより他の無線基地局装置を選択するまで、たとえば無線送信部94におけるアンプ11の増幅率をΔG1だけ下げ(ステップS158)、自己におけるアンプ11の増幅率を一定に保ったまま、待機時間ΔW1だけ待機する(ステップS160)処理を繰り返し実行する。すなわち、キャパシティブースタ基地局101Bは、現在の無線信号の送信電力を1または複数段階下げた後、上記無線信号の送信を停止する停波制御を行う。 Thereafter, the capacity booster base station 101B increases the amplification factor of the amplifier 11 in the radio transmission unit 94 by ΔG1, for example, until all of the radio terminal apparatuses 202B that have selected itself select another radio base station apparatus by handover. Lowering (step S158), the process waits for the waiting time ΔW1 (step S160) while the amplification factor of the amplifier 11 is kept constant (step S160). That is, the capacity booster base station 101B performs stop control to stop the transmission of the radio signal after reducing the transmission power of the current radio signal by one or more steps.
 以上のような動作により、キャパシティブースタ基地局101Bからの送信電波の電力は、待機時間ΔW1毎に一定の電力ずつ低下する。従って、無線端末装置202Bが測定するキャパシティブースタ基地局101Bから送信される電波の電力は、待機時間ΔW1毎に一定の電力ずつ低下する。すなわち、無線端末装置202Bが受信する受信電力は、急激ではなく、緩やかに減少する。 Through the operation as described above, the power of the transmission radio wave from the capacity booster base station 101B decreases by a constant power every standby time ΔW1. Therefore, the power of the radio wave transmitted from the capacity booster base station 101B measured by the wireless terminal device 202B decreases by a constant power for each standby time ΔW1. That is, the received power received by the wireless terminal device 202B is not abrupt but decreases gradually.
 これにより、キャパシティブースタ基地局101Bは、自己および自己を選択している無線端末装置202B間の通信が途絶えてしまう前に、当該無線端末装置202Bをカバレッジ基地局201に移動させることができる。 Thereby, the capacity booster base station 101B can move the wireless terminal device 202B to the coverage base station 201 before the communication between the wireless terminal device 202B that has selected itself and the wireless booster device 202B is interrupted.
 この結果、キャパシティブースタ基地局101は、休止状態へ遷移する際に、自己を選択している無線端末装置202の通信が途絶えてしまうことを防ぐことができる。 As a result, the capacity booster base station 101 can prevent the communication of the wireless terminal device 202 that has selected itself from being interrupted when transitioning to the dormant state.
 再び図11を参照して、キャパシティブースタ基地局101Bが送信する電波の電力が低下することにより、無線端末装置202Bにおけるキャパシティブースタ基地局101Bから送信される無線信号の受信電力は低下する。しかしながら、無線端末装置202Bにおけるカバレッジ基地局201から送信される無線信号の受信電力に大きな変化はない。 Referring to FIG. 11 again, the reception power of the radio signal transmitted from the capacity booster base station 101B in the radio terminal device 202B decreases due to the decrease in the power of the radio wave transmitted by the capacity booster base station 101B. However, there is no significant change in the reception power of the radio signal transmitted from the coverage base station 201 in the radio terminal device 202B.
 無線端末装置202Bは、各基地局からの無線信号の受信電力の測定結果を示す測定結果通知をキャパシティブースタ基地局101Bへ送信する。キャパシティブースタ基地局101Bは、受信した測定結果通知に基づいて、ハンドオーバ動作を実行する(ステップS120)。ハンドオーバ動作の手順は、図6に示すステップS6からステップS38の手順に従う。 The wireless terminal device 202B transmits a measurement result notification indicating the measurement result of the received power of the radio signal from each base station to the capacity booster base station 101B. The capacity booster base station 101B performs a handover operation based on the received measurement result notification (step S120). The procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
 次に、無線端末装置202Bは、上記ハンドオーバ動作によりカバレッジ基地局201を通信先として選択し、かつカバレッジ基地局201と通信を行っている状態となる(ステップS122)。 Next, the wireless terminal device 202B selects the coverage base station 201 as a communication destination by the above handover operation and is in communication with the coverage base station 201 (step S122).
 また、キャパシティブースタ基地局101Bは、自己と通信していた無線端末装置202Bがハンドオーバ動作によりカバレッジ基地局201と通信するようになったことを確認すると、自己が休止状態に遷移することを周辺基地局に対して周知するために、以下の動作を行う。すなわち、キャパシティブースタ基地局101Bは、カバレッジ基地局201およびキャパシティブースタ基地局101Aに対して、X2インタフェース経由で配置情報更新要求を通知する(ステップS124,S126)。 In addition, the capacity booster base station 101B confirms that the wireless terminal device 202B communicating with itself has communicated with the coverage base station 201 by the handover operation, so that the capacity booster base station 101B In order to make known to the base station, the following operation is performed. That is, the capacity booster base station 101B notifies the coverage base station 201 and the capacity booster base station 101A of an arrangement information update request via the X2 interface (steps S124 and S126).
 次に、カバレッジ基地局201は、キャパシティブースタ基地局101Bから配置情報更新要求をX2インタフェース経由で受信すると、自己の周辺セル情報を更新し、更新した旨を示す配置情報更新応答をキャパシティブースタ基地局101Bに対してX2インタフェース経由で通知する(ステップS128)。 Next, when the coverage base station 201 receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the coverage base station 201 updates its own neighboring cell information and sends an arrangement information update response indicating that the capacity booster has been updated. The base station 101B is notified via the X2 interface (step S128).
 また、キャパシティブースタ基地局101Aは、キャパシティブースタ基地局101Bから配置情報更新要求をX2インタフェース経由で受信すると、自己の周辺セル情報を更新し、更新した旨を示す配置情報更新応答をキャパシティブースタ基地局101Bに対してX2インタフェース経由で通知する(ステップS130)。 Further, when the capacity booster base station 101A receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the capacity booster base station 101A updates its own neighboring cell information and sends an arrangement information update response indicating the update to the capacity booster base station 101B. The booster base station 101B is notified via the X2 interface (step S130).
 次に、キャパシティブースタ基地局101Bは、配置情報更新応答をX2インタフェース経由で受信すると、たとえば無線送信部94におけるアンプ11の増幅率を0にすることにより休止状態に遷移する(ステップS132)。 Next, when the capacity booster base station 101B receives the arrangement information update response via the X2 interface, the capacity booster base station 101B transitions to a dormant state by setting the amplification factor of the amplifier 11 in the wireless transmission unit 94 to 0, for example (step S132).
[送信電力の制御の例2]
 再び図10を参照して、キャパシティブースタ基地局101Aおよび101Bが図10のステップS64およびステップS66において活性状態に遷移する際に、以下の問題を生ずる可能性がある。すなわち、キャパシティブースタ基地局101は、活性状態に遷移すると、通常時の電力の電波によって、たとえば当該キャパシティブースタ基地局101の位置情報または受信電力のしきい値情報などを含む報知情報を送信する。
[Example 2 of transmission power control]
Referring to FIG. 10 again, when capacity booster base stations 101A and 101B transition to the active state in steps S64 and S66 of FIG. 10, the following problems may occur. That is, when the capacity booster base station 101 transitions to the active state, the capacity booster base station 101 transmits broadcast information including, for example, the position information of the capacity booster base station 101 or threshold information of the received power, by radio waves of normal power. To do.
 ここで、報知情報は、すべての無線端末装置202が受信できるように、各基地局間で同一周波数帯の無線信号により送信される。特に、たとえばキャパシティブースタ基地局101近傍に位置する無線端末装置202は、キャパシティブースタ基地局101が活性状態に遷移すると、当該キャパシティブースタ基地局101から大電力の無線信号を受信することになる。この結果、無線端末装置202は、カバレッジ基地局201からの小電力の無線信号を受信できなくなり無線ネットワークから切断される。そこで、以下のような動作により上記問題を解決する。 Here, the broadcast information is transmitted by radio signals in the same frequency band between the base stations so that all the radio terminal apparatuses 202 can receive the broadcast information. In particular, for example, when the capacity booster base station 101 transitions to an active state, the wireless terminal device 202 located in the vicinity of the capacity booster base station 101 receives a high-power radio signal from the capacity booster base station 101. Become. As a result, the wireless terminal device 202 cannot receive a low-power wireless signal from the coverage base station 201 and is disconnected from the wireless network. Therefore, the above problem is solved by the following operation.
 図13は、本発明の実施の形態に係る無線通信システムにおけるキャパシティブースタ基地局が活性状態へ遷移する際のシーケンスの一例を示す図である。 FIG. 13 is a diagram illustrating an example of a sequence when the capacity booster base station transitions to an active state in the wireless communication system according to the embodiment of the present invention.
 図13を参照して、まず、キャパシティブースタ基地局101Aおよび101Bは、休止状態である(ステップS194,S196)。 Referring to FIG. 13, first, capacity booster base stations 101A and 101B are in a dormant state (steps S194 and S196).
 また、無線端末装置202Bは、カバレッジ基地局201を通信先として選択し、かつカバレッジ基地局201と通信を行っている状態である(ステップS192)。 Further, the wireless terminal device 202B is in a state of selecting the coverage base station 201 as a communication destination and communicating with the coverage base station 201 (step S192).
 次に、カバレッジ基地局201は、自己および各無線端末装置202間の通信トラフィック量を監視する(ステップS198)。たとえば、カバレッジ基地局201は、自己および各無線端末装置202間の通信トラフィック量が所定のしきい値を上回ると、キャパシティブースタ基地局101Aおよび101Bを活性状態に遷移させることを決定する(ステップS200)。 Next, the coverage base station 201 monitors the amount of communication traffic between itself and each wireless terminal device 202 (step S198). For example, the coverage base station 201 determines to transition the capacity booster base stations 101A and 101B to the active state when the amount of communication traffic between itself and each wireless terminal device 202 exceeds a predetermined threshold (step). S200).
 次に、カバレッジ基地局201は、キャパシティブースタ基地局101A,101Bを活性状態に遷移させるために、キャパシティブースタ基地局101A,101Bに対して、X2インタフェース経由でセル活性化要求を通知する(ステップS202,S204)。 Next, the coverage base station 201 notifies the capacity booster base stations 101A and 101B of the cell activation request via the X2 interface in order to shift the capacity booster base stations 101A and 101B to the active state ( Steps S202 and S204).
 次に、キャパシティブースタ基地局101A,101Bは、カバレッジ基地局201からセル活性化要求をX2インタフェース経由で受信すると、通知を受信した旨の確認のためにカバレッジ基地局201に対して、X2インタフェース経由でセル活性化応答を通知する(ステップS206,208)。 Next, when the capacity booster base stations 101A and 101B receive the cell activation request from the coverage base station 201 via the X2 interface, the capacity booster base stations 101A and 101B contact the coverage base station 201 with the X2 interface to confirm that the notification has been received. A cell activation response is notified via (steps S206 and S208).
 次に、キャパシティブースタ基地局101A,101Bは、たとえば無線送信部94におけるアンプ11の増幅率を上げることにより、送信電波の電力を上げる(ステップS210,212)。この際、キャパシティブースタ基地局101A,101Bは、送信電波の電力を急激に上げると、自己を選択している各無線端末装置202との通信が途絶えてしまう可能性がある。通信が途絶えることを防ぐために、キャパシティブースタ基地局101A,101Bは、以下の手順に従って送信電波の電力を上げる。 Next, the capacity booster base stations 101A and 101B increase the power of the transmission radio wave, for example, by increasing the amplification factor of the amplifier 11 in the wireless transmission unit 94 (steps S210 and 212). At this time, if the capacity booster base stations 101A and 101B rapidly increase the power of the transmission radio wave, there is a possibility that the communication with each wireless terminal device 202 that has selected itself is interrupted. In order to prevent the communication from being interrupted, the capacity booster base stations 101A and 101B increase the power of the transmission radio wave according to the following procedure.
 図14は、本発明の実施の形態に係る無線通信システムにおけるキャパシティブースタ基地局が送信する電波の電力を上げて休止状態から活性状態へ遷移する際の動作手順を定めたフローチャートである。図14は、図13におけるキャパシティブースタ基地局101Aおよび101Bがカバレッジ基地局201からX2インタフェース経由でセル活性化要求を受信するステップS202から送信電力を上げるステップS212までの動作を詳細に示している。 FIG. 14 is a flowchart that defines an operation procedure when the power of the radio wave transmitted by the capacity booster base station in the wireless communication system according to the embodiment of the present invention is increased to transition from the sleep state to the active state. FIG. 14 shows in detail operations from step S202 in which the capacity booster base stations 101A and 101B in FIG. 13 receive a cell activation request from the coverage base station 201 via the X2 interface to step S212 in which the transmission power is increased. .
 図14を参照して、キャパシティブースタ基地局101A,101Bは、休止状態であって電波を送信していない。(ステップS242)。 Referring to FIG. 14, capacity booster base stations 101A and 101B are in a dormant state and do not transmit radio waves. (Step S242).
 次に、キャパシティブースタ基地局101A,101Bは、カバレッジ基地局201からセル活性化要求を受信する(ステップS244)。 Next, the capacity booster base stations 101A and 101B receive a cell activation request from the coverage base station 201 (step S244).
 次に、キャパシティブースタ基地局101A,101Bは、たとえば無線送信部94におけるアンプ11の増幅率をΔG2だけ上げる(ステップS246)。 Next, the capacity booster base stations 101A and 101B increase the amplification factor of the amplifier 11 in, for example, the wireless transmission unit 94 by ΔG2 (step S246).
 次に、キャパシティブースタ基地局101A,101Bは、たとえば無線送信部94におけるアンプ11の増幅率を一定に保ったまま、待機時間ΔW2だけ待機する(ステップS248)。こうすることにより、キャパシティブースタ基地局101A,101Bは、送信電波の電力を段階的に上げることができる。 Next, the capacity booster base stations 101A and 101B wait for the waiting time ΔW2 while keeping the amplification factor of the amplifier 11 in the radio transmission unit 94 constant, for example (step S248). By doing so, the capacity booster base stations 101A and 101B can increase the power of the transmission radio wave stepwise.
 次に、キャパシティブースタ基地局101A,101Bは、たとえば無線送信部94におけるアンプ11の増幅率が所定のレベルに到達したかどうかを確認する。たとえば、無線送信部94におけるアンプ11の増幅率が所定のレベルに到達すると(ステップS250でYES)、キャパシティブースタ基地局101A,101Bは、活性状態となる(ステップS252)。 Next, the capacity booster base stations 101A and 101B confirm, for example, whether or not the amplification factor of the amplifier 11 in the wireless transmission unit 94 has reached a predetermined level. For example, when the amplification factor of amplifier 11 in wireless transmission unit 94 reaches a predetermined level (YES in step S250), capacity booster base stations 101A and 101B are activated (step S252).
 また、たとえば無線送信部94におけるアンプ11の増幅率が所定のレベルに到達していない場合(ステップS250でNO)、キャパシティブースタ基地局101A,101Bは、無線送信部94におけるアンプ11の増幅率を更にΔG2だけ上げる(ステップS246)。以下、キャパシティブースタ基地局101A,101Bは、無線送信部94におけるアンプ11の増幅率が所定のレベルに到達するまで、無線送信部94におけるアンプ11の増幅率をΔG2だけ上げ(ステップS246)、自己におけるアンプ11の増幅率を一定に保ったまま、待機時間ΔW2だけ待機する(ステップS248)処理を繰り返し実行する。 Further, for example, when the amplification factor of the amplifier 11 in the wireless transmission unit 94 has not reached a predetermined level (NO in step S250), the capacity booster base stations 101A and 101B use the amplification factor of the amplifier 11 in the wireless transmission unit 94. Is further increased by ΔG2 (step S246). Thereafter, the capacity booster base stations 101A and 101B increase the amplification factor of the amplifier 11 in the wireless transmission unit 94 by ΔG2 until the amplification factor of the amplifier 11 in the wireless transmission unit 94 reaches a predetermined level (step S246). The process of waiting for the waiting time ΔW2 while keeping the amplification factor of the amplifier 11 at its own constant (step S248) is repeatedly executed.
 以上のような動作により、キャパシティブースタ基地局101からの送信電波の電力は、待機時間ΔW2毎に一定の電力ずつ増加する。従って、無線端末装置202Bが測定するキャパシティブースタ基地局101Bから送信される電波の電力は、待機時間ΔW2毎に一定の電力ずつ増加する。すなわち、無線端末装置202が受信する受信電力は、急激ではなく、緩やかに増加する。 Through the operation as described above, the power of the transmission radio wave from the capacity booster base station 101 increases by a constant power every standby time ΔW2. Therefore, the power of the radio wave transmitted from the capacity booster base station 101B measured by the wireless terminal device 202B increases by a constant power for each standby time ΔW2. That is, the received power received by the wireless terminal device 202 is not abrupt but increases gradually.
 これにより、キャパシティブースタ基地局101Bは、カバレッジ基地局201を選択している無線端末装置202Bを、通信を途絶えさせることなく自己にハンドオーバさせることができる。 Thereby, the capacity booster base station 101B can hand over the wireless terminal device 202B, which has selected the coverage base station 201, without interrupting communication.
 この結果、キャパシティブースタ基地局101は、活性状態へ遷移する際に、たとえばカバレッジ基地局201を選択し、かつ自己の近傍に位置する無線端末装置202Bの通信が途絶えてしまうことを防ぐことができる。 As a result, when the capacity booster base station 101 transitions to the active state, for example, the coverage base station 201 is selected and communication of the wireless terminal device 202B located in the vicinity of the capacity booster base station 101 is prevented from being interrupted. it can.
 再び図13を参照して、たとえば、キャパシティブースタ基地局101Bが送信する電波の電力が増大することにより、無線端末装置202Bにおけるキャパシティブースタ基地局101Bから送信される無線信号の受信電力は増大する。しかしながら、無線端末装置202Bにおけるカバレッジ基地局201から送信される無線信号の受信電力に大きな変化はない。 Referring to FIG. 13 again, for example, when the power of radio waves transmitted from capacity booster base station 101B increases, the reception power of radio signals transmitted from capacity booster base station 101B in radio terminal apparatus 202B increases. To do. However, there is no significant change in the reception power of the radio signal transmitted from the coverage base station 201 in the radio terminal device 202B.
 無線端末装置202Bは、各基地局からの無線信号の受信電力の測定結果を示す測定結果通知をカバレッジ基地局201へ送信する。カバレッジ基地局201は、受信した測定結果通知に基づいて、ハンドオーバ動作を実行する(ステップS214)。ハンドオーバ動作の手順は、図6に示すステップS6からステップS38の手順に従う。 The wireless terminal device 202B transmits a measurement result notification indicating the measurement result of the received power of the radio signal from each base station to the coverage base station 201. The coverage base station 201 performs a handover operation based on the received measurement result notification (step S214). The procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
 次に、無線端末装置202Bは、上記ハンドオーバ動作によりキャパシティブースタ基地局101Bを通信先として選択し、かつキャパシティブースタ基地局101Bと通信を行っている状態となる(ステップS216)。 Next, the wireless terminal device 202B selects the capacity booster base station 101B as a communication destination by the handover operation and is in communication with the capacity booster base station 101B (step S216).
[無線基地局装置間の情報通知の例]
 図15は、キャパシティブースタ基地局が活性状態から休止状態へ遷移する際に生ずる可能性のある問題点を説明するための図である。
[Example of information notification between wireless base station devices]
FIG. 15 is a diagram for explaining a problem that may occur when a capacity booster base station transitions from an active state to a dormant state.
 図15を参照して、まず、キャパシティブースタ基地局101A,101Bは、活性状態にあり、電波を送信している(ステップS272,274)。 Referring to FIG. 15, first, capacity booster base stations 101A and 101B are active and transmitting radio waves (steps S272 and 274).
 次に、たとえば、無線端末装置202Bは、キャパシティブースタ基地局101Bを通信先として選択し、かつキャパシティブースタ基地局101Bと通信を行っている状態である(ステップS276)。 Next, for example, the wireless terminal device 202B is in a state of selecting the capacity booster base station 101B as a communication destination and communicating with the capacity booster base station 101B (step S276).
 次に、キャパシティブースタ基地局101Bは、自己および無線端末装置202B間の通信トラフィック量を監視する(ステップS278)。たとえば、キャパシティブースタ基地局101Bは、自己および無線端末装置202B間の通信トラフィック量が少なくなり、通信トラフィック量が所定のしきい値を下回ると、自己の休止状態への遷移を決定する(ステップS280)。一方、たとえば、キャパシティブースタ基地局101Aは、自己および自己と通信する無線端末装置202間の通信トラフィック量が多いので、活性状態を保持する。 Next, the capacity booster base station 101B monitors the amount of communication traffic between itself and the wireless terminal device 202B (step S278). For example, the capacity booster base station 101B determines its transition to the dormant state when the communication traffic volume between itself and the wireless terminal device 202B decreases and the communication traffic volume falls below a predetermined threshold (step). S280). On the other hand, for example, the capacity booster base station 101A maintains the active state because the communication traffic amount between itself and the wireless terminal device 202 communicating with itself is large.
 次に、キャパシティブースタ基地局101Bは、たとえば無線送信部94におけるアンプ11の増幅率を下げることにより、送信電波の電力を下げる(ステップS282)。この際、キャパシティブースタ基地局101Bは、図12に示す手順に従って送信電波の電力を下げてもよい。 Next, the capacity booster base station 101B reduces the power of the transmission radio wave by, for example, reducing the amplification factor of the amplifier 11 in the wireless transmission unit 94 (step S282). At this time, the capacity booster base station 101B may reduce the power of the transmission radio wave according to the procedure shown in FIG.
 キャパシティブースタ基地局101Bが送信する電波の電力が低下することにより、無線端末装置202Bにおけるキャパシティブースタ基地局101Bから送信される無線信号の受信電力は低下する。しかしながら、無線端末装置202Bにおけるカバレッジ基地局201から送信される無線信号の受信電力に大きな変化はない。 When the power of the radio wave transmitted by the capacity booster base station 101B decreases, the reception power of the radio signal transmitted from the capacity booster base station 101B in the wireless terminal device 202B decreases. However, there is no significant change in the reception power of the radio signal transmitted from the coverage base station 201 in the radio terminal device 202B.
 無線端末装置202Bは、各基地局からの無線信号の受信電力の測定結果を示す測定結果通知をキャパシティブースタ基地局101Bへ送信する。キャパシティブースタ基地局101Bは、受信した測定結果通知に基づいて、ハンドオーバ動作を実行する(ステップS284)。ハンドオーバ動作の手順は、図6に示すステップS6からステップS38の手順に従う。 The wireless terminal device 202B transmits a measurement result notification indicating the measurement result of the received power of the radio signal from each base station to the capacity booster base station 101B. The capacity booster base station 101B performs a handover operation based on the received measurement result notification (step S284). The procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
 次に、無線端末装置202Bは、上記ハンドオーバ動作によりカバレッジ基地局201を通信先として選択し、かつカバレッジ基地局201と通信を行っている状態となる(ステップS286)。 Next, the wireless terminal device 202B selects the coverage base station 201 as a communication destination by the handover operation and is in a state of communicating with the coverage base station 201 (step S286).
 また、キャパシティブースタ基地局101Bは、自己と通信していた無線端末装置202Bがハンドオーバ動作によりカバレッジ基地局201と通信するようになったことを確認すると、自己が休止状態に遷移することを周辺基地局に対して周知するために、以下の動作を行う。すなわち、キャパシティブースタ基地局101Bは、カバレッジ基地局201およびキャパシティブースタ基地局101Aに対して、X2インタフェース経由で配置情報更新要求を通知する(ステップS288,S290)。 In addition, the capacity booster base station 101B confirms that the wireless terminal device 202B communicating with itself has communicated with the coverage base station 201 by the handover operation, so that the capacity booster base station 101B In order to make known to the base station, the following operation is performed. That is, the capacity booster base station 101B notifies an arrangement information update request via the X2 interface to the coverage base station 201 and the capacity booster base station 101A (steps S288 and S290).
 次に、キャパシティブースタ基地局101Aは、キャパシティブースタ基地局101Bから配置情報更新要求をX2インタフェース経由で受信すると、自己の周辺セル情報を更新し、更新した旨を示す配置情報更新応答をキャパシティブースタ基地局101Bに対してX2インタフェース経由で通知する(ステップS292)。 Next, when the capacity booster base station 101A receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the capacity booster base station 101A updates its neighbor cell information and receives an arrangement information update response indicating that the update has been performed. The city booster base station 101B is notified via the X2 interface (step S292).
 また、カバレッジ基地局201は、キャパシティブースタ基地局101Bから配置情報更新要求をX2インタフェース経由で受信すると、自己の周辺セル情報を更新し、更新した旨を示す配置情報更新応答をキャパシティブースタ基地局101Bに対してX2インタフェース経由で通知する(ステップS294)。 When the coverage base station 201 receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the coverage base station 201 updates its neighbor cell information and sends an arrangement information update response indicating that it has been updated to the capacity booster base The station 101B is notified via the X2 interface (step S294).
 次に、キャパシティブースタ基地局101Bは、配置情報更新応答をX2インタフェース経由で受信すると、たとえば無線送信部94におけるアンプ11の増幅率を0にすることにより休止状態に遷移する(ステップS298)。 Next, when the capacity booster base station 101B receives the arrangement information update response via the X2 interface, the capacity booster base station 101B transitions to a dormant state by setting the amplification factor of the amplifier 11 in the wireless transmission unit 94 to 0, for example (step S298).
 また、カバレッジ基地局201は、自己および自己と通信する各無線端末装置202間の通信トラフィック量を監視する(ステップS296)。たとえば、カバレッジ基地局201は、自己および自己と通信する各無線端末装置202間の通信トラフィック量が所定のしきい値を上回ると、休止状態にあるキャパシティブースタ基地局101を活性状態に遷移させることを決定する(ステップS300)。 Also, the coverage base station 201 monitors the communication traffic amount between itself and each wireless terminal device 202 communicating with itself (step S296). For example, the coverage base station 201 transitions the capacity booster base station 101 in a dormant state to an active state when the amount of communication traffic between itself and each wireless terminal device 202 communicating with the self exceeds a predetermined threshold value. Is determined (step S300).
 次に、カバレッジ基地局201は、キャパシティブースタ基地局101Bに対して、X2インタフェース経由でセル活性化要求を通知する(ステップS302)。また、キャパシティブースタ基地局101Aは活性状態のまま継続しているので、カバレッジ基地局201は、キャパシティブースタ基地局101Aに対してセル活性化要求を通知しない。 Next, the coverage base station 201 notifies the capacity booster base station 101B of a cell activation request via the X2 interface (step S302). Further, since the capacity booster base station 101A continues in the active state, the coverage base station 201 does not notify the capacity booster base station 101A of the cell activation request.
 次に、キャパシティブースタ基地局101Bは、カバレッジ基地局201からX2インタフェース経由でセル活性化要求の通知を受信して、通知を受信した旨の確認のためにカバレッジ基地局201に対して、X2インタフェース経由でセル活性化応答を通知する(ステップS304)。 Next, the capacity booster base station 101B receives the notification of the cell activation request from the coverage base station 201 via the X2 interface, and sends the X2 to the coverage base station 201 to confirm that the notification has been received. A cell activation response is notified via the interface (step S304).
 次に、キャパシティブースタ基地局101Bは、たとえば無線送信部94におけるアンプ11の増幅率を上げることにより、送信電波の電力を上げる(ステップS306)。この際、キャパシティブースタ基地局101Bは、図14に示す手順に従って送信電波の電力を上げてもよい。 Next, the capacity booster base station 101B increases the power of the transmission radio wave, for example, by increasing the amplification factor of the amplifier 11 in the wireless transmission unit 94 (step S306). At this time, the capacity booster base station 101B may increase the power of the transmission radio wave according to the procedure shown in FIG.
 キャパシティブースタ基地局101Bが送信する電波の電力が増大することにより、無線端末装置202Bにおけるキャパシティブースタ基地局101Bから送信される無線信号の受信電力は増大する。しかしながら、無線端末装置202Bにおけるカバレッジ基地局201から送信される無線信号の受信電力に大きな変化はない。 When the power of the radio wave transmitted from the capacity booster base station 101B increases, the reception power of the radio signal transmitted from the capacity booster base station 101B in the wireless terminal device 202B increases. However, there is no significant change in the reception power of the radio signal transmitted from the coverage base station 201 in the radio terminal device 202B.
 無線端末装置202Bは、各基地局からの無線信号の受信電力の測定結果を示す測定結果通知をカバレッジ基地局201へ送信する。カバレッジ基地局201は、受信した測定結果通知に基づいて、ハンドオーバ動作を実行する(ステップS308)。ハンドオーバ動作の手順は、図6に示すステップS6からステップS38の手順に従う。 The wireless terminal device 202B transmits a measurement result notification indicating the measurement result of the received power of the radio signal from each base station to the coverage base station 201. The coverage base station 201 performs a handover operation based on the received measurement result notification (step S308). The procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
 次に、無線端末装置202Bは、上記ハンドオーバ動作によりキャパシティブースタ基地局101Bを通信先として選択し、かつキャパシティブースタ基地局101Bと通信を行っている状態となる(ステップS310)。 Next, the wireless terminal device 202B selects the capacity booster base station 101B as a communication destination by the handover operation and is in communication with the capacity booster base station 101B (step S310).
 次に、キャパシティブースタ基地局101Bは、自己および無線端末装置202B間の通信トラフィック量を監視する(ステップS312)。しかしながら、キャパシティブースタ基地局101Bおよび無線端末装置202B間の通信トラフィック量は少ないままであるので、通信トラフィック量は、所定のしきい値を下回る(ステップS314)。次に、キャパシティブースタ基地局101Bは、送信電波の電力を下げる(ステップS316)。 Next, the capacity booster base station 101B monitors the amount of communication traffic between itself and the wireless terminal device 202B (step S312). However, since the amount of communication traffic between the capacity booster base station 101B and the wireless terminal device 202B remains small, the amount of communication traffic falls below a predetermined threshold (step S314). Next, the capacity booster base station 101B reduces the power of the transmission radio wave (step S316).
 この結果、ステップS284と同様に、キャパシティブースタ基地局101Bを選択していた無線端末装置202Bのハンドオーバが発生し(ステップS318)、以降、ステップS286以下の動作が繰り返される。 As a result, as with step S284, handover of the wireless terminal device 202B that has selected the capacity booster base station 101B occurs (step S318), and thereafter, the operations after step S286 are repeated.
 すなわち、カバレッジ基地局201が無線端末装置202Bの通信先として選択されるハンドオーバ動作と、キャパシティブースタ基地局101Bが無線端末装置202Bの通信先として選択されるハンドオーバ動作とが、交互に繰り返される。この結果、無線端末装置202Bは、通信を始めることができない。また、無線基地局装置間で送受信されるセル活性化要求またはセル活性化応答などの制御メッセージが渋滞し、通信の遅延を引き起こす可能性がある。そこで、以下のような動作により上記問題を解決する。 That is, the handover operation in which the coverage base station 201 is selected as the communication destination of the wireless terminal device 202B and the handover operation in which the capacity booster base station 101B is selected as the communication destination of the wireless terminal device 202B are alternately repeated. As a result, the wireless terminal device 202B cannot start communication. In addition, a control message such as a cell activation request or a cell activation response transmitted / received between the radio base station apparatuses may be congested and cause a communication delay. Therefore, the above problem is solved by the following operation.
 図16は、本発明の実施の形態に係る無線通信システムにおけるキャパシティブースタ基地局の休止状態への遷移がカバレッジ基地局により容認される場合のシーケンスの一例を示す図である。 FIG. 16 is a diagram illustrating an example of a sequence in a case where the transition to the dormant state of the capacity booster base station in the wireless communication system according to the embodiment of the present invention is permitted by the coverage base station.
 図16を参照して、まず、キャパシティブースタ基地局101Bは、活性状態である(ステップS342)。また、たとえば、無線端末装置202Bは、キャパシティブースタ基地局101Bを通信先として選択し、かつキャパシティブースタ基地局101Bと通信を行っている状態である(ステップS344)。 Referring to FIG. 16, first, capacity booster base station 101B is in an active state (step S342). Further, for example, the wireless terminal device 202B is in a state in which the capacity booster base station 101B is selected as a communication destination and is communicating with the capacity booster base station 101B (step S344).
 次に、キャパシティブースタ基地局101Bは、自己および無線端末装置202B間の通信トラフィック量を監視する(ステップS346)。たとえば、キャパシティブースタ基地局101Bは、自己および無線端末装置202B間の通信トラフィック量がしきい値Th1を下回ると、キャパシティブースタ基地局101Aおよびカバレッジ基地局201に対して以下の要求を通知することを決定する(ステップS348)。 Next, the capacity booster base station 101B monitors the amount of communication traffic between itself and the wireless terminal device 202B (step S346). For example, when the amount of communication traffic between itself and the wireless terminal device 202B falls below the threshold Th1, the capacity booster base station 101B notifies the capacity booster base station 101A and the coverage base station 201 of the following request. Is determined (step S348).
 すなわち、キャパシティブースタ基地局101Bは、一時的配置情報更新要求(ENB Temporary Configuration Update Request)をキャパシティブースタ基地局101Aおよびカバレッジ基地局201に対してX2インタフェース経由で通知する(ステップS350,S352)。この一時的配置情報更新要求には、キャパシティブースタ基地局101Bが休止状態へ遷移するという情報が含まれる。 That is, the capacity booster base station 101B notifies a temporary arrangement information update request (ENB Temporary Configuration Update Request) to the capacity booster base station 101A and the coverage base station 201 via the X2 interface (steps S350 and S352). . This temporary arrangement information update request includes information that the capacity booster base station 101B transitions to a dormant state.
 次に、カバレッジ基地局201は、自己および自己と通信する各無線端末装置202間の通信トラフィック量を監視する(ステップS354)。カバレッジ基地局201は、たとえば、自己および自己と通信する各無線端末装置202間の通信トラフィック量が所定のしきい値を下回ると、受信した一時的配置情報更新要求を容認することを決定する(ステップS356)。 Next, the coverage base station 201 monitors the amount of communication traffic between itself and each wireless terminal device 202 communicating with itself (step S354). The coverage base station 201 decides to accept the received temporary location information update request when, for example, the amount of communication traffic between itself and each wireless terminal device 202 communicating with itself falls below a predetermined threshold ( Step S356).
 次に、カバレッジ基地局201は、キャパシティブースタ基地局101Bに対して一時的配置情報更新応答(ENB Temporary Configuration Update Response)をX2インタフェース経由で通知する(ステップS360)。この一時的配置情報更新応答には、キャパシティブースタ基地局101Bが休止状態へ遷移することを容認するという情報が含まれる。 Next, the coverage base station 201 notifies the capacity booster base station 101B of a temporary location information update response (ENB Temporary Configuration Update Response) via the X2 interface (step S360). This temporary arrangement information update response includes information that allows the capacity booster base station 101B to transition to the dormant state.
 また、キャパシティブースタ基地局101Aは、たとえば受信した一時的配置情報更新要求を容認すると、キャパシティブースタ基地局101Bに対して一時的配置情報更新応答をX2インタフェース経由で通知する(ステップS358)。 Further, when the capacity booster base station 101A accepts the received temporary arrangement information update request, for example, the capacity booster base station 101A notifies the capacity booster base station 101B of a temporary arrangement information update response via the X2 interface (step S358).
 次に、キャパシティブースタ基地局101Bは、キャパシティブースタ基地局101Aおよびカバレッジ基地局201からX2インタフェース経由で一時的配置情報更新応答を受信すると、引き続き自己および無線端末装置202B間の通信トラフィック量を監視する(ステップS362)。 Next, when the capacity booster base station 101B receives the temporary location information update response via the X2 interface from the capacity booster base station 101A and the coverage base station 201, the capacity booster base station 101B continuously determines the communication traffic volume between itself and the wireless terminal device 202B. Monitoring is performed (step S362).
 次に、キャパシティブースタ基地局101Bは、たとえば、自己および無線端末装置202B間の通信トラフィック量がしきい値Th2を下回ると、自己の休止状態への遷移を決定する(ステップS364)。 Next, the capacity booster base station 101B determines its transition to the dormant state when, for example, the amount of communication traffic between itself and the wireless terminal device 202B falls below the threshold Th2 (step S364).
 次に、キャパシティブースタ基地局101Bは、たとえば無線送信部94におけるアンプ11の増幅率を下げることにより、送信電波の電力を下げる(ステップS366)。この際、キャパシティブースタ基地局101Bは、図12に示す手順に従って送信電波の電力を下げてもよい。 Next, the capacity booster base station 101B reduces the power of the transmission radio wave, for example, by reducing the amplification factor of the amplifier 11 in the wireless transmission unit 94 (step S366). At this time, the capacity booster base station 101B may reduce the power of the transmission radio wave according to the procedure shown in FIG.
 キャパシティブースタ基地局101Bが送信する電波の電力が低下することにより、無線端末装置202Bにおけるキャパシティブースタ基地局101Bから送信される無線信号の受信電力は低下する。しかしながら、無線端末装置202Bにおけるカバレッジ基地局201から送信される無線信号の受信電力に大きな変化はない。 When the power of the radio wave transmitted by the capacity booster base station 101B decreases, the reception power of the radio signal transmitted from the capacity booster base station 101B in the wireless terminal device 202B decreases. However, there is no significant change in the reception power of the radio signal transmitted from the coverage base station 201 in the radio terminal device 202B.
 無線端末装置202Bは、各基地局からの無線信号の受信電力の測定結果を示す測定結果通知をキャパシティブースタ基地局101Bへ送信する。キャパシティブースタ基地局101Bは、受信した測定結果通知に基づいて、ハンドオーバ動作を実行する(ステップS368)。ハンドオーバ動作の手順は、図6に示すステップS6からステップS38の手順に従う。 The wireless terminal device 202B transmits a measurement result notification indicating the measurement result of the received power of the radio signal from each base station to the capacity booster base station 101B. The capacity booster base station 101B executes a handover operation based on the received measurement result notification (step S368). The procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
 次に、無線端末装置202Bは、上記ハンドオーバ動作によりカバレッジ基地局201を通信先として選択し、かつカバレッジ基地局201と通信を行っている状態となる(ステップS370)。 Next, the wireless terminal device 202B selects the coverage base station 201 as a communication destination by the handover operation and is in a state of communicating with the coverage base station 201 (step S370).
 また、キャパシティブースタ基地局101Bは、自己と通信していた無線端末装置202Bがハンドオーバ動作によりカバレッジ基地局201と通信するようになったことを確認すると、自己が休止状態に遷移することを周辺基地局に対して周知するために、以下の動作を行う。すなわち、キャパシティブースタ基地局101Bは、カバレッジ基地局201およびキャパシティブースタ基地局101Aに対して、X2インタフェース経由で配置情報更新要求を通知する(ステップS372,S374)。 In addition, the capacity booster base station 101B confirms that the wireless terminal device 202B communicating with itself has communicated with the coverage base station 201 by the handover operation, so that the capacity booster base station 101B In order to make known to the base station, the following operation is performed. That is, the capacity booster base station 101B notifies an arrangement information update request via the X2 interface to the coverage base station 201 and the capacity booster base station 101A (steps S372 and S374).
 次に、キャパシティブースタ基地局101Aは、キャパシティブースタ基地局101Bから配置情報更新要求をX2インタフェース経由で受信すると、自己の周辺セル情報を更新し、更新した旨を示す配置情報更新応答をキャパシティブースタ基地局101Bに対してX2インタフェース経由で通知する(ステップS376)。 Next, when the capacity booster base station 101A receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the capacity booster base station 101A updates its neighbor cell information and receives an arrangement information update response indicating that the update has been performed. The city booster base station 101B is notified via the X2 interface (step S376).
 また、カバレッジ基地局201は、キャパシティブースタ基地局101Bから配置情報更新要求をX2インタフェース経由で受信すると、自己の周辺セル情報を更新し、更新した旨を示す配置情報更新応答をキャパシティブースタ基地局101Bに対してX2インタフェース経由で通知する(ステップS378)。 When the coverage base station 201 receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the coverage base station 201 updates its neighbor cell information and sends an arrangement information update response indicating that it has been updated to the capacity booster base The station 101B is notified via the X2 interface (step S378).
 次に、キャパシティブースタ基地局101Bは、配置情報更新応答をX2インタフェース経由で受信すると、たとえば無線送信部94におけるアンプ11の増幅率を0にすることにより休止状態に遷移する(ステップS380)。 Next, when the capacity booster base station 101B receives the arrangement information update response via the X2 interface, the capacity booster base station 101B transitions to a dormant state, for example, by setting the amplification factor of the amplifier 11 in the wireless transmission unit 94 to 0 (step S380).
 図17は、本発明の実施の形態に係る無線通信システムにおける通信トラフィック量のしきい値Th1およびしきい値Th2が同じ値である場合の通信トラフィック量の時間変化の一例を示す図である。 FIG. 17 is a diagram showing an example of a time change of the communication traffic amount when the threshold value Th1 and the threshold value Th2 of the communication traffic amount are the same value in the wireless communication system according to the embodiment of the present invention.
 図17を参照して、横軸は時間、縦軸はキャパシティブースタ基地局101Bおよび無線端末装置202B間の通信トラフィック量を表す。図17は、図16におけるしきい値Th1およびしきい値Th2が同じである場合を示している。通信トラフィック量は、時間T11においてしきい値Th1を下回る。すなわち、キャパシティブースタ基地局101Bは、時間T11において一時的配置情報更新要求をキャパシティブースタ基地局101Aおよびカバレッジ基地局201に対してX2インタフェース経由で通知する(図16におけるステップS350,S352)。 17, the horizontal axis represents time, and the vertical axis represents the amount of communication traffic between the capacity booster base station 101B and the wireless terminal device 202B. FIG. 17 shows a case where the threshold value Th1 and the threshold value Th2 in FIG. 16 are the same. The amount of communication traffic falls below the threshold value Th1 at time T11. That is, the capacity booster base station 101B notifies the capacity booster base station 101A and the coverage base station 201 via the X2 interface at time T11 (steps S350 and S352 in FIG. 16).
 次に、キャパシティブースタ基地局101Bは、時間T12においてカバレッジ基地局201およびキャパシティブースタ基地局101Aから一時的配置情報更新応答の受信を完了する(図16におけるステップS358,S360)。 Next, the capacity booster base station 101B completes reception of the temporary location information update response from the coverage base station 201 and the capacity booster base station 101A at time T12 (steps S358 and S360 in FIG. 16).
 キャパシティブースタ基地局101Bは、通信トラフィック量がしきい値Th2を下回っているため、時間T13において送信電波の電力を下げ始める(図16におけるステップS366)。 The capacity booster base station 101B starts to reduce the power of the transmission radio wave at time T13 because the amount of communication traffic is below the threshold Th2 (step S366 in FIG. 16).
 キャパシティブースタ基地局101Bは、時間T14においてハンドオーバ動作を完了する(図16におけるステップS368)。 The capacity booster base station 101B completes the handover operation at time T14 (step S368 in FIG. 16).
 図18は、本発明の実施の形態に係る無線通信システムにおける通信トラフィック量のしきい値Th2がしきい値Th1より小さい値である場合の通信トラフィック量の時間変化の一例を示す図である。 FIG. 18 is a diagram illustrating an example of a temporal change in the communication traffic volume when the communication traffic volume threshold Th2 is smaller than the threshold Th1 in the wireless communication system according to the embodiment of the present invention.
 図18を参照して、横軸は時間、縦軸はキャパシティブースタ基地局101Bおよび無線端末装置202B間の通信トラフィック量を表す。図18は、図16におけるしきい値Th2がしきい値Th1より低い場合を示している。通信トラフィック量は、時間T21においてしきい値Th1を下回る。すなわち、キャパシティブースタ基地局101Bは、時間T21において一時的配置情報更新要求をキャパシティブースタ基地局101Aおよびカバレッジ基地局201に対してX2インタフェース経由で通知する(図16におけるステップS350,S352)。 Referring to FIG. 18, the horizontal axis represents time, and the vertical axis represents the amount of communication traffic between capacity booster base station 101B and wireless terminal apparatus 202B. FIG. 18 shows a case where the threshold value Th2 in FIG. 16 is lower than the threshold value Th1. The amount of communication traffic falls below the threshold value Th1 at time T21. That is, the capacity booster base station 101B notifies the capacity booster base station 101A and the coverage base station 201 via the X2 interface at time T21 (steps S350 and S352 in FIG. 16).
 次に、キャパシティブースタ基地局101Bは、時間T22においてカバレッジ基地局201およびキャパシティブースタ基地局101Aから一時的配置情報更新応答の受信を完了する(図16におけるステップS358,S360)。 Next, the capacity booster base station 101B completes reception of the temporary location information update response from the coverage base station 201 and the capacity booster base station 101A at time T22 (steps S358 and S360 in FIG. 16).
 次に、通信トラフィック量は、時間T23においてしきい値Th2を下回るので、キャパシティブースタ基地局101Bは、時間T23において送信電波の電力を下げ始める(図16におけるステップS366)。 Next, since the amount of communication traffic falls below the threshold value Th2 at time T23, the capacity booster base station 101B starts to reduce the power of the transmission radio wave at time T23 (step S366 in FIG. 16).
 キャパシティブースタ基地局101Bは、時間T24においてハンドオーバ動作を完了する(図16におけるステップS368)。 The capacity booster base station 101B completes the handover operation at time T24 (step S368 in FIG. 16).
 以上のような動作により、キャパシティブースタ基地局101Bは、通信トラフィック量がしきい値Th2を下回る前に、自己が休止状態に遷移することをカバレッジ基地局201に対して確認できる。この結果、キャパシティブースタ基地局101Bは、通信トラフィック量がしきい値Th2を下回った際に、自己が休止状態に遷移することについてカバレッジ基地局201に対して確認をとる処理が不要となるので、直ちに送信電波の電力を下げることができる。すなわち、キャパシティブースタ基地局101Bは、図17におけるしきい値Th1およびしきい値Th2が同じ値を持つ場合より、速やかに休止状態に遷移することができる。 Through the operation as described above, the capacity booster base station 101B can confirm with the coverage base station 201 that the capacity booster base station 101B transitions to the dormant state before the communication traffic volume falls below the threshold value Th2. As a result, the capacity booster base station 101B does not need to confirm with the coverage base station 201 about the transition to the dormant state when the communication traffic amount falls below the threshold Th2. Immediately reduce the power of the transmitted radio wave. That is, capacity booster base station 101B can transition to a dormant state more quickly than when threshold value Th1 and threshold value Th2 in FIG. 17 have the same value.
 図19は、本発明の実施の形態に係る無線通信システムにおけるキャパシティブースタ基地局の休止状態への遷移がカバレッジ基地局により容認されない場合のシーケンスの一例を示す図である。 FIG. 19 is a diagram illustrating an example of a sequence in a case where the transition to the dormant state of the capacity booster base station in the wireless communication system according to the embodiment of the present invention is not permitted by the coverage base station.
 図19を参照して、まず、キャパシティブースタ基地局101Bは、活性状態である(ステップS402)。また、たとえば、無線端末装置202Bは、キャパシティブースタ基地局101Bを通信先として選択し、かつキャパシティブースタ基地局101Bと通信を行っている状態である(ステップS404)。 Referring to FIG. 19, first, capacity booster base station 101B is in an active state (step S402). In addition, for example, the wireless terminal device 202B is in a state where the capacity booster base station 101B is selected as a communication destination and is communicating with the capacity booster base station 101B (step S404).
 次に、キャパシティブースタ基地局101Bは、自己および無線端末装置202B間の通信トラフィック量を監視する(ステップS406)。たとえば、キャパシティブースタ基地局101Bは、自己および無線端末装置202B間の通信トラフィック量がしきい値Th1を下回ると、キャパシティブースタ基地局101Aおよびカバレッジ基地局201に対して以下の要求を通知することを決定する(ステップS408)。 Next, the capacity booster base station 101B monitors the amount of communication traffic between itself and the wireless terminal device 202B (step S406). For example, when the amount of communication traffic between itself and the wireless terminal device 202B falls below the threshold Th1, the capacity booster base station 101B notifies the capacity booster base station 101A and the coverage base station 201 of the following request. Is determined (step S408).
 すなわち、キャパシティブースタ基地局101Bは、一時的配置情報更新要求をキャパシティブースタ基地局101Aおよびカバレッジ基地局201に対してX2インタフェース経由で通知する(ステップS410,412)。この一時的配置情報更新要求には、キャパシティブースタ基地局101Bが休止状態へ遷移するという情報が含まれる。 That is, the capacity booster base station 101B notifies the temporary location information update request to the capacity booster base station 101A and the coverage base station 201 via the X2 interface (steps S410 and S412). This temporary arrangement information update request includes information that the capacity booster base station 101B transitions to a dormant state.
 次に、カバレッジ基地局201は、自己および自己と通信する各無線端末装置202間の通信トラフィック量を監視する(ステップS414)。カバレッジ基地局201は、たとえば、自己および自己と通信する各無線端末装置202間の通信トラフィック量が所定のしきい値を上回ると、受信した一時的配置情報更新要求を容認しないことを決定する(ステップS416)。 Next, the coverage base station 201 monitors the communication traffic amount between itself and each wireless terminal device 202 communicating with itself (step S414). The coverage base station 201 determines not to accept the received temporary location information update request when, for example, the amount of communication traffic between itself and each wireless terminal device 202 communicating with the coverage base station 201 exceeds a predetermined threshold ( Step S416).
 次に、カバレッジ基地局201は、キャパシティブースタ基地局101Bに対して一時的配置情報更新拒否(ENB Temporary Configuration Update Failure)をX2インタフェース経由で通知する(ステップS420)。 Next, the coverage base station 201 notifies the capacity booster base station 101B of temporary allocation information update rejection (ENB Temporary Configuration Update Failure) via the X2 interface (step S420).
 一方、キャパシティブースタ基地局101Aは、たとえば受信した一時的配置情報更新要求を容認すると、キャパシティブースタ基地局101Bに対して一時的配置情報更新応答をX2インタフェース経由で通知する(ステップS418)。 On the other hand, when the capacity booster base station 101A accepts the received temporary arrangement information update request, for example, the capacity booster base station 101A notifies the capacity booster base station 101B of a temporary arrangement information update response via the X2 interface (step S418).
 次に、キャパシティブースタ基地局101Bは、キャパシティブースタ基地局101AからX2インタフェース経由で一時的配置情報更新応答を受信する。また、キャパシティブースタ基地局101Bは、カバレッジ基地局201からX2インタフェース経由で一時的配置情報更新拒否を受信する。キャパシティブースタ基地局101Bは、一時的配置情報更新拒否を受信したことにより自己および無線端末装置202B間の通信トラフィック量がしきい値Th2を下回ると、休止状態へ遷移する前に所定時間待機することを決定する。そして、キャパシティブースタ基地局101Bは、引き続き自己および無線端末装置202B間の通信トラフィック量を監視する(ステップS422)。 Next, the capacity booster base station 101B receives a temporary arrangement information update response from the capacity booster base station 101A via the X2 interface. Further, the capacity booster base station 101B receives a temporary arrangement information update refusal from the coverage base station 201 via the X2 interface. The capacity booster base station 101B waits for a predetermined time before transitioning to the sleep state when the communication traffic volume between itself and the wireless terminal device 202B falls below the threshold value Th2 due to reception of the temporary location information update rejection. Decide that. Then, the capacity booster base station 101B continues to monitor the amount of communication traffic between itself and the wireless terminal device 202B (step S422).
 次に、たとえば、キャパシティブースタ基地局101Bおよび無線端末装置202B間の通信トラフィック量がしきい値Th2を下回ると(ステップS424)、キャパシティブースタ基地局101Bは、自己および無線端末装置202B間の通信を継続したまま所定時間待機する(ステップS426)。 Next, for example, when the amount of communication traffic between the capacity booster base station 101B and the wireless terminal device 202B falls below the threshold value Th2 (step S424), the capacity booster base station 101B determines that it is between itself and the wireless terminal device 202B. Wait for a predetermined time while continuing communication (step S426).
 次に、たとえば、キャパシティブースタ基地局101Bおよび無線端末装置202B間の通信トラフィック量が、所定時間待機している間に継続してしきい値Th2を下回ると、キャパシティブースタ基地局101Bは、自己の休止状態への遷移を決定する(ステップS428)。 Next, for example, when the amount of communication traffic between the capacity booster base station 101B and the wireless terminal device 202B continuously falls below the threshold Th2 while waiting for a predetermined time, the capacity booster base station 101B The transition to its own sleep state is determined (step S428).
 次に、キャパシティブースタ基地局101Bは、たとえば無線送信部94におけるアンプ11の増幅率を下げることにより、送信電波の電力を下げる(ステップS430)。この際、キャパシティブースタ基地局101Bは、図12に示す手順に従って送信電波の電力を下げてもよい。 Next, the capacity booster base station 101B reduces the power of the transmission radio wave by, for example, reducing the amplification factor of the amplifier 11 in the wireless transmission unit 94 (step S430). At this time, the capacity booster base station 101B may reduce the power of the transmission radio wave according to the procedure shown in FIG.
 キャパシティブースタ基地局101Bが送信する電波の電力が低下することにより、無線端末装置202Bにおけるキャパシティブースタ基地局101Bからの無線信号の受信電力は低下する。しかしながら、無線端末装置202Bにおけるカバレッジ基地局201から送信される無線信号の受信電力に大きな変化はない。 When the power of the radio wave transmitted from the capacity booster base station 101B decreases, the reception power of the radio signal from the capacity booster base station 101B in the wireless terminal device 202B decreases. However, there is no significant change in the reception power of the radio signal transmitted from the coverage base station 201 in the radio terminal device 202B.
 無線端末装置202Bは、各基地局からの無線信号の受信電力の測定結果を示す測定結果通知をキャパシティブースタ基地局101Bへ送信する。キャパシティブースタ基地局101Bは、受信した測定結果通知に基づいて、ハンドオーバ動作を実行する(ステップS432)。ハンドオーバ動作の手順は、図6に示すステップS6からステップS38の手順に従う。 The wireless terminal device 202B transmits a measurement result notification indicating the measurement result of the received power of the radio signal from each base station to the capacity booster base station 101B. The capacity booster base station 101B performs a handover operation based on the received measurement result notification (step S432). The procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
 次に、無線端末装置202Bは、上記ハンドオーバ動作によりカバレッジ基地局201を通信先として選択し、かつカバレッジ基地局201と通信を行っている状態となる(ステップS434)。 Next, the wireless terminal device 202B selects the coverage base station 201 as a communication destination by the handover operation and is in a state of communicating with the coverage base station 201 (step S434).
 また、キャパシティブースタ基地局101Bは、自己と通信していた無線端末装置202Bがハンドオーバ動作によりカバレッジ基地局201と通信するようになったことを確認すると、自己が休止状態に遷移することを周辺基地局に対して周知するために、以下の動作を行う。すなわち、キャパシティブースタ基地局101Bは、カバレッジ基地局201およびキャパシティブースタ基地局101Aに対して、X2インタフェース経由で配置情報更新要求を通知する(ステップS436,S438)。 In addition, the capacity booster base station 101B confirms that the wireless terminal device 202B communicating with itself has communicated with the coverage base station 201 by the handover operation, so that the capacity booster base station 101B In order to make known to the base station, the following operation is performed. That is, the capacity booster base station 101B notifies the coverage base station 201 and the capacity booster base station 101A of an arrangement information update request via the X2 interface (steps S436 and S438).
 次に、キャパシティブースタ基地局101Aは、キャパシティブースタ基地局101Bから配置情報更新要求をX2インタフェース経由で受信すると、自己の周辺セル情報を更新し、更新した旨を示す配置情報更新応答をキャパシティブースタ基地局101Bに対してX2インタフェース経由で通知する(ステップS440)。 Next, when the capacity booster base station 101A receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the capacity booster base station 101A updates its neighbor cell information and receives an arrangement information update response indicating that the update has been performed. The city booster base station 101B is notified via the X2 interface (step S440).
 また、カバレッジ基地局201は、キャパシティブースタ基地局101Bから配置情報更新要求をX2インタフェース経由で受信すると、自己の周辺セル情報を更新し、更新した旨を示す配置情報更新応答をキャパシティブースタ基地局101Bに対してX2インタフェース経由で通知する(ステップS442)。 When the coverage base station 201 receives an arrangement information update request from the capacity booster base station 101B via the X2 interface, the coverage base station 201 updates its neighbor cell information and sends an arrangement information update response indicating that it has been updated to the capacity booster base The station 101B is notified via the X2 interface (step S442).
 次に、キャパシティブースタ基地局101Bは、配置情報更新応答をX2インタフェース経由で受信すると、たとえば無線送信部94におけるアンプ11の増幅率を0にすることにより休止状態に遷移する(ステップS444)。 Next, when the capacity booster base station 101B receives the arrangement information update response via the X2 interface, the capacity booster base station 101B transitions to a dormant state, for example, by setting the amplification factor of the amplifier 11 in the wireless transmission unit 94 to 0 (step S444).
 図20は、本発明の実施の形態に係る無線通信システムにおける通信トラフィック量が待機動作中にしきい値Th2を上回る場合の通信トラフィック量の時間変化の一例を示す図である。 FIG. 20 is a diagram illustrating an example of a time change of the communication traffic amount when the communication traffic amount exceeds the threshold Th2 during the standby operation in the wireless communication system according to the embodiment of the present invention.
 図20を参照して、横軸は時間、縦軸はキャパシティブースタ基地局101Bおよび無線端末装置202B間の通信トラフィック量を表す。図20は、図19におけるしきい値Th2がしきい値Th1より低い場合を示している。たとえば、通信トラフィック量が、時間T31においてしきい値Th1を下回ると、キャパシティブースタ基地局101Bは、時間T31において一時的配置情報更新要求をキャパシティブースタ基地局101Aおよびカバレッジ基地局201に対してX2インタフェース経由で通知する(図19におけるステップS410,S412)。 Referring to FIG. 20, the horizontal axis represents time, and the vertical axis represents the amount of communication traffic between capacity booster base station 101B and wireless terminal apparatus 202B. FIG. 20 shows a case where the threshold value Th2 in FIG. 19 is lower than the threshold value Th1. For example, when the amount of communication traffic falls below the threshold value Th1 at time T31, the capacity booster base station 101B sends a temporary location information update request to the capacity booster base station 101A and the coverage base station 201 at time T31. Notification is made via the X2 interface (steps S410 and S412 in FIG. 19).
 次に、キャパシティブースタ基地局101Bは、時間T32においてカバレッジ基地局201から一時的配置情報更新拒否を受信する(図16におけるステップS420)。 Next, the capacity booster base station 101B receives a temporary arrangement information update refusal from the coverage base station 201 at time T32 (step S420 in FIG. 16).
 次に、たとえば、通信トラフィック量が時間T33においてしきい値Th2を下回ると、キャパシティブースタ基地局101Bは、時間T33から待機動作終了予定時間T35まで待機動作に入る(図16におけるステップS426)。この際、カバレッジ基地局201における通信トラフィック量が所定のしきい値を上回っているので(図16におけるステップS416)、キャパシティブースタ基地局101Bにおける通信トラフィック量は、増加する可能性が高い。 Next, for example, when the amount of communication traffic falls below threshold value Th2 at time T33, capacity booster base station 101B enters standby operation from time T33 to standby operation end scheduled time T35 (step S426 in FIG. 16). At this time, since the amount of communication traffic in the coverage base station 201 exceeds a predetermined threshold (step S416 in FIG. 16), the amount of communication traffic in the capacity booster base station 101B is likely to increase.
 次に、たとえば、通信トラフィック量が待機動作終了予定時間T35より前の時間T34においてしきい値Th2を上回ると、キャパシティブースタ基地局101Bは、活性状態を継続する。 Next, for example, when the amount of communication traffic exceeds the threshold Th2 at a time T34 before the standby operation end scheduled time T35, the capacity booster base station 101B continues to be in an active state.
 以上のような動作により、トラフィック量に応じた適切な動作を行うことができる。具体的には、カバレッジ基地局201における通信トラフィック量が多い場合、ある時点でキャパシティブースタ基地局101におけるトラフィック量が少なくても、しばらくするとキャパシティブースタ基地局101におけるトラフィック量が多くなる場合がある。このような場合、たとえば、キャパシティブースタ基地局101が、自己における通信トラフィック量がしきい値Th2を下回った際に速やかに休止状態へ遷移すると、カバレッジ基地局201における通信トラフィック量が、所定のしきい値を上回る可能性がある。この場合、カバレッジ基地局201は、セル活性化要求をキャパシティブースタ基地局101へ送信する。キャパシティブースタ基地局101は、カバレッジ基地局201からセル活性化要求を受けると、再度活性状態へ遷移することになる。すなわち、キャパシティブースタ基地局101は、活性状態から休止状態へ遷移して、直ぐに活性状態へ戻るという、無駄な動作を行うことになる。 By the above operation, an appropriate operation according to the traffic volume can be performed. Specifically, when the communication traffic amount in the coverage base station 201 is large, the traffic amount in the capacity booster base station 101 may increase after a while even if the traffic amount in the capacity booster base station 101 is small at a certain time. is there. In such a case, for example, when the capacity booster base station 101 quickly transitions to a dormant state when the communication traffic volume in itself falls below the threshold value Th2, the communication traffic volume in the coverage base station 201 becomes a predetermined value. The threshold may be exceeded. In this case, the coverage base station 201 transmits a cell activation request to the capacity booster base station 101. When the capacity booster base station 101 receives a cell activation request from the coverage base station 201, the capacity booster base station 101 transitions to the active state again. That is, the capacity booster base station 101 performs a useless operation of transitioning from the active state to the dormant state and immediately returning to the active state.
 このような場合においても、キャパシティブースタ基地局101は、自己における通信トラフィック量がしきい値Th2を下回っても、通信トラフィック量がしきい値Th2未満である状態が所定時間継続しない場合は活性状態を継続することにより、上記無駄な動作の発生を抑えることができる。すなわち、キャパシティブースタ基地局101は、休止状態へ遷移することなく継続して無線信号を送受信することができる。 Even in such a case, the capacity booster base station 101 is active if the communication traffic volume is less than the threshold value Th2 and the state where the communication traffic volume is less than the threshold value Th2 does not continue for a predetermined time. By continuing the state, it is possible to suppress the occurrence of the useless operation. That is, the capacity booster base station 101 can transmit and receive radio signals continuously without transitioning to a dormant state.
 また、カバレッジ基地局201における通信トラフィック量が少ない場合には、キャパシティブースタ基地局101は、カバレッジ基地局201におけるトラフィック量が少ないことを確認した上で、休止状態へ遷移できる。すなわち、キャパシティブースタ基地局101は、休止状態へ遷移した後に、カバレッジ基地局201により再度活性状態へ遷移させられる可能性が低い状態であることを確認した上で、休止状態へ遷移できる。 Also, when the communication traffic amount in the coverage base station 201 is small, the capacity booster base station 101 can make a transition to a dormant state after confirming that the traffic amount in the coverage base station 201 is small. That is, the capacity booster base station 101 can transition to the dormant state after confirming that the coverage booster base station 101 is in a state where it is unlikely that the coverage base station 201 can transition to the active state again.
 また、キャパシティブースタ基地局101は、休止状態へ遷移する旨を含む一時的配置情報更新要求にする応答として、カバレッジ基地局201におけるトラフィック量に応じた応答を受ける。これにより、キャパシティブースタ基地局101は、当該応答に応じて、休止状態へ遷移するまでの動作手順を変えることができる。 Also, the capacity booster base station 101 receives a response corresponding to the traffic amount in the coverage base station 201 as a response to make a temporary arrangement information update request including a transition to the dormant state. Thereby, capacity booster base station 101 can change the operation | movement procedure until it changes to a dormant state according to the said response.
 具体的には、カバレッジ基地局201は、自己および自己と通信する各無線端末装置202間の通信トラフィック量が所定のしきい値を下回ると、図16のステップS360に示す一時的配置情報更新応答をキャパシティブースタ基地局101へ送信する。また、カバレッジ基地局201は、当該通信トラフィック量が所定のしきい値を上回ると、図19のステップS420に示す一時的配置情報更新拒否をキャパシティブースタ基地局101へ送信する。 Specifically, when the amount of communication traffic between itself and each of the wireless terminal devices 202 communicating with the coverage base station 201 falls below a predetermined threshold, the coverage base station 201 responds to the temporary location information update response shown in step S360 of FIG. Is transmitted to the capacity booster base station 101. Further, when the amount of communication traffic exceeds a predetermined threshold, the coverage base station 201 transmits a temporary arrangement information update refusal shown in step S420 of FIG. 19 to the capacity booster base station 101.
 キャパシティブースタ基地局101は、一時的配置情報更新応答をカバレッジ基地局201から受けると、自己における通信トラフィック量がしきい値Th2を下回ると、すぐに休止状態へ遷移するための処理を行う。一方、キャパシティブースタ基地局101は、一時的配置情報更新拒否をカバレッジ基地局201から受けると、自己における通信トラフィック量がしきい値Th2を下回っても、すぐに休止状態へ遷移するための処理を行わず、待機動作を所定時間行う。 When the capacity booster base station 101 receives a temporary location information update response from the coverage base station 201, the capacity booster base station 101 immediately performs processing for transitioning to a dormant state when the communication traffic amount in itself falls below the threshold Th2. On the other hand, when the capacity booster base station 101 receives the temporary allocation information update refusal from the coverage base station 201, the capacity booster base station 101 immediately transitions to the dormant state even if the communication traffic amount in itself falls below the threshold Th2. The standby operation is performed for a predetermined time.
 すなわち、キャパシティブースタ基地局101は、カバレッジ基地局201におけるトラフィック量に応じた応答に応じて、休止状態へ遷移するまでの動作手順を変えることができる。 That is, the capacity booster base station 101 can change the operation procedure until transition to the dormant state according to the response according to the traffic amount in the coverage base station 201.
 なお、図16から図20において示した、しきい値Th1、しきい値Th2および待機動作時間を定める所定時間の3つのパラメータについては、以下のように設定されていてもよい。すなわち、キャパシティブースタ基地局101は、予め初期値が与えられた上で図示しない記憶部において保持されている上記パラメータを用いる。また、上記パラメータは、上位装置による書換えが可能であってもよい。 It should be noted that the three parameters of threshold time Th1, threshold value Th2, and predetermined time for determining the standby operation time shown in FIGS. 16 to 20 may be set as follows. That is, the capacity booster base station 101 uses the above-mentioned parameters that are stored in a storage unit (not shown) after an initial value is given in advance. Further, the parameter may be rewritable by a host device.
[通信の優先度に応じた送信電力制御の例]
 ところで、無線端末装置202が通話における音声データまたは動画配信における映像データなどの優先度の高い通信を行う場合、無線端末装置202は、より高速に通信できる無線基地局装置を選択することが望ましい。たとえば、無線端末装置202は、自己より遠方に位置するカバレッジ基地局201でなく、自己の近傍に位置するキャパシティブースタ基地局101を通信先として選択することにより、通信を安定かつ高速に行える可能性がある。これは、無線端末装置202は近傍に位置する無線基地局装置とは大きい電力で無線信号を送受信できるので通信が安定かつ高速に行えること、およびキャパシティブースタ基地局101における通信トラフィック量に余裕があることが期待できることによる。そこで、以下のような動作により上記問題を解決する。
[Example of transmission power control according to communication priority]
By the way, when the wireless terminal device 202 performs high-priority communication such as voice data in a call or video data in moving image distribution, the wireless terminal device 202 desirably selects a wireless base station device that can communicate at higher speed. For example, the wireless terminal device 202 can perform communication stably and at high speed by selecting the capacity booster base station 101 located in the vicinity of itself instead of the coverage base station 201 located far from itself as a communication destination. There is sex. This is because the wireless terminal device 202 can transmit and receive wireless signals with a large amount of power with a wireless base station device located in the vicinity, so that communication can be performed stably and at high speed, and there is a margin in the amount of communication traffic in the capacity booster base station 101. It depends on what can be expected. Therefore, the above problem is solved by the following operation.
 図21は、本発明の実施の形態に係る無線通信システムにおけるキャパシティブースタ基地局が無線端末装置からの要求により活性状態へ遷移する際のシーケンスの一例を示す図である。 FIG. 21 is a diagram showing an exemplary sequence when the capacity booster base station in the wireless communication system according to the embodiment of the present invention transitions to an active state in response to a request from the wireless terminal device.
 図21を参照して、まず、キャパシティブースタ基地局101A,101Bは、休止状態である(ステップS464,S466)。また、たとえば、無線端末装置202Bは、カバレッジ基地局201を通信先として選択し、かつカバレッジ基地局201と通信を行っている状態である(ステップS462)。 Referring to FIG. 21, first, capacity booster base stations 101A and 101B are in a dormant state (steps S464 and S466). Further, for example, the wireless terminal device 202B is in a state in which the coverage base station 201 is selected as a communication destination and is communicating with the coverage base station 201 (step S462).
 無線端末装置202Bは、たとえば所定条件が満たされた場合、近傍に位置するキャパシティブースタ基地局101を通信に利用することを決定し、キャパシティブースタ基地局活性化要求をカバレッジ基地局201へ送信する(ステップS468)。このキャパシティブースタ基地局活性化要求には、休止状態にあるキャパシティブースタ基地局101をカバレッジ基地局201により活性状態に遷移させるという無線端末装置202Bの要求が含まれる。 For example, when a predetermined condition is satisfied, the wireless terminal device 202B determines to use the capacity booster base station 101 located in the vicinity for communication, and transmits a capacity booster base station activation request to the coverage base station 201. (Step S468). This capacity booster base station activation request includes a request from the wireless terminal device 202B to cause the capacity base booster base station 101 in a dormant state to transition to the active state by the coverage base station 201.
 また、所定条件が満たされる場合としては、以下の場合が考えられる。たとえば、無線端末装置202Bの利用者が高い通信速度をセールスポイントにしたグレードの高い通信プランに加入している場合、無線端末装置202Bは、安定かつ高速な通信を実現するためにキャパシティブースタ基地局活性化要求をカバレッジ基地局201へ送信するステップS468を実行する。 Also, the following cases can be considered as the case where the predetermined condition is satisfied. For example, when a user of the wireless terminal device 202B subscribes to a high-grade communication plan with a high communication speed as a selling point, the wireless terminal device 202B uses a capacity booster base to realize stable and high-speed communication. Step S468 of transmitting a station activation request to the coverage base station 201 is executed.
 また、無線端末装置202Bが自己のGPS(Global Positioning System)機能によりキャパシティブースタ基地局により形成されるキャパシティブースタセル内への自己の進入を検知した場合、無線端末装置202Bは、当該キャパシティブースタ基地局と安定かつ高速な通信を行うことが期待できるので、キャパシティブースタ基地局活性化要求をカバレッジ基地局201へ送信する。 In addition, when the wireless terminal device 202B detects its own entry into the capacity booster cell formed by the capacity booster base station by its own GPS (Global Positioning System) function, the wireless terminal device 202B Since stable and high-speed communication with the booster base station can be expected, a capacity booster base station activation request is transmitted to the coverage base station 201.
 また、無線端末装置202Bは、救命救急など緊急時における通信のように公益に資する通信が無線端末装置202により行われる場合、安定かつ高速な通信を行うためにキャパシティブースタ基地局活性化要求をカバレッジ基地局201へ送信する。 In addition, when communication that contributes to the public interest is performed by the wireless terminal device 202 such as emergency communication such as lifesaving emergency, the wireless terminal device 202B issues a capacity booster base station activation request in order to perform stable and high-speed communication. Transmit to coverage base station 201.
 また、以下の状況のように所定レベル以上の優先度のデータを含む通信を行う必要が生じた場合、無線端末装置202Bは、安定かつ高速な通信を実現するためにキャパシティブースタ基地局活性化要求をカバレッジ基地局201へ送信する。 In addition, when it becomes necessary to perform communication including data having a priority level equal to or higher than a predetermined level as in the following situation, the wireless terminal device 202B activates the capacity booster base station in order to realize stable and high-speed communication. The request is transmitted to the coverage base station 201.
 具体的には、通信により送受信されるIPパケットには、当該IPパケットの優先度を示すQCIが付随する。そして、無線端末装置202Bは、TCP/IPにおいて送受信されるIPパケットにおけるQCIフィールドを監視し、QCIが所定のしきい値以上である場合、キャパシティブースタ基地局活性化要求をカバレッジ基地局201へ送信する。 Specifically, an IP packet transmitted / received by communication is accompanied by a QCI indicating the priority of the IP packet. Then, the wireless terminal device 202B monitors the QCI field in the IP packet transmitted / received in TCP / IP, and when the QCI is equal to or greater than a predetermined threshold, a capacity booster base station activation request is sent to the coverage base station 201. Send.
 あるいは、無線端末装置202Bは、所定のアプリケーションの起動を監視し、当該アプリケーションが起動された場合、キャパシティブースタ基地局活性化要求をカバレッジ基地局201へ送信する。 Alternatively, the wireless terminal device 202B monitors the activation of a predetermined application, and transmits a capacity booster base station activation request to the coverage base station 201 when the application is activated.
 あるいは、無線端末装置202Bは、ある時間帯において優先度の高い通信を行う割合が高いことが分かっている場合、当該時間になった場合に、キャパシティブースタ基地局活性化要求をカバレッジ基地局201へ送信する。 Alternatively, when it is known that the ratio of performing high priority communication in a certain time zone is high, the wireless terminal device 202B issues a capacity booster base station activation request when the time is reached. Send to.
 カバレッジ基地局201は、無線端末装置202Bからキャパシティブースタ基地局活性化要求を受信して、休止状態にあるキャパシティブースタ基地局101A,101Bを活性状態に遷移させることを決定する(ステップS470)。 The coverage base station 201 receives the capacity booster base station activation request from the wireless terminal device 202B, and determines to shift the capacity booster base stations 101A and 101B in the dormant state to the active state (step S470). .
 次に、カバレッジ基地局201は、キャパシティブースタ基地局101Aに対して、X2インタフェース経由でセル活性化要求を通知する(ステップS472)。また、カバレッジ基地局201は、キャパシティブースタ基地局101Bに対して、X2インタフェース経由でセル活性化要求を通知する(ステップS474)。 Next, the coverage base station 201 notifies the capacity booster base station 101A of a cell activation request via the X2 interface (step S472). Further, the coverage base station 201 notifies the capacity booster base station 101B of a cell activation request via the X2 interface (step S474).
 次に、キャパシティブースタ基地局101Aは、カバレッジ基地局201からX2インタフェース経由でセル活性化要求の通知を受信して、通知を受信した旨の確認のためにカバレッジ基地局201に対して、X2インタフェース経由でセル活性化応答を通知する(ステップS476)。また、キャパシティブースタ基地局101Bは、カバレッジ基地局201からX2インタフェース経由でセル活性化要求の通知を受信して、通知を受信した旨の確認のためにカバレッジ基地局201に対して、X2インタフェース経由でセル活性化応答を通知する(ステップS478)。 Next, the capacity booster base station 101A receives the notification of the cell activation request from the coverage base station 201 via the X2 interface, and confirms that the notification has been received with respect to the coverage base station 201 using the X2 A cell activation response is notified via the interface (step S476). Further, the capacity booster base station 101B receives the notification of the cell activation request from the coverage base station 201 via the X2 interface, and confirms that the notification has been received with respect to the coverage base station 201. A cell activation response is notified via (step S478).
 次に、キャパシティブースタ基地局101A,101Bは、たとえば無線送信部94におけるアンプ11の増幅率を上げることにより、送信電波の電力を上げる(ステップS480,482)。この際、キャパシティブースタ基地局101A,101Bは、図14に示す手順に従って送信電波の電力を上げてもよい。 Next, the capacity booster base stations 101A and 101B increase the power of the transmission radio wave, for example, by increasing the amplification factor of the amplifier 11 in the wireless transmission unit 94 (steps S480 and 482). At this time, the capacity booster base stations 101A and 101B may increase the power of the transmission radio wave according to the procedure shown in FIG.
 キャパシティブースタ基地局101Bが送信電波の電力を上げることにより、無線端末装置202Bにおけるキャパシティブースタ基地局101Bから送信される無線信号の受信電力は増大する。しかしながら、無線端末装置202Bにおけるカバレッジ基地局201から送信される無線信号の受信電力に大きな変化はない。 When the capacity booster base station 101B increases the power of the transmission radio wave, the reception power of the radio signal transmitted from the capacity booster base station 101B in the wireless terminal device 202B increases. However, there is no significant change in the reception power of the radio signal transmitted from the coverage base station 201 in the radio terminal device 202B.
 無線端末装置202Bは、各基地局からの無線信号の受信電力の測定結果を示す測定結果通知をカバレッジ基地局201へ送信する。カバレッジ基地局201は、受信した測定結果通知に基づいて、ハンドオーバ動作を実行する(ステップS484)。ハンドオーバ動作の手順は、図6に示すステップS6からステップS38の手順に従う。 The wireless terminal device 202B transmits a measurement result notification indicating the measurement result of the received power of the radio signal from each base station to the coverage base station 201. The coverage base station 201 performs a handover operation based on the received measurement result notification (step S484). The procedure of the handover operation follows the procedure from step S6 to step S38 shown in FIG.
 次に、無線端末装置202Bは、上記ハンドオーバ動作によりキャパシティブースタ基地局101Bを通信先として選択し、かつキャパシティブースタ基地局101Bと通信を行っている状態となる(ステップS486)。 Next, the wireless terminal device 202B selects the capacity booster base station 101B as a communication destination by the handover operation and is in communication with the capacity booster base station 101B (step S486).
 一方、キャパシティブースタ基地局101Aは、自己および自己と通信する無線端末装置202間の通信トラフィック量を監視する(ステップS488)。たとえば、キャパシティブースタ基地局101Aは、自己および自己と通信する無線端末装置202間の通信トラフィック量が所定のしきい値を下回ると、自己の休止状態への遷移を決定する(ステップS490)。 Meanwhile, the capacity booster base station 101A monitors the amount of communication traffic between itself and the wireless terminal device 202 communicating with itself (step S488). For example, the capacity booster base station 101A determines its transition to the dormant state when the amount of communication traffic between itself and the wireless terminal device 202 communicating with itself falls below a predetermined threshold (step S490).
 次に、キャパシティブースタ基地局101Aは、たとえば無線送信部94におけるアンプ11の増幅率を下げることにより、送信電波の電力を下げる(ステップS492)。この際、キャパシティブースタ基地局101Aは、図12に示す手順に従って送信電波の電力を下げてもよい。 Next, the capacity booster base station 101A reduces the power of the transmission radio wave, for example, by reducing the amplification factor of the amplifier 11 in the wireless transmission unit 94 (step S492). At this time, the capacity booster base station 101A may reduce the power of the transmission radio wave according to the procedure shown in FIG.
 キャパシティブースタ基地局101Aは、送信電波の電力を下げることにより自己を選択していた無線端末装置202の全てがハンドオーバにより他の無線基地局装置を選択したことを確認すると、以下の動作を行う。 When the capacity booster base station 101A confirms that all of the wireless terminal apparatuses 202 that have selected itself by reducing the power of the transmission radio wave have selected another wireless base station apparatus by handover, the capacity booster base station 101A performs the following operation. .
 すなわち、キャパシティブースタ基地局101Aは、自己が休止状態に遷移することを周辺基地局に対して周知するために、カバレッジ基地局201およびキャパシティブースタ基地局101Bに対して、X2インタフェース経由で配置情報更新要求を通知する(ステップS494,S496)。 That is, the capacity booster base station 101A is arranged via the X2 interface with respect to the coverage base station 201 and the capacity booster base station 101B in order to inform the neighboring base stations that it will transition to a dormant state. An information update request is notified (steps S494, S496).
 次に、キャパシティブースタ基地局101Bは、キャパシティブースタ基地局101Aから配置情報更新要求をX2インタフェース経由で受信すると、自己の周辺セル情報を更新し、更新した旨を示す配置情報更新応答をキャパシティブースタ基地局101Aに対してX2インタフェース経由で通知する(ステップS498)。 Next, when the capacity booster base station 101B receives an arrangement information update request from the capacity booster base station 101A via the X2 interface, the capacity booster base station 101B updates its own neighboring cell information and receives an arrangement information update response indicating that the update has been performed. The city booster base station 101A is notified via the X2 interface (step S498).
 また、カバレッジ基地局201は、キャパシティブースタ基地局101Aから配置情報更新要求をX2インタフェース経由で受信すると、自己の周辺セル情報を更新し、更新した旨を示す配置情報更新応答をキャパシティブースタ基地局101Aに対してX2インタフェース経由で通知する(ステップS500)。 When the coverage base station 201 receives an arrangement information update request from the capacity booster base station 101A via the X2 interface, the coverage base station 201 updates its neighbor cell information and sends an arrangement information update response indicating that the capacity booster base station has updated. The station 101A is notified via the X2 interface (step S500).
 次に、キャパシティブースタ基地局101Aは、配置情報更新応答をX2インタフェース経由で受信すると、たとえば無線送信部94におけるアンプ11の増幅率を0にすることにより休止状態に遷移する(ステップS502)。 Next, when the capacity booster base station 101A receives the arrangement information update response via the X2 interface, the capacity booster base station 101A transitions to a dormant state by setting the amplification factor of the amplifier 11 in the wireless transmission unit 94 to 0, for example (step S502).
 以上のような動作により、無線端末装置202Bは、所定条件が満たされるとキャパシティブースタ基地局101Bを活性状態に遷移させることにより、カバレッジ基地局201からの電波の受信電力よりも大きな電力で自己が電波を受信できるキャパシティブースタ基地局101Bへ通信先を変更することができる。そして、無線端末装置202Bは、カバレッジ基地局201からの電波の受信電力と比べて大きな電力でキャパシティブースタ基地局101Bからの電波を受信することができ、また、当該キャパシティブースタ基地局101Bにおける通信チャネル等の無線リソースを占有して使用することが期待できるので、通信を安定かつ高速に行うことができる。 Through the operation as described above, the wireless terminal device 202B shifts the capacity booster base station 101B to an active state when a predetermined condition is satisfied, thereby self-powering the wireless terminal device 202B with power larger than the reception power of the radio wave from the coverage base station 201. Can change the communication destination to the capacity booster base station 101B capable of receiving radio waves. And the radio | wireless terminal apparatus 202B can receive the electromagnetic wave from capacity booster base station 101B with big electric power compared with the reception power of the electromagnetic wave from coverage base station 201, Moreover, in the said capacity booster base station 101B Since it can be expected to occupy and use radio resources such as communication channels, communication can be performed stably and at high speed.
 また、無線端末装置202Bは、キャパシティブースタ基地局101Bを活性状態へ遷移させる適切な条件である所定レベル以上の優先度のデータを含む通信を行う必要が生じた際に、カバレッジ基地局201からの電波の受信電力よりも大きな電力で自己が電波を受信できるキャパシティブースタ基地局101Bへ通信先を変更することができる。無線端末装置202Bは、カバレッジ基地局201からの電波の受信電力と比べて大きな電力でキャパシティブースタ基地局101Bからの電波を受信することができ、また、当該キャパシティブースタ基地局101Bにおける通信チャネル等の無線リソースを占有して使用することが期待できるので、通信を安定かつ高速に行うことができる。 In addition, when the wireless terminal device 202B needs to perform communication including data having a priority level equal to or higher than a predetermined level, which is an appropriate condition for causing the capacity booster base station 101B to transition to the active state, the wireless terminal device 202B The communication destination can be changed to the capacity booster base station 101B that can receive radio waves with power larger than the received power of radio waves. The wireless terminal device 202B can receive radio waves from the capacity booster base station 101B with higher power than the received power of radio waves from the coverage base station 201, and a communication channel in the capacity booster base station 101B. Therefore, it can be expected to occupy and use wireless resources such as, so that communication can be performed stably and at high speed.
 しかしながら、無線端末装置202Bがキャパシティブースタ基地局101Bを通信先として選択し、優先度の高い通信を高速に行っている場合に(図21のステップS486)、以下の問題を生ずる可能性がある。すなわち、キャパシティブースタ基地局101Bは、自己および自己と通信する無線端末装置202B間の通信トラフィック量を監視し、当該通信トラフィック量が所定のしきい値を下回ると休止状態に遷移する。キャパシティブースタ基地局101Bが休止状態に遷移すれば、無線端末装置202Bは、キャパシティブースタ基地局101Bと優先度の高い通信を高速に行うことができなくなる。そこで、以下のような動作により上記問題を解決する。 However, when the wireless terminal device 202B selects the capacity booster base station 101B as a communication destination and performs high-priority communication at high speed (step S486 in FIG. 21), the following problem may occur. . That is, the capacity booster base station 101B monitors the amount of communication traffic between itself and the wireless terminal device 202B communicating with itself, and transitions to a dormant state when the amount of communication traffic falls below a predetermined threshold. If the capacity booster base station 101B transitions to the dormant state, the wireless terminal device 202B cannot perform high-priority communication with the capacity booster base station 101B at high speed. Therefore, the above problem is solved by the following operation.
 図22は、本発明の実施の形態に係る無線通信システムにおける優先度の高い通信を行っているキャパシティブースタ基地局が休止状態へ遷移する際の動作手順を定めたフローチャートである。 FIG. 22 is a flowchart defining an operation procedure when a capacity booster base station performing high-priority communication in the wireless communication system according to the embodiment of the present invention transitions to a dormant state.
 図22を参照して、キャパシティブースタ基地局101Bは、活性状態であり、電波を送信している(ステップS522)。 Referring to FIG. 22, capacity booster base station 101B is in an active state and is transmitting radio waves (step S522).
 次に、キャパシティブースタ基地局101Bは、自己および自己を選択している無線端末装置202B間において送受信されるIPパケットのQCIフィールドを監視し、各優先度の単位時間当たりのトラフィック量を取得する(ステップS524)。 Next, the capacity booster base station 101B monitors the QCI field of the IP packet transmitted / received between itself and the wireless terminal device 202B that has selected itself, and acquires the traffic amount per unit time of each priority. (Step S524).
 次に、キャパシティブースタ基地局101Bは、取得した各優先度の単位時間当たりのトラフィック量を合計することにより単位時間当たりの通信トラフィック量を算出し、算出した通信トラフィック量が所定のしきい値を下回るかどうか判定する(ステップS526)。 Next, the capacity booster base station 101B calculates the communication traffic amount per unit time by totaling the traffic amounts per unit time of the obtained priorities, and the calculated communication traffic amount is a predetermined threshold value. It is determined whether or not below (step S526).
 算出した通信トラフィック量が所定のしきい値を下回らない場合、キャパシティブースタ基地局101Bは、引き続きIPパケットのQCIフィールドを監視し、各優先度の単位時間当たりのトラフィック量を取得する(ステップS526でNO)。 If the calculated communication traffic volume does not fall below the predetermined threshold, the capacity booster base station 101B continues to monitor the QCI field of the IP packet and obtains the traffic volume per unit time for each priority (step S526). NO).
 算出した通信トラフィック量が所定のしきい値を下回ると(ステップS526でYES)、キャパシティブースタ基地局101Bは、所定レベル以上の優先度のトラフィックが自己および自己を選択している無線端末装置202B間の通信において存在するかどうか判定する(ステップS528)。 When the calculated communication traffic amount falls below a predetermined threshold (YES in step S526), the capacity booster base station 101B determines that the traffic with a priority level equal to or higher than a predetermined level is the wireless terminal device 202B that has selected itself and itself. It is determined whether or not there is communication in between (step S528).
 所定レベル以上の優先度のトラフィックが存在すると(ステップS528でYES)、キャパシティブースタ基地局101Bは、引き続きIPパケットのQCIフィールドを監視し、各優先度の単位時間当たりのトラフィック量を取得する(ステップS524)。なお、キャパシティブースタ基地局101Bは、自己および自己を選択している無線端末装置202B間の通信において、たとえば救命救急などの緊急時における通信が行われている場合、所定レベル以上の優先度のトラフィックが存在する場合と同じ処理を行ってもよい。すなわち、キャパシティブースタ基地局101Bは、上記通信において緊急時における通信が行われている場合(ステップS528でYES)、引き続きステップS524に示す、IPパケットのQCIフィールドを監視し、各優先度の単位時間当たりのトラフィック量を取得する処理を行ってもよい。 If there is traffic having a priority level equal to or higher than a predetermined level (YES in step S528), the capacity booster base station 101B continues to monitor the QCI field of the IP packet and obtains the traffic amount per unit time of each priority ( Step S524). Note that the capacity booster base station 101B has a priority of a predetermined level or higher when communication is performed in an emergency such as lifesaving, for example, in communication between itself and the wireless terminal device 202B that has selected itself. The same processing as when there is traffic may be performed. That is, the capacity booster base station 101B continuously monitors the QCI field of the IP packet shown in step S524 and performs the priority unit when the emergency communication is performed in the above communication (YES in step S528). You may perform the process which acquires the traffic amount per time.
 所定レベル以上の優先度のトラフィックが存在しないと(ステップS528でNO)、キャパシティブースタ基地局101Bは、休止状態に遷移する(ステップS530)。この際、キャパシティブースタ基地局101Bは、図12に示す手順に従って送信電波の電力を下げてもよい。 If there is no priority level or higher traffic (NO in step S528), the capacity booster base station 101B transitions to a dormant state (step S530). At this time, the capacity booster base station 101B may reduce the power of the transmission radio wave according to the procedure shown in FIG.
 以上のような動作により、キャパシティブースタ基地局101Bは、優先度の高い通信を行っている場合には、自己における通信のトラフィック量が所定のしきい値未満であっても当該通信を継続する。また、キャパシティブースタ基地局101Bは、優先度の高い通信を行っていない場合には、自己における通信のトラフィック量が所定のしきい値未満であれば当該通信を停止し、休止状態へ遷移する。これにより、キャパシティブースタ基地局101Bは、活性状態の継続または休止状態への遷移について、高い優先度の通信の有無に応じた適切な判断を行うことができる。 Through the operation as described above, the capacity booster base station 101B continues the communication even when the traffic amount of the communication in the capacity booster base station 101B is less than a predetermined threshold when performing communication with high priority. . In addition, when the high-priority communication is not performed, the capacity booster base station 101B stops the communication and shifts to a dormant state if the traffic volume of the communication in itself is less than a predetermined threshold value. . As a result, the capacity booster base station 101B can make an appropriate determination according to the presence or absence of high-priority communication regarding the continuation of the active state or the transition to the dormant state.
 なお、図22に示した動作手順が適用されるキャパシティブースタ基地局101は、図21に示したキャパシティブースタ基地局101B、すなわち、無線端末装置202によるキャパシティブースタ基地局活性化要求を受けたカバレッジ基地局201により、活性状態へ遷移したキャパシティブースタ基地局101に限定されない。キャパシティブースタ基地局101が、優先度の高い通信を行っている場合は、自己における通信のトラフィック量が所定のしきい値未満であっても当該通信を継続するという判断は、たとえば、図11、図12および図16~図20に示したキャパシティブースタ基地局101Bにおいて行われてもよい。 Note that the capacity booster base station 101 to which the operation procedure shown in FIG. 22 is applied receives the capacity booster base station activation request from the capacity booster base station 101B shown in FIG. The coverage base station 201 is not limited to the capacity booster base station 101 that has transitioned to the active state. When the capacity booster base station 101 is performing high-priority communication, for example, the determination that the communication is continued even if the traffic volume of the communication is less than a predetermined threshold is shown in FIG. 12 may be performed in the capacity booster base station 101B shown in FIGS.
 ところで、カバレッジ基地局201により形成されるカバレッジセル内に、キャパシティブースタ基地局101により形成される、より小さな複数のキャパシティブースタセルを配置して構成する無線エリアにおいて、以下の問題が発生する可能性がある。 By the way, the following problems occur in a radio area in which a plurality of smaller capacity booster cells formed by the capacity booster base station 101 are arranged in the coverage cell formed by the coverage base station 201. there is a possibility.
 通信トラフィック量の変動により停止していたあるキャパシティブースタ基地局101を稼働させると、稼働させたキャパシティブースタ基地局101のエリア内において、カバレッジ基地局201と無線端末装置202の間で以前より行われていた通信が、キャパシティブースタ基地局101からの無線信号の干渉により切断する。すなわち、当該キャパシティブースタ基地局101近傍に位置する無線端末装置202は、当該キャパシティブースタ基地局101から大電力の無線信号を受信することになるので、無線端末装置202は、カバレッジ基地局201からの小電力の無線信号を受信できなくなり無線ネットワークから切断される。 When a capacity booster base station 101 that has been stopped due to fluctuations in the amount of communication traffic is operated, within the area of the capacity booster base station 101 that has been operated, between the coverage base station 201 and the wireless terminal device 202 than before. The communication that has been performed is disconnected due to radio signal interference from the capacity booster base station 101. That is, since the wireless terminal device 202 located in the vicinity of the capacity booster base station 101 receives a high-power wireless signal from the capacity booster base station 101, the wireless terminal device 202 The wireless signal with low power cannot be received and the wireless network is disconnected.
 また、同様に、通信トラフィック量の変動により、稼働していたあるキャパシティブースタ基地局101を突然停止させると、当該キャパシティブースタ基地局101および無線端末装置202間の通信が切断される。すなわち、キャパシティブースタ基地局101が、休止状態に遷移する際に送信電波の電力を急激に下げると確立していた自己と無線端末装置202との間の通信が途絶えてしまうので、キャパシティブースタ基地局101を選択していた無線端末装置202は、通信が途絶えることにより他の無線基地局装置へのハンドオーバ動作に移ることができない。 Similarly, when a certain capacity booster base station 101 that has been operating is suddenly stopped due to fluctuations in the amount of communication traffic, communication between the capacity booster base station 101 and the wireless terminal device 202 is disconnected. That is, if the capacity booster base station 101 suddenly reduces the power of the transmission radio wave when transitioning to the dormant state, communication between the established self and the wireless terminal device 202 is interrupted. The wireless terminal device 202 that has selected the base station 101 cannot move to a handover operation to another wireless base station device due to the interruption of communication.
 また、カバレッジ基地局201およびキャパシティブースタ基地局101における通信トラフィック量によっては、以下の問題が発生する可能性がある。すなわち、カバレッジ基地局201が無線端末装置202の通信先として選択されるハンドオーバ動作と、キャパシティブースタ基地局101が無線端末装置202の通信先として選択されるハンドオーバ動作とが、交互に繰り返され、無線端末装置202は、通信を始めることができなくなる。また、カバレッジ基地局201およびキャパシティブースタ基地局101間で送受信されるセル活性化要求またはセル活性化応答などの制御メッセージが渋滞し、通信の遅延を引き起こす可能性がある。 Also, depending on the amount of communication traffic in the coverage base station 201 and the capacity booster base station 101, the following problems may occur. That is, the handover operation in which the coverage base station 201 is selected as the communication destination of the wireless terminal device 202 and the handover operation in which the capacity booster base station 101 is selected as the communication destination of the wireless terminal device 202 are alternately repeated. The wireless terminal device 202 cannot start communication. In addition, a control message such as a cell activation request or a cell activation response transmitted / received between the coverage base station 201 and the capacity booster base station 101 may be congested and cause a communication delay.
 これに対して、本発明の実施の形態に係るキャパシティブースタ基地局101では、無線受信部93および無線送信部94は、無線端末装置202との間で無線信号を送受信する。そして、送信電力制御部99は、カバレッジ基地局201からの通信開始指示を含むセル活性化要求を受けると、無線受信部93および無線送信部94を制御することにより、無線端末装置202との間の無線信号の送受信を開始する。また、通信トラフィック監視部98は、無線端末装置202との通信のトラフィック量を取得する。この構成において送信電力制御部99は、セル活性化要求を受けて無線信号の送受信を開始した状態において、通信トラフィック監視部98によって取得されたトラフィック量に基づいて、無線信号の少なくとも送信を停止するか否かを判断する。送信電力制御部99が、無線信号の送信を停止すると判断した場合には、無線受信部93および無線送信部94を制御することにより、無線信号の送信電力を段階的に下げて無線信号の送信を停止する停波制御を行う。 On the other hand, in the capacity booster base station 101 according to the embodiment of the present invention, the radio reception unit 93 and the radio transmission unit 94 transmit and receive radio signals to and from the radio terminal device 202. Upon receiving a cell activation request including a communication start instruction from the coverage base station 201, the transmission power control unit 99 controls the wireless reception unit 93 and the wireless transmission unit 94, thereby communicating with the wireless terminal device 202. Starts transmission / reception of wireless signals. In addition, the communication traffic monitoring unit 98 acquires the traffic amount of communication with the wireless terminal device 202. In this configuration, the transmission power control unit 99 stops at least transmission of the radio signal based on the traffic amount acquired by the communication traffic monitoring unit 98 in a state where transmission / reception of the radio signal is started in response to the cell activation request. Determine whether or not. When the transmission power control unit 99 determines that the transmission of the wireless signal is stopped, the wireless power transmission unit 93 and the wireless transmission unit 94 are controlled to reduce the transmission power of the wireless signal step by step. Wave stop control to stop.
 このようにして無線信号の送信電力を一度に大きく下げずに段階的に下げて無線信号の送信を停止する構成により、無線端末装置202が受信する無線信号の電力は、急激ではなく、緩やかに減少する。これにより、キャパシティブースタ基地局101は、自己および自己を選択している無線端末装置202間の通信が途絶えてしまう前に、当該無線端末装置202をカバレッジ基地局201にハンドオーバさせることができる。この結果、キャパシティブースタ基地局101は、休止状態へ遷移する際に、自己を選択している無線端末装置202の通信が途絶えてしまうことを防ぐことができる。 In this manner, the wireless signal transmission power received by the wireless terminal device 202 is not abrupt, but gradually, by the configuration in which the wireless signal transmission power is stopped by reducing the transmission power of the wireless signal step by step without greatly reducing it at once. Decrease. Accordingly, the capacity booster base station 101 can hand over the wireless terminal device 202 to the coverage base station 201 before communication between the wireless terminal device 202 that has selected itself and the wireless booster device 202 is interrupted. As a result, the capacity booster base station 101 can prevent the communication of the wireless terminal device 202 that has selected itself from being interrupted when transitioning to the dormant state.
 また、本発明の実施の形態に係るキャパシティブースタ基地局101では、送信電力制御部99は、無線信号の送信を停止すると判断した場合には、停波制御を行う前に、無線信号の送信を停止する旨を含む一時的配置情報更新要求を少なくともカバレッジ基地局201に通知する。 Further, in the capacity booster base station 101 according to the embodiment of the present invention, when the transmission power control unit 99 determines to stop the transmission of the radio signal, the transmission of the radio signal is performed before the stop control is performed. At least the coverage base station 201 is notified of a temporary location information update request including the fact that it is stopped.
 このように、一時的配置情報更新要求を少なくともカバレッジ基地局201へ通知することにより、自己の無線基地局装置およびカバレッジ基地局201間での無線端末装置202のハンドオーバ動作が繰り返されることを防ぐことができる。 In this way, by notifying at least the coverage base station 201 of the temporary location information update request, it is possible to prevent the handover operation of the wireless terminal device 202 between the own wireless base station device and the coverage base station 201 from being repeated. Can do.
 また、本発明の実施の形態に係るキャパシティブースタ基地局101では、送信電力制御部99は、一時的配置情報更新要求に対する応答を含む一時的配置情報更新応答または一時的配置情報更新拒否を少なくともカバレッジ基地局201から受けた後、停波制御を行う。 Further, in the capacity booster base station 101 according to the embodiment of the present invention, the transmission power control unit 99 performs at least a temporary arrangement information update response or a temporary arrangement information update rejection including a response to the temporary arrangement information update request. After receiving from the coverage base station 201, the stop control is performed.
 このように、一時的配置情報更新要求に対する応答をカバレッジ基地局201から受けることにより、当該応答に応じた停波制御を行うことができる。 Thus, by receiving a response to the temporary arrangement information update request from the coverage base station 201, it is possible to perform a stop control according to the response.
 また、本発明の実施の形態に係るキャパシティブースタ基地局101では、送信電力制御部99は、トラフィック量がしきい値Th1未満である場合に無線信号の送信を停止すると判断し、一時的配置情報更新応答または一時的配置情報更新拒否を受けた後、トラフィック量がしきい値Th1より小さいしきい値Th2未満である場合に停波制御を行う。 Also, in the capacity booster base station 101 according to the embodiment of the present invention, the transmission power control unit 99 determines that the transmission of the radio signal is stopped when the traffic amount is less than the threshold value Th1, and is temporarily arranged. After receiving the information update response or the temporary arrangement information update refusal, the stop control is performed when the traffic volume is less than the threshold value Th2, which is smaller than the threshold value Th1.
 このように、しきい値Th2より大きいしきい値Th1を設定することにより、トラフィック量がしきい値Th2未満である場合に休止状態への遷移を決定する場合と比べて、より早い時点で休止状態への遷移を決定するので、トラフィック量がしきい値Th2未満になると速やかに休止状態へ遷移することができる。 In this way, by setting the threshold value Th1 that is larger than the threshold value Th2, it is suspended at an earlier time point than when the transition to the dormant state is determined when the traffic volume is less than the threshold value Th2. Since the transition to the state is determined, the transition to the dormant state can be quickly made when the traffic amount becomes less than the threshold value Th2.
 また、本発明の実施の形態に係るキャパシティブースタ基地局101では、送信電力制御部99は、カバレッジ基地局201における無線端末装置202との通信のトラフィック量に基づく内容を含む一時的配置情報更新応答または一時的配置情報更新拒否を受けて、一時的配置情報更新応答または一時的配置情報更新拒否の内容に基づいて、停波制御を行う条件を設定する。 Further, in the capacity booster base station 101 according to the embodiment of the present invention, the transmission power control unit 99 updates the temporary arrangement information including the content based on the traffic volume of communication with the radio terminal apparatus 202 in the coverage base station 201. In response to the response or the temporary arrangement information update rejection, a condition for performing the wave stopping control is set based on the contents of the temporary arrangement information update response or the temporary arrangement information update rejection.
 このような構成により、キャパシティブースタ基地局101は、たとえば一時的配置情報更新応答を受けると、カバレッジ基地局201における通信のトラフィック量が少ないことを認識して、これに対応した停波制御の実行条件を設定し、設定した実行条件を満たした場合に停波制御を行うことができる。また、キャパシティブースタ基地局101は、たとえば一時的配置情報更新拒否を受けると、カバレッジ基地局201における通信のトラフィック量が多いことを認識して、これに対応した停波制御の実行条件を設定し、設定した実行条件を満たした場合に停波制御を行うことができる。すなわち、自己の無線基地局装置および無線端末装置202間の通信開始を判断するカバレッジ基地局201における通信のトラフィック量に応じて、休止状態への遷移を適切に判断することができる。 With such a configuration, when the capacity booster base station 101 receives a temporary arrangement information update response, for example, the capacity booster base station 101 recognizes that the communication traffic amount in the coverage base station 201 is small, and performs the stop control corresponding to this. Execution conditions can be set, and wave stop control can be performed when the set execution conditions are satisfied. Also, when the capacity booster base station 101 receives, for example, refusal to update the temporary arrangement information, the capacity booster base station 101 recognizes that there is a large amount of communication traffic in the coverage base station 201, and sets the execution condition of the stop control corresponding to this. Then, the stop control can be performed when the set execution condition is satisfied. That is, it is possible to appropriately determine the transition to the dormant state according to the communication traffic amount in the coverage base station 201 that determines the start of communication between the own wireless base station device and the wireless terminal device 202.
 また、本発明の実施の形態に係るキャパシティブースタ基地局101では、送信電力制御部99は、カバレッジ基地局201のトラフィック量が多い場合に対応する内容を含む一時的配置情報更新拒否を受けた場合には、上記条件として、通信トラフィック監視部98によって取得されたトラフィック量が所定のしきい値未満である状態が所定時間継続することを設定する。 Further, in the capacity booster base station 101 according to the embodiment of the present invention, the transmission power control unit 99 has received a temporary arrangement information update refusal including contents corresponding to the case where the traffic volume of the coverage base station 201 is large In this case, as the above condition, it is set that a state in which the traffic amount acquired by the communication traffic monitoring unit 98 is less than a predetermined threshold continues for a predetermined time.
 このような構成により、トラフィック量に応じた適切な動作を行うことができる。具体的には、ある時点でキャパシティブースタ基地局101におけるトラフィック量が少なくても、カバレッジ基地局201のトラフィック量が多い場合、しばらくするとキャパシティブースタ基地局101におけるトラフィック量が多くなる場合がある。このような場合、たとえば、キャパシティブースタ基地局101が休止状態へ遷移し、カバレッジ基地局201における通信トラフィック量が所定のしきい値を上回ると、カバレッジ基地局201は、セル活性化要求をキャパシティブースタ基地局101へ送信する。キャパシティブースタ基地局101は、カバレッジ基地局201からセル活性化要求を受けると、再度活性状態へ遷移するので、上記休止状態への遷移が無駄な動作となってしまう。このような場合においても、キャパシティブースタ基地局101は、自己における通信トラフィック量がしきい値Th2を下回っても、通信トラフィック量がしきい値Th2未満である状態が所定時間継続しない場合は活性状態を継続することにより、無駄な休止状態への遷移の発生を抑えることができる。すなわち、キャパシティブースタ基地局101は、休止状態へ遷移することなく継続して無線信号を送受信することができる。 With such a configuration, it is possible to perform an appropriate operation according to the traffic volume. Specifically, even if the traffic volume at the capacity booster base station 101 is small at a certain point in time, if the traffic volume at the coverage base station 201 is large, the traffic volume at the capacity booster base station 101 may increase after a while. . In such a case, for example, when the capacity booster base station 101 transitions to a dormant state and the amount of communication traffic in the coverage base station 201 exceeds a predetermined threshold value, the coverage base station 201 receives a cell activation request. Transmit to the city booster base station 101. When the capacity booster base station 101 receives a cell activation request from the coverage base station 201, the capacity booster base station 101 transitions to the active state again, so that the transition to the dormant state becomes a useless operation. Even in such a case, the capacity booster base station 101 is active if the communication traffic volume is less than the threshold value Th2 and the state where the communication traffic volume is less than the threshold value Th2 does not continue for a predetermined time. By continuing the state, it is possible to suppress occurrence of a transition to a useless sleep state. That is, the capacity booster base station 101 can transmit and receive radio signals continuously without transitioning to a dormant state.
 また、本発明の実施の形態に係るキャパシティブースタ基地局101では、送信電力制御部99は、カバレッジ基地局201のトラフィック量が少ない場合に対応する内容を含む一時的配置情報更新応答を受けた場合には、上記条件として、通信トラフィック監視部98によって取得されたトラフィック量が所定のしきい値未満になることを設定する。 Also, in the capacity booster base station 101 according to the embodiment of the present invention, the transmission power control unit 99 has received a temporary arrangement information update response including content corresponding to the case where the traffic amount of the coverage base station 201 is small In this case, as the above condition, the traffic amount acquired by the communication traffic monitoring unit 98 is set to be less than a predetermined threshold value.
 このような構成により、キャパシティブースタ基地局101は、カバレッジ基地局201におけるトラフィック量が少ないことを確認した上で、休止状態へ遷移できる。すなわち、キャパシティブースタ基地局101は、休止状態へ遷移した後に、カバレッジ基地局201により再度活性状態へ遷移させられる可能性が低い状態であることを確認した上で、休止状態へ遷移できる。 With such a configuration, the capacity booster base station 101 can make a transition to a dormant state after confirming that the traffic amount in the coverage base station 201 is small. That is, the capacity booster base station 101 can transition to the dormant state after confirming that the coverage booster base station 101 is in a state where it is unlikely that the coverage base station 201 can transition to the active state again.
 また、本発明の実施の形態に係るキャパシティブースタ基地局101では、送信電力制御部99は、セル活性化要求を受けて無線信号の送受信を開始した状態において、所定レベル以上の優先度のデータが無線信号により行われる通信に含まれる場合は、無線信号の少なくとも送信を停止する判断を行わない。 Further, in the capacity booster base station 101 according to the embodiment of the present invention, the transmission power control unit 99 receives data of a priority level equal to or higher than a predetermined level in a state where transmission / reception of a radio signal is started in response to a cell activation request. Is included in the communication performed by the wireless signal, the determination to stop at least the transmission of the wireless signal is not performed.
 このように、キャパシティブースタ基地局101において優先度の高い通信が行われている場合には、通信のトラフィック量が所定のしきい値未満であっても当該無線信号の少なくとも送信を停止する判断が行われないので、高い優先度の通信の有無に応じて、活性状態の継続または休止状態への遷移についての判断を行うことができる。 As described above, when high-priority communication is performed in the capacity booster base station 101, even if the traffic volume of communication is less than a predetermined threshold, it is determined to stop at least transmission of the radio signal. Therefore, it is possible to determine whether to continue the active state or transition to the dormant state according to the presence or absence of high priority communication.
 また、本発明の実施の形態に係るキャパシティブースタ基地局101では、無線受信部93および無線送信部94は、無線端末装置202との間で無線信号を送受信する。そして、送信電力制御部99は、カバレッジ基地局201からの通信開始指示を含むセル活性化要求を受けると、無線受信部93および無線送信部94を制御することにより、無線信号の送信電力を段階的に上げて無線端末装置202との通信を開始する。 Moreover, in the capacity booster base station 101 according to the embodiment of the present invention, the radio reception unit 93 and the radio transmission unit 94 transmit and receive radio signals to and from the radio terminal device 202. When the transmission power control unit 99 receives the cell activation request including the communication start instruction from the coverage base station 201, the transmission power control unit 99 controls the wireless reception unit 93 and the wireless transmission unit 94 to thereby increase the transmission power of the wireless signal. The communication with the wireless terminal device 202 is started.
 このようにして無線信号の送信電力を一度に大きく上げずに段階的に上げて無線信号の送信を開始する構成により、無線端末装置202が受信する無線信号の電力は、急激ではなく、緩やかに増加する。これにより、キャパシティブースタ基地局101は、自己が通常時の電力で電波を送信すると受信電力が過大となる、カバレッジ基地局201と無線通信中の無線端末装置202を、無線通信を途絶えさせることなく自己にハンドオーバさせることができる。この結果、キャパシティブースタ基地局101は、活性状態へ遷移する際に、たとえばカバレッジ基地局201を選択し、かつ自己の近傍に位置する無線端末装置202の通信が途絶えてしまうことを防ぐことができる。 In this way, the wireless signal transmission power received by the wireless terminal device 202 is not abrupt, but gradually, by increasing the transmission power of the wireless signal step by step without increasing it at once. To increase. As a result, the capacity booster base station 101 interrupts wireless communication with the wireless terminal device 202 that is in wireless communication with the coverage base station 201, which receives excessive power when it transmits radio waves with normal power. And can be handed over to itself. As a result, when the capacity booster base station 101 transitions to the active state, for example, the coverage base station 201 is selected, and communication of the wireless terminal device 202 located in the vicinity of the capacity booster base station 101 is prevented from being interrupted. it can.
 また、本発明の実施の形態に係るキャパシティブースタ基地局101では、無線受信部93および無線送信部94は、無線端末装置202との間で無線信号を送受信する。そして、送信電力制御部99は、カバレッジ基地局201からの通信開始指示を含むセル活性化要求を受けると、無線受信部93および無線送信部94を制御することにより、無線端末装置202との間の無線信号の送受信を開始する。このような構成において送信電力制御部99は、セル活性化要求を受けて無線信号の送受信を開始した状態において、無線信号の少なくとも送信を停止するか否かを判断し、無線信号の送信を停止すると判断した場合には、無線信号の送信を停止する旨を含む一時的配置情報更新要求をカバレッジ基地局201および自己以外のキャパシティブースタ基地局101に通知する。 Moreover, in the capacity booster base station 101 according to the embodiment of the present invention, the radio reception unit 93 and the radio transmission unit 94 transmit and receive radio signals to and from the radio terminal device 202. Upon receiving a cell activation request including a communication start instruction from the coverage base station 201, the transmission power control unit 99 controls the wireless reception unit 93 and the wireless transmission unit 94, thereby communicating with the wireless terminal device 202. Starts transmission / reception of wireless signals. In such a configuration, the transmission power control unit 99 determines whether or not to stop at least transmission of a radio signal in a state where transmission / reception of the radio signal is started in response to a cell activation request, and stops transmission of the radio signal. If it is determined, a temporary location information update request including the stop of radio signal transmission is notified to the coverage base station 201 and the capacity booster base station 101 other than itself.
 このように、キャパシティブースタ基地局101は、無線信号の送信を停止すると判断する際に、一時的配置情報更新要求をカバレッジ基地局201および自己以外のキャパシティブースタ基地局101に通知することにより、自己およびカバレッジ基地局201間での無線端末装置202のハンドオーバ動作が繰り返されることを防ぐことができる。 As described above, when the capacity booster base station 101 determines to stop transmitting radio signals, the capacity booster base station 101 notifies the coverage base station 201 and the capacity booster base stations 101 other than itself of the temporary location information update request. It is possible to prevent the handover operation of the wireless terminal device 202 between itself and the coverage base station 201 from being repeated.
 また、本発明の実施の形態に係る通信システムでは、カバレッジ基地局201は、無線端末装置202との間で無線信号を送受信することにより無線端末装置202と通信する。そして、キャパシティブースタ基地局101は、無線端末装置202との間で無線信号を送受信することにより無線端末装置202と通信する。このような構成においてキャパシティブースタ基地局101は、カバレッジ基地局201からの通信開始指示を含むセル活性化要求を受けると、無線端末装置202との間の無線信号の送受信を開始する。そして、キャパシティブースタ基地局101は、無線信号の送受信を開始した状態において、無線信号の少なくとも送信を停止するか否かを判断し、無線信号の送信を停止すると判断した場合には、無線信号の送信を停止する旨を含む一時的配置情報更新要求をカバレッジ基地局201に通知する。カバレッジ基地局201は、一時的配置情報更新要求を受けて、無線端末装置202との通信のトラフィック量を取得し、取得したトラフィック量に基づく内容の応答を含む一時的配置情報更新応答または一時的配置情報更新拒否をキャパシティブースタ基地局101へ送信する。キャパシティブースタ基地局101は、一時的配置情報更新応答または一時的配置情報更新拒否を受けた後、無線信号の送信を停止する。 In the communication system according to the embodiment of the present invention, the coverage base station 201 communicates with the wireless terminal device 202 by transmitting and receiving wireless signals to and from the wireless terminal device 202. The capacity booster base station 101 communicates with the wireless terminal device 202 by transmitting and receiving wireless signals to and from the wireless terminal device 202. In such a configuration, upon receiving a cell activation request including a communication start instruction from the coverage base station 201, the capacity booster base station 101 starts transmission / reception of radio signals with the radio terminal apparatus 202. Then, the capacity booster base station 101 determines whether or not to stop at least transmission of the radio signal in a state where transmission / reception of the radio signal is started, and if it determines to stop transmission of the radio signal, The coverage base station 201 is notified of a temporary arrangement information update request including the fact that the transmission of the transmission is stopped. The coverage base station 201 receives the temporary arrangement information update request, acquires the traffic volume of communication with the wireless terminal device 202, and receives a temporary arrangement information update response or a temporary response including a response based on the acquired traffic volume. An arrangement information update refusal is transmitted to the capacity booster base station 101. The capacity booster base station 101 stops transmission of a radio signal after receiving a temporary arrangement information update response or a temporary arrangement information update rejection.
 このような構成により、キャパシティブースタ基地局101が一時的配置情報更新要求をカバレッジ基地局201に周知することにより、キャパシティブースタ基地局101は、カバレッジ基地局201におけるトラフィック量に基づいて休止状態への遷移動作を行うことができるため、カバレッジ基地局201におけるトラフィック量に応じた適切な動作を実現できる。 With such a configuration, the capacity booster base station 101 notifies the coverage base station 201 of the temporary location information update request, so that the capacity booster base station 101 is in a dormant state based on the traffic amount in the coverage base station 201. Therefore, an appropriate operation according to the amount of traffic in the coverage base station 201 can be realized.
 ところで、キャパシティブースタ基地局101の起動については、カバレッジ基地局201または上位装置204が、通信トラフィック量の測定を行い、測定した通信トラフィック量等に基づいて判断する。また、キャパシティブースタ基地局101の停止については、各キャパシティブースタ基地局101が、自己における通信トラフィック量の測定を行い、測定した通信トラフィック量等に基づいて判断する。 By the way, the activation of the capacity booster base station 101 is determined by the coverage base station 201 or the host device 204 by measuring the amount of communication traffic and based on the measured amount of communication traffic. In addition, the capacity booster base station 101 determines whether or not the capacity booster base station 101 is stopped by measuring the communication traffic amount in itself and based on the measured communication traffic amount or the like.
 無線端末装置202は、大半径のエリアをカバーするためのカバレッジ基地局201と通信を行う場合において、カバレッジ基地局201における通信チャネル等の無線リソースを多数の無線端末装置で分け合う必要があるので、当該通信における通信速度が低下する可能性が高い。一方、無線端末装置202は、小半径のエリアをカバーするキャパシティブースタ基地局101と通信を行う場合においては、無線リソースを分け合う無線端末装置202が少数であるため、1台の無線端末装置202が多くの無線リソースを使用できるので、高速に当該通信を行える可能性がある。 When the wireless terminal device 202 communicates with the coverage base station 201 for covering a large radius area, it is necessary to share wireless resources such as a communication channel in the coverage base station 201 with a large number of wireless terminal devices. There is a high possibility that the communication speed in the communication will decrease. On the other hand, when the wireless terminal device 202 communicates with the capacity booster base station 101 that covers an area of a small radius, the number of wireless terminal devices 202 that share wireless resources is small, and thus one wireless terminal device 202 is provided. However, since many radio resources can be used, there is a possibility that the communication can be performed at high speed.
 無線端末装置202が通話における音声データまたは動画配信における映像データなどの優先度の高い通信を行う場合、無線端末装置202は、より高速に通信できる無線基地局装置を選択することが望ましい。たとえば、無線端末装置202は、自己より遠方に位置するカバレッジ基地局201でなく、自己の近傍に位置するキャパシティブースタ基地局101を通信先として選択することにより、通信チャネル等の無線リソースを占有して使用することが期待できるので、通信を高速に行える可能性がある。 When the wireless terminal device 202 performs high-priority communication such as voice data in a call or video data in moving image distribution, it is desirable that the wireless terminal device 202 selects a wireless base station device that can communicate at higher speed. For example, the radio terminal device 202 occupies radio resources such as a communication channel by selecting the capacity booster base station 101 located in the vicinity of itself as a communication destination, not the coverage base station 201 located far from itself. Therefore, there is a possibility that communication can be performed at high speed.
 また、無線端末装置202がキャパシティブースタ基地局101を通信先として選択し、優先度の高い通信を高速に行っている場合に、以下の問題を生ずる可能性がある。すなわち、キャパシティブースタ基地局101は、自己および自己と通信する無線端末装置202間の通信トラフィック量を監視し、当該通信トラフィック量が所定のしきい値を下回ると休止状態に遷移する。キャパシティブースタ基地局101が休止状態に遷移すれば、無線端末装置202は、キャパシティブースタ基地局101と優先度の高い通信を高速に行うことができなくなる。 In addition, when the wireless terminal device 202 selects the capacity booster base station 101 as a communication destination and performs high-priority communication at high speed, the following problem may occur. That is, the capacity booster base station 101 monitors the amount of communication traffic between itself and the wireless terminal device 202 communicating with itself, and transitions to a dormant state when the amount of communication traffic falls below a predetermined threshold. If the capacity booster base station 101 transitions to a dormant state, the wireless terminal device 202 cannot perform high-priority communication with the capacity booster base station 101 at high speed.
 また、キャパシティブースタ基地局101は、カバレッジ基地局201の負荷軽減のために用いられるものであるが、無線端末装置202が、当該キャパシティブースタ基地局101と通信を行う場合には、上記の様に通信速度が向上する利点がある。しかしながら、キャパシティブースタ基地局101の起動および停止は、カバレッジ基地局201またはキャパシティブースタ基地局101の判断により行われるので、無線端末装置202からの要求により、当該キャパシティブースタ基地局101を起動することはできない。 The capacity booster base station 101 is used for reducing the load on the coverage base station 201. When the wireless terminal device 202 communicates with the capacity booster base station 101, the capacity booster base station 101 In this way, there is an advantage that the communication speed is improved. However, since the capacity booster base station 101 is started and stopped based on the judgment of the coverage base station 201 or the capacity booster base station 101, the capacity booster base station 101 is started in response to a request from the wireless terminal device 202. I can't do it.
 キャパシティブースタ基地局101は、屋外に設置されるピコ基地局または屋内に設置されるフェムト基地局の利用が考えられる。特にフェムト基地局は、個人宅内に配置されるため、以下の強い要望がある。すなわち、フェムト基地局は、無線端末装置202からの要求により起動し、当該無線端末装置202の通信先をカバレッジ基地局201から起動したフェムト基地局へ移動させることにより、当該無線端末装置202に、起動したフェムト基地局の無線リソースを占有させ高速な通信を行う。 The capacity booster base station 101 may be a pico base station installed outdoors or a femto base station installed indoors. In particular, since the femto base station is arranged in a private house, there is a strong demand as follows. That is, the femto base station is activated by a request from the wireless terminal device 202, and moves the communication destination of the wireless terminal device 202 to the femto base station activated from the coverage base station 201. It occupies the radio resources of the activated femto base station and performs high-speed communication.
 これに対して、本発明の実施の形態に係る通信システムでは、無線端末装置202は、所定条件が満たされると、キャパシティブースタ基地局活性化要求をカバレッジ基地局201へ送信する。そして、カバレッジ基地局201は、キャパシティブースタ基地局活性化要求を受けて、セル活性化要求をキャパシティブースタ基地局101へ送信する。 On the other hand, in the communication system according to the embodiment of the present invention, radio terminal apparatus 202 transmits a capacity booster base station activation request to coverage base station 201 when a predetermined condition is satisfied. Then, the coverage base station 201 receives the capacity booster base station activation request and transmits the cell activation request to the capacity booster base station 101.
 これにより、無線端末装置202は、所定条件が満たされるとキャパシティブースタ基地局活性化要求をカバレッジ基地局201へ送信することにより、カバレッジ基地局201からの電波の受信電力よりも大きな電力で自己が電波を受信できるキャパシティブースタ基地局101へ通信先を変更することができる。そして、無線端末装置202は、カバレッジ基地局201からの電波の受信電力と比べて大きな電力でキャパシティブースタ基地局101からの電波を受信することができ、また、当該キャパシティブースタ基地局101における通信チャネル等の無線リソースを占有して使用することが期待できるので、通信を安定かつ高速に行うことができる。 As a result, the wireless terminal device 202 transmits a capacity booster base station activation request to the coverage base station 201 when a predetermined condition is satisfied, thereby self-powering the wireless terminal device 202 with power larger than the reception power of the radio wave from the coverage base station 201. Can change the communication destination to the capacity booster base station 101 capable of receiving radio waves. And the radio | wireless terminal apparatus 202 can receive the electromagnetic wave from the capacity booster base station 101 with big electric power compared with the reception power of the electromagnetic wave from the coverage base station 201, and in the said capacity booster base station 101, Since it can be expected to occupy and use radio resources such as communication channels, communication can be performed stably and at high speed.
 また、本発明の実施の形態に係る通信システムでは、無線端末装置202は、所定レベル以上の優先度のデータを含む通信を行う必要が生じると、キャパシティブースタ基地局活性化要求をカバレッジ基地局201へ送信する。 Also, in the communication system according to the embodiment of the present invention, when it is necessary for the wireless terminal device 202 to perform communication including data having a priority level equal to or higher than a predetermined level, the capacity booster base station activation request is transmitted to the coverage base station. To 201.
 これにより、キャパシティブースタ基地局101を活性状態へ遷移させる適切な条件である所定レベル以上の優先度のデータを含む通信を行う必要が生じた際に、当該通信を高速で行うことができる。具体的には、無線端末装置202は、自己において所定レベル以上の優先度のデータを含む通信を行う必要が生じると、カバレッジ基地局201からの電波の受信電力よりも大きな電力で自己が電波を受信できるキャパシティブースタ基地局101へ通信先を変更することができる。無線端末装置202は、カバレッジ基地局201からの電波の受信電力と比べて大きな電力でキャパシティブースタ基地局101からの電波を受信することができ、また、当該キャパシティブースタ基地局101における通信チャネル等の無線リソースを占有して使用することが期待できるので、通信を安定かつ高速に行うことができる。 Thus, when it becomes necessary to perform communication including data having a priority level equal to or higher than a predetermined level, which is an appropriate condition for causing the capacity booster base station 101 to transition to the active state, the communication can be performed at high speed. Specifically, when it becomes necessary for the wireless terminal device 202 to perform communication including data having a priority level equal to or higher than a predetermined level, the wireless terminal device 202 transmits radio waves with power larger than the reception power of radio waves from the coverage base station 201. The communication destination can be changed to the capacity booster base station 101 capable of receiving. The wireless terminal device 202 can receive radio waves from the capacity booster base station 101 with higher power than the received power of radio waves from the coverage base station 201, and the communication channel in the capacity booster base station 101 Therefore, it can be expected to occupy and use wireless resources such as, so that communication can be performed stably and at high speed.
 また、本発明の実施の形態に係る通信システムでは、キャパシティブースタ基地局101は、活性状態において、無線端末装置202との通信のトラフィック量を取得し、取得したトラフィック量が所定のしきい値未満であり、かつ無線端末装置202との通信が所定レベル以上の優先度のデータを含んでいない場合には、無線信号の少なくとも送信を停止する。 In the communication system according to the embodiment of the present invention, the capacity booster base station 101 acquires the traffic volume of communication with the wireless terminal device 202 in the active state, and the acquired traffic volume is a predetermined threshold value. If the communication with the wireless terminal device 202 does not include data having a priority level equal to or higher than a predetermined level, at least transmission of the wireless signal is stopped.
 このような動作により、キャパシティブースタ基地局101は、優先度の高い通信を行っている場合には、自己における通信のトラフィック量が所定のしきい値未満であっても当該通信を継続する。また、キャパシティブースタ基地局101は、優先度の高い通信を行っていない場合には、自己における通信のトラフィック量が所定のしきい値未満であれば当該通信を停止し、休止状態へ遷移する。これにより、キャパシティブースタ基地局101は、活性状態の継続または休止状態への遷移について、高い優先度の通信の有無に応じた適切な判断を行うことができる。 By such an operation, the capacity booster base station 101 continues the communication even when the communication traffic volume in the capacity booster base station 101 is less than a predetermined threshold when performing communication with high priority. In addition, when the high-priority communication is not performed, the capacity booster base station 101 stops the communication and shifts to a dormant state if the traffic volume of the communication in itself is less than a predetermined threshold value. . Thereby, the capacity booster base station 101 can make an appropriate determination according to the presence / absence of high-priority communication regarding the continuation of the active state or the transition to the dormant state.
 また、本発明の実施の形態に係るキャパシティブースタ基地局101では、無線受信部93および無線送信部94は、無線端末装置202との間で無線信号を送受信する。そして、送信電力制御部99は、カバレッジ基地局201からのセル活性化要求を受けると、無線受信部93および無線送信部94を制御することにより、無線端末装置202との間の無線信号の送受信を開始する。また、通信トラフィック監視部98は、無線端末装置202との通信のトラフィック量を取得する。送信電力制御部99は、セル活性化要求を受けて無線信号の送受信を開始した状態において、通信トラフィック監視部98によって取得された通信のトラフィック量が所定のしきい値未満であり、かつ無線端末装置202との通信が所定レベル以上の優先度のデータを含んでいない場合には、無線信号の少なくとも送信を停止する。 Moreover, in the capacity booster base station 101 according to the embodiment of the present invention, the radio reception unit 93 and the radio transmission unit 94 transmit and receive radio signals to and from the radio terminal device 202. When the transmission power control unit 99 receives a cell activation request from the coverage base station 201, the transmission power control unit 99 controls the wireless reception unit 93 and the wireless transmission unit 94 to transmit and receive wireless signals to and from the wireless terminal device 202. To start. In addition, the communication traffic monitoring unit 98 acquires the traffic amount of communication with the wireless terminal device 202. The transmission power control unit 99 receives a cell activation request and starts transmission / reception of a radio signal, the communication traffic volume acquired by the communication traffic monitoring unit 98 is less than a predetermined threshold, and the radio terminal If the communication with the apparatus 202 does not include data having a priority level equal to or higher than a predetermined level, at least transmission of the radio signal is stopped.
 このような動作により、キャパシティブースタ基地局101は、優先度の高い通信を行っている場合には、自己における通信のトラフィック量が所定のしきい値未満であっても当該通信を継続する。また、キャパシティブースタ基地局101は、優先度の高い通信を行っていない場合には、自己における通信のトラフィック量が所定のしきい値未満であれば当該通信を停止し、休止状態へ遷移する。これにより、キャパシティブースタ基地局101は、活性状態の継続または休止状態への遷移について高い優先度の通信の有無に応じた適切な判断を行うことができる。 By such an operation, the capacity booster base station 101 continues the communication even when the communication traffic volume in the capacity booster base station 101 is less than a predetermined threshold when performing communication with high priority. In addition, when the high-priority communication is not performed, the capacity booster base station 101 stops the communication and shifts to a dormant state if the traffic volume of the communication in itself is less than a predetermined threshold value. . As a result, the capacity booster base station 101 can make an appropriate determination according to the presence or absence of high priority communication regarding the continuation of the active state or the transition to the dormant state.
 また、本発明の実施の形態に係る無線端末装置202では、無線受信部123および無線送信部124は、カバレッジ基地局201およびキャパシティブースタ基地局101との間で無線信号を送受信する。そして、無線端末制御部128は、所定条件が満たされると、キャパシティブースタ基地局活性化要求を無線送信部124経由でカバレッジ基地局201へ送信する。 Also, in radio terminal apparatus 202 according to the embodiment of the present invention, radio reception unit 123 and radio transmission unit 124 transmit and receive radio signals to and from coverage base station 201 and capacity booster base station 101. Then, when the predetermined condition is satisfied, the radio terminal control unit 128 transmits a capacity booster base station activation request to the coverage base station 201 via the radio transmission unit 124.
 これにより、無線端末装置202は、所定条件が満たされるとキャパシティブースタ基地局活性化要求をカバレッジ基地局201へ送信することにより、カバレッジ基地局201からの電波の受信電力よりも大きな電力で自己が電波を受信できるキャパシティブースタ基地局101へ通信先を変更することができる。そして、無線端末装置202は、カバレッジ基地局201からの電波の受信電力と比べて大きな電力でキャパシティブースタ基地局101からの電波を受信することができ、また、当該キャパシティブースタ基地局101における通信チャネル等の無線リソースを占有して使用することが期待できるので、通信を安定かつ高速に行うことができる。 As a result, the wireless terminal device 202 transmits a capacity booster base station activation request to the coverage base station 201 when a predetermined condition is satisfied, thereby self-powering the wireless terminal device 202 with power larger than the reception power of the radio wave from the coverage base station 201. Can change the communication destination to the capacity booster base station 101 capable of receiving radio waves. And the radio | wireless terminal apparatus 202 can receive the electromagnetic wave from the capacity booster base station 101 with big electric power compared with the reception power of the electromagnetic wave from the coverage base station 201, and in the said capacity booster base station 101, Since it can be expected to occupy and use radio resources such as communication channels, communication can be performed stably and at high speed.
 また、本発明の実施の形態に係るカバレッジ基地局201では、無線受信部113および無線送信部114は、無線端末装置202との間で無線信号を送受信する。そして、周辺基地局制御部119は、無線端末装置202との間で無線信号を送受信することにより無線端末装置202と通信し、キャパシティブースタ基地局活性化要求を無線端末装置202から受けて、セル活性化要求をキャパシティブースタ基地局101へ送信する。 Moreover, in the coverage base station 201 according to the embodiment of the present invention, the radio reception unit 113 and the radio transmission unit 114 transmit and receive radio signals to and from the radio terminal device 202. The neighboring base station control unit 119 communicates with the wireless terminal device 202 by transmitting and receiving wireless signals to and from the wireless terminal device 202, receives a capacity booster base station activation request from the wireless terminal device 202, and A cell activation request is transmitted to the capacity booster base station 101.
 これにより、無線端末装置202は、たとえば所定条件が満たされた場合にキャパシティブースタ基地局101を活性状態に遷移させることにより、カバレッジ基地局201からの電波の受信電力よりも大きな電力で自己が電波を受信できるキャパシティブースタ基地局101へ通信先を変更することができる。そして、無線端末装置202は、カバレッジ基地局201からの電波の受信電力と比べて大きな電力でキャパシティブースタ基地局101からの電波を受信することができ、また、当該キャパシティブースタ基地局101における通信チャネル等の無線リソースを占有して使用することが期待できるので、通信を安定かつ高速に行うことができる。 Thereby, for example, when the predetermined condition is satisfied, the wireless terminal device 202 transitions the capacity booster base station 101 to the active state, thereby allowing the wireless terminal device 202 to power itself with a power higher than the reception power of the radio wave from the coverage base station 201. The communication destination can be changed to the capacity booster base station 101 capable of receiving radio waves. And the radio | wireless terminal apparatus 202 can receive the electromagnetic wave from the capacity booster base station 101 with big electric power compared with the reception power of the electromagnetic wave from the coverage base station 201, and in the said capacity booster base station 101, Since it can be expected to occupy and use radio resources such as communication channels, communication can be performed stably and at high speed.
 なお、本発明の実施の形態では、無線端末装置のハンドオーバ動作について具体的な説明を行なったが、無線基地局装置と通信中の無線端末装置が行なう基地局間移動(セル間移動)動作であるハンドオーバに限らず、アイドル状態の無線端末装置が行なう基地局間移動(セル間移動)動作についても、本発明は適用される。すなわち、本発明の実施の形態において、「ハンドオーバ」を「移動」に置き換えた構成および動作についても、本発明は適用される。 In the embodiment of the present invention, the handover operation of the wireless terminal device has been specifically described. However, in the inter-base station movement (inter-cell movement) operation performed by the wireless terminal device in communication with the wireless base station device. The present invention is applied not only to a certain handover but also to an inter-base station movement (inter-cell movement) operation performed by an idle wireless terminal device. That is, in the embodiment of the present invention, the present invention is also applied to a configuration and operation in which “handover” is replaced with “movement”.
 また、図1における無線端末装置202と、上位装置204とは、本発明において必須の構成要素ではない。無線通信システム301は、これらの構成要素を備えなくても、他の無線基地局装置からの通信開始指示を受けると無線端末装置との間の無線信号の送受信を開始する無線基地局装置、を備える通信システムにおいて、適切な動作を実行するという本発明の目的を達成することが可能である。 Further, the wireless terminal device 202 and the host device 204 in FIG. 1 are not essential components in the present invention. Even if the wireless communication system 301 does not include these components, a wireless base station device that starts transmission / reception of a wireless signal with a wireless terminal device when receiving a communication start instruction from another wireless base station device. It is possible to achieve the object of the present invention to perform an appropriate operation in a communication system provided.
 また、図2におけるアンテナ91と、サーキュレータ92と、信号処理部95と、通信トラフィック監視部98とは、本発明において必須の構成要素ではない。キャパシティブースタ基地局101は、これらの構成要素を備えなくても、他の無線基地局装置からの通信開始指示を受けると無線端末装置との間の無線信号の送受信を開始する無線基地局装置、を備える通信システムにおいて、適切な動作を実行するという本発明の目的を達成することが可能である。 Further, the antenna 91, the circulator 92, the signal processing unit 95, and the communication traffic monitoring unit 98 in FIG. 2 are not essential components in the present invention. Even if the capacity booster base station 101 does not include these components, the radio base station apparatus starts transmission / reception of radio signals to / from the radio terminal apparatus when receiving a communication start instruction from another radio base station apparatus. It is possible to achieve the object of the present invention to execute an appropriate operation in a communication system comprising:
 また、図4におけるアンテナ111と、サーキュレータ112と、信号処理部115と、通信トラフィック監視部118とは、本発明において必須の構成要素ではない。カバレッジ基地局201は、これらの構成要素を備えなくても、他の無線基地局装置からの通信開始指示を受けると無線端末装置との間の無線信号の送受信を開始する無線基地局装置、を備える通信システムにおいて、適切な動作を実行するという本発明の目的を達成することが可能である。 Further, the antenna 111, the circulator 112, the signal processing unit 115, and the communication traffic monitoring unit 118 in FIG. 4 are not essential components in the present invention. Even if the coverage base station 201 does not include these components, a radio base station device that starts transmission / reception of a radio signal with a radio terminal device when receiving a communication start instruction from another radio base station device, It is possible to achieve the object of the present invention to perform an appropriate operation in a communication system provided.
 また、図5におけるアンテナ121と、サーキュレータ122と、信号処理部125と、入出力部129とは、本発明において必須の構成要素ではない。無線端末装置202は、これらの構成要素を備えなくても、他の無線基地局装置からの通信開始指示を受けると無線端末装置との間の無線信号の送受信を開始する無線基地局装置、を備える通信システムにおいて、適切な動作を実行するという本発明の目的を達成することが可能である。 Further, the antenna 121, the circulator 122, the signal processing unit 125, and the input / output unit 129 in FIG. 5 are not essential components in the present invention. Even if the wireless terminal device 202 does not include these components, a wireless base station device that starts transmission / reception of a wireless signal with the wireless terminal device when receiving a communication start instruction from another wireless base station device. It is possible to achieve the object of the present invention to perform an appropriate operation in a communication system provided.
 上記実施の形態は、すべての点で例示であって制限的なものではないと考えられるべきである。本発明の範囲は、上記説明ではなく請求の範囲によって示され、請求の範囲と均等の意味および範囲内でのすべての変更が含まれることが意図される。 It should be considered that the above embodiment is illustrative in all points and not restrictive. The scope of the present invention is defined by the terms of the claims, rather than the description above, and is intended to include any modifications within the scope and meaning equivalent to the terms of the claims.
 91 アンテナ
 92 サーキュレータ
 93 無線受信部(無線通信部)
 94 無線送信部(無線通信部)
 95 信号処理部
 96 受信信号処理部
 97 送信信号処理部
 98 通信トラフィック監視部(トラフィック情報取得部)
 99 送信電力制御部
 111 アンテナ
 112 サーキュレータ
 113 無線受信部(無線通信部)
 114 無線送信部(無線通信部)
 115 信号処理部
 116 受信信号処理部
 117 送信信号処理部
 118 通信トラフィック監視部
 119 周辺基地局制御部
 121 アンテナ
 122 サーキュレータ
 123 無線受信部(無線通信部)
 124 無線送信部(無線通信部)
 125 信号処理部
 126 受信信号処理部
 127 送信信号処理部
 128 無線端末制御部
 129 入出力部
 101A,101B キャパシティブースタ基地局(無線基地局装置)
 201 カバレッジ基地局(無線基地局装置)
 202A,202B,202C 無線端末装置
 203 コアネットワーク
 204 上位装置
 301 無線通信システム
 CBCA,CBCB キャパシティブースタセル
 CC カバレッジセル
91 antenna 92 circulator 93 wireless receiver (wireless communication unit)
94 Wireless transmission unit (wireless communication unit)
95 signal processing unit 96 reception signal processing unit 97 transmission signal processing unit 98 communication traffic monitoring unit (traffic information acquisition unit)
99 Transmission power control unit 111 Antenna 112 Circulator 113 Wireless reception unit (wireless communication unit)
114 Wireless transmission unit (wireless communication unit)
DESCRIPTION OF SYMBOLS 115 Signal processing part 116 Reception signal processing part 117 Transmission signal processing part 118 Communication traffic monitoring part 119 Peripheral base station control part 121 Antenna 122 Circulator 123 Wireless reception part (wireless communication part)
124 Wireless transmission unit (wireless communication unit)
125 signal processing unit 126 reception signal processing unit 127 transmission signal processing unit 128 wireless terminal control unit 129 input / output unit 101A, 101B capacity booster base station (radio base station apparatus)
201 Coverage base station (radio base station device)
202A, 202B, 202C Wireless terminal device 203 Core network 204 Host device 301 Wireless communication system CBCA, CBCB capacity booster cell CC coverage cell

Claims (7)

  1.  無線端末装置と、
     前記無線端末装置との間で無線信号を送受信することにより前記無線端末装置と通信するカバレッジ基地局と、
     前記無線端末装置との間で無線信号を送受信することにより前記無線端末装置と通信し、前記カバレッジ基地局から通信開始指示を受けると、前記無線端末装置との間の無線信号の送受信を開始する活性状態へ遷移するキャパシティブースタ基地局とを備える通信システムであって、
     前記無線端末装置は、所定条件が満たされると、前記キャパシティブースタ基地局を前記活性状態へ遷移させる要求を前記カバレッジ基地局へ送信し、
     前記カバレッジ基地局は、前記要求を受けて、前記通信開始指示を前記キャパシティブースタ基地局へ送信する、通信システム。
    A wireless terminal device;
    A coverage base station that communicates with the wireless terminal device by transmitting and receiving wireless signals to and from the wireless terminal device;
    Communicating with the wireless terminal device by transmitting and receiving wireless signals to and from the wireless terminal device, and upon receiving a communication start instruction from the coverage base station, starts transmitting and receiving wireless signals to and from the wireless terminal device A communication system comprising a capacity booster base station that transitions to an active state,
    When the predetermined condition is satisfied, the wireless terminal device transmits a request for transitioning the capacity booster base station to the active state to the coverage base station,
    In response to the request, the coverage base station transmits the communication start instruction to the capacity booster base station.
  2.  前記無線端末装置は、所定レベル以上の優先度のデータを含む通信を行う必要が生じると、前記要求を前記カバレッジ基地局へ送信する、請求の範囲第1項に記載の通信システム。 The communication system according to claim 1, wherein the wireless terminal device transmits the request to the coverage base station when it becomes necessary to perform communication including data having a priority level equal to or higher than a predetermined level.
  3.  前記キャパシティブースタ基地局は、前記活性状態において、前記無線端末装置との通信のトラフィック量を取得し、取得した前記トラフィック量が所定のしきい値未満であり、かつ前記無線端末装置との通信が所定レベル以上の優先度のデータを含んでいない場合には、前記無線信号の少なくとも送信を停止する、請求の範囲第1項または請求の範囲第2項に記載の通信システム。 The capacity booster base station acquires a traffic amount of communication with the wireless terminal device in the active state, the acquired traffic amount is less than a predetermined threshold value, and communication with the wireless terminal device 3. The communication system according to claim 1, wherein at least transmission of the radio signal is stopped when data does not include data having a priority level equal to or higher than a predetermined level.
  4.  無線端末装置との間で無線信号を送受信することにより前記無線端末装置と通信する無線基地局装置であって、
     前記無線端末装置との間で無線信号を送受信する無線通信部と、
     他の無線基地局装置からの通信開始指示を受けると、前記無線通信部を制御することにより、前記無線端末装置との間の無線信号の送受信を開始する制御部と、
     前記無線端末装置との通信のトラフィック量を取得するトラフィック情報取得部とを備え、
     前記制御部は、前記通信開始指示を受けて前記無線信号の送受信を開始した状態において、前記トラフィック情報取得部によって取得された前記トラフィック量が所定のしきい値未満であり、かつ前記無線端末装置との通信が所定レベル以上の優先度のデータを含んでいない場合には、前記無線信号の少なくとも送信を停止する、無線基地局装置。
    A wireless base station device that communicates with the wireless terminal device by transmitting and receiving wireless signals to and from the wireless terminal device,
    A wireless communication unit that transmits and receives wireless signals to and from the wireless terminal device;
    Upon receiving a communication start instruction from another radio base station device, by controlling the radio communication unit, a control unit that starts transmission / reception of radio signals with the radio terminal device,
    A traffic information acquisition unit that acquires a traffic amount of communication with the wireless terminal device;
    The control unit receives the communication start instruction and starts transmission / reception of the radio signal, the traffic amount acquired by the traffic information acquisition unit is less than a predetermined threshold, and the radio terminal device A wireless base station device that stops transmission of at least the wireless signal when communication with the wireless communication does not include priority level data of a predetermined level or higher.
  5.  無線端末装置との間で無線信号を送受信することにより前記無線端末装置と通信するカバレッジ基地局と、
     無線端末装置との間で無線信号を送受信することにより前記無線端末装置と通信し、前記カバレッジ基地局から通信開始指示を受けると、無線端末装置との間の無線信号の送受信を開始する活性状態へ遷移するキャパシティブースタ基地局とを備える通信システムにおける無線端末装置であって、
     前記カバレッジ基地局および前記キャパシティブースタ基地局との間で無線信号を送受信する無線通信部と、
     所定条件が満たされると、前記キャパシティブースタ基地局を前記活性状態へ遷移させる要求を前記無線通信部経由で前記カバレッジ基地局へ送信する制御部とを備える、無線端末装置。
    A coverage base station that communicates with the wireless terminal device by transmitting and receiving wireless signals to and from the wireless terminal device;
    Communicating with the wireless terminal device by transmitting / receiving a wireless signal to / from the wireless terminal device, and receiving a communication start instruction from the coverage base station, an active state for starting transmission / reception of the wireless signal to / from the wireless terminal device A wireless terminal device in a communication system comprising a capacity booster base station that transitions to
    A radio communication unit that transmits and receives radio signals between the coverage base station and the capacity booster base station;
    A wireless terminal device comprising: a control unit that transmits a request to transition the capacity booster base station to the active state to the coverage base station via the wireless communication unit when a predetermined condition is satisfied.
  6.  無線端末装置との間で無線信号を送受信することにより前記無線端末装置と通信する無線基地局装置であって、
     前記無線端末装置との間で無線信号を送受信する無線通信部と、
     無線端末装置との間で無線信号を送受信することにより前記無線端末装置と通信し、他の無線基地局装置から通信開始指示を受けると、無線端末装置との間の無線信号の送受信を開始する活性状態へ遷移するキャパシティブースタ基地局、を前記活性状態へ遷移させる要求を無線端末装置から受けて、前記通信開始指示を前記キャパシティブースタ基地局へ送信する制御部とを備える、無線基地局装置。
    A wireless base station device that communicates with the wireless terminal device by transmitting and receiving wireless signals to and from the wireless terminal device,
    A wireless communication unit that transmits and receives wireless signals to and from the wireless terminal device;
    Communicates with the wireless terminal device by transmitting / receiving a wireless signal to / from the wireless terminal device, and starts transmission / reception of a wireless signal to / from the wireless terminal device when receiving a communication start instruction from another wireless base station device A radio base station comprising: a capacity booster base station that transitions to an active state; and a control unit that receives a request to transition to the active state from a radio terminal device and transmits the communication start instruction to the capacity booster base station. apparatus.
  7.  無線端末装置との間で無線信号を送受信することにより前記無線端末装置と通信するカバレッジ基地局と、
     無線端末装置との間で無線信号を送受信することにより前記無線端末装置と通信し、前記カバレッジ基地局から通信開始指示を受けると、無線端末装置との間の無線信号の送受信を開始する活性状態へ遷移するキャパシティブースタ基地局とを備える通信システムにおける通信制御方法であって、
     前記カバレッジ基地局が、前記キャパシティブースタ基地局を前記活性状態へ遷移させる要求を無線端末装置から受けて、前記通信開始指示を前記キャパシティブースタ基地局へ送信するステップと、
     前記キャパシティブースタ基地局が、前記カバレッジ基地局から前記通信開始指示を受けて前記活性状態へ遷移するステップとを含む、通信制御方法。
    A coverage base station that communicates with the wireless terminal device by transmitting and receiving wireless signals to and from the wireless terminal device;
    Communicating with the wireless terminal device by transmitting / receiving a wireless signal to / from the wireless terminal device, and receiving a communication start instruction from the coverage base station, an active state for starting transmission / reception of the wireless signal to / from the wireless terminal device A communication control method in a communication system including a capacity booster base station that transitions to
    The coverage base station receives a request from the wireless terminal device to transition the capacity booster base station to the active state, and transmits the communication start instruction to the capacity booster base station;
    The capacity booster base station receives the communication start instruction from the coverage base station and transitions to the active state.
PCT/JP2012/080929 2011-12-08 2012-11-29 Communication system, wireless base station device, wireless terminal device, and communication control method WO2013084790A1 (en)

Applications Claiming Priority (2)

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JP2011-268446 2011-12-08
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