WO2018180334A1 - Communication terminal and base station - Google Patents

Communication terminal and base station Download PDF

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Publication number
WO2018180334A1
WO2018180334A1 PCT/JP2018/008952 JP2018008952W WO2018180334A1 WO 2018180334 A1 WO2018180334 A1 WO 2018180334A1 JP 2018008952 W JP2018008952 W JP 2018008952W WO 2018180334 A1 WO2018180334 A1 WO 2018180334A1
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WO
WIPO (PCT)
Prior art keywords
communication
communication quality
quality information
base station
unit
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PCT/JP2018/008952
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French (fr)
Japanese (ja)
Inventor
雄一郎 石谷
幹 高橋
貴 藤本
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Kddi株式会社
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Publication of WO2018180334A1 publication Critical patent/WO2018180334A1/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/24Reselection being triggered by specific parameters
    • H04W36/30Reselection being triggered by specific parameters by measured or perceived connection quality data
    • H04W36/302Reselection being triggered by specific parameters by measured or perceived connection quality data due to low signal strength
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/14Reselecting a network or an air interface
    • H04W36/144Reselecting a network or an air interface over a different radio air interface technology
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/16Discovering, processing access restriction or access information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/18Selecting a network or a communication service
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/02Terminal devices
    • H04W88/06Terminal devices adapted for operation in multiple networks or having at least two operational modes, e.g. multi-mode terminals

Definitions

  • the present invention relates to a communication terminal and a base station.
  • This application claims priority on March 27, 2017 based on Japanese Patent Application No. 2017-61779 filed in Japan, the contents of which are incorporated herein by reference.
  • interference between signals is determined based on the intensity of the signal, and a communication frequency channel is selected to suppress a decrease in communication speed due to interference between signals.
  • a communication frequency channel is selected to suppress a decrease in communication speed due to interference between signals.
  • the present invention has been made in view of the above problems, and an object thereof is to provide a communication terminal and a base station that improve the communication speed of a plurality of communication terminals connected to the base station.
  • a communication terminal is a communication terminal that wirelessly communicates with each of a first base station and a second base station that uses a communication method different from that of the first base station, Communication quality of wireless communication between the first communication quality information acquisition unit for acquiring first communication quality information indicating the communication quality of wireless communication with the first base station, and the second base station
  • the second communication quality information acquisition unit that acquires the second communication quality information indicating, the first communication quality information acquired by the first communication quality information acquisition unit, and the second communication quality information acquisition unit
  • a communication disconnection determination unit that determines whether or not to disconnect the wireless communication with the second base station based on the second communication quality information, and a result determined by the communication disconnection determination unit
  • a communication unit that disconnects wireless communication with the second base station.
  • the communication disconnection determination unit may use a disconnection criterion indicating a criterion for disconnecting wireless communication with the second base station. If it is determined whether to disconnect the wireless communication with the second base station based on the first communication quality information indicates a communication quality higher than a predetermined communication quality, the disconnection criterion If the first communication quality information indicates a communication quality lower than the predetermined communication quality, the disconnection criterion is set to a criterion that is more difficult to disconnect.
  • the disconnection criterion is a threshold value related to communication quality of wireless communication with the second base station
  • the communication disconnection determination unit sets the threshold to a higher value when the communication quality indicated by the first communication quality information indicates a communication quality higher than the predetermined communication quality, and the first communication quality
  • the threshold is set to a lower value, and the communication quality indicated by the second communication quality information is lower than the threshold. Determines to disconnect the wireless communication with the second base station.
  • the communication terminal according to one aspect of the present invention is the communication terminal according to any one of (1) to (3), in which the communication unit performs wireless communication with the second base station. After disconnection, wireless communication is performed with the first base station.
  • the communication terminal according to one aspect of the present invention is the communication terminal according to any one of (1) to (4), in which the communication unit performs wireless communication with the second base station. After the disconnection, when the first communication quality information and the second communication quality information satisfy a predetermined condition, wireless communication with the second base station is resumed.
  • the predetermined condition changes according to communication quality indicated by the first communication quality information, If the communication quality information indicates a communication quality lower than the predetermined communication quality, the predetermined condition is changed to a reference that facilitates wireless communication with the second base station.
  • the communication terminal according to one aspect of the present invention is the communication terminal according to any one of (1) to (5), wherein the first base station is a base station of a mobile communication network.
  • the second base station is a base station that is not the mobile communication network.
  • the communication terminal according to one aspect of the present invention is the communication terminal according to any one of (1) to (7), wherein the first communication quality information includes the first base station and the communication terminal. Information on the modulation factor and coding rate that can be used when wirelessly communicating with the device is included, and the second communication quality information includes the strength of the radio wave received by the device from the second base station. Contains information to indicate.
  • a base station of one embodiment of the present invention is a base station that performs wireless communication with a communication terminal, and between the communication terminal and another base station that performs wireless communication using a communication method different from the base station.
  • the first communication quality information acquisition unit for acquiring the first communication quality information indicating the communication quality of the second communication quality
  • the second communication quality for acquiring the second communication quality information indicating the communication quality of the wireless communication with the communication terminal
  • the communication A communication disconnection determination unit that determines whether or not to disconnect the wireless communication with the terminal, and a communication unit that disconnects the wireless communication with the communication terminal based on a result determined by the communication disconnection determination unit Prepare.
  • the base station according to one aspect of the present invention is the base station according to (9), wherein the communication disconnection determination unit is based on a disconnection criterion indicating a criterion for disconnecting wireless communication with the communication terminal.
  • the communication disconnection determination unit is based on a disconnection criterion indicating a criterion for disconnecting wireless communication with the communication terminal.
  • the disconnection criterion is further disconnected. If the first communication quality information indicates a communication quality lower than the predetermined communication quality, the disconnection criterion is set to a criterion that is more difficult to disconnect.
  • the base station according to one aspect of the present invention is the base station according to any one of (9) to (10), wherein the communication disconnection determination unit is calculated from a plurality of the first communication quality information. It is further determined whether or not to disconnect the wireless communication with the communication terminal based on at least one of the statistical information to be performed and the number of the communication terminals wirelessly communicating with the own device.
  • the base station according to one aspect of the present invention is the base station according to any one of (9) to (11), wherein the first communication quality information includes the communication terminal and the other base station. From at least one of the above.
  • the present invention it is possible to provide a communication terminal and a base station that improve the communication speed of a plurality of communication terminals connected to the base station.
  • FIG. 1 is a diagram illustrating a communication system according to a first embodiment. It is a block diagram which shows the function structure of the mobile communication network base station which concerns on 1st Embodiment, an access point, and a communication terminal. It is a graph which shows the relationship between the distance of the communication terminal which concerns on 1st Embodiment, and an access point, and 2nd RSSI. It is a flowchart which shows an example of operation
  • FIG. 1 is a diagram illustrating an example of an overview of a communication system 100 according to the first embodiment.
  • the communication system 100 includes a communication terminal 2, a mobile communication network base station 3 A, a mobile communication network base station 3 B, and an access point 4.
  • the communication terminal 2 includes a communication unit 23.
  • the communication unit 23 performs wireless communication with each of the mobile communication network base station 3 ⁇ / b> A, the mobile communication network base station 3 ⁇ / b> B, and the access point 4.
  • the communication unit 23 communicates with a device such as a server connected to the communication line NW via at least one of the mobile communication network base station 3A, the mobile communication network base station 3B, and the access point 4. .
  • the communication terminal 2 is, for example, a mobile personal computer such as a mobile phone, a smartphone, and a tablet computer (tablet PC).
  • the communication line NW is a communication network such as a wireless communication network, a wired communication network connected to the wireless communication network, and the Internet.
  • the wireless communication network is, for example, a mobile phone network that performs communication using a communication method such as LTE (Long Term Evolution).
  • LTE Long Term Evolution
  • the wireless communication is not limited to a communication network constructed according to the LTE method, and may be a communication network such as a 3G method other than the communication network constructed according to the LTE method.
  • the wired communication network is a communication network configured by devices connected by wired connection.
  • the mobile communication network base station 3A wirelessly communicates with the communication terminal 2 located in the mobile communication service area SA3A.
  • the mobile communication network base station 3B wirelessly communicates with the communication terminal 2 located in the mobile communication service area SA3B.
  • the mobile communication network base station 3 is a base station of the above-described wireless communication network.
  • the mobile communication network base station 3 is a base station of a communication scheme such as the LTE scheme.
  • the mobile communication network base station 3 is an example of a first base station.
  • the access point 4 performs wireless communication with the communication terminal 2 located in the area of the access point service area WA4.
  • the access point 4 uses a communication method different from that of the mobile communication network base station 3.
  • the access point 4 is a wireless LAN (Wireless Local Area Network) access point.
  • the access point 4 is an example of a second base station.
  • a plurality of communication terminals are connected to the mobile communication network base station 3.
  • the mobile communication network base station 3 determines the frequency at which the communication terminal communicates with the mobile communication network base station 3 for each of a plurality of communication terminals connected to the mobile communication network base station 3, and the communication terminal
  • a communication amount that is the amount of data to be communicated with the mobile communication network base station 3 at one time is assigned.
  • the frequency of communication increases, the frequency of communication between the communication terminal 2 and the mobile communication network base station 3 increases. The greater the amount of communication allocated, the greater the amount of communication between the communication terminal 2 and the mobile communication network base station 3.
  • the mobile communication network base station 3 assigns communication resources to the connected communication terminal. Specifically, the mobile communication network base station 3 allocates communication resources for communication from the connected communication terminal to the mobile communication network base station 3 by frequency division multiple access or the like. I do.
  • the communication resource is a time during which the communication terminal can transmit / receive data to / from the base station and a frequency that can be used for the data transmission / reception. In the following description, it is also referred to as scheduling that the mobile communication network base station 3 assigns communication resources to a plurality of connected communication terminals.
  • the mobile communication network base station 3 performs scheduling and controls communication with the communication terminal 2. Communication speed of the communication terminal 2 to which many communication resources are allocated from the mobile communication network base station 3 is fast.
  • the communication speed of the communication terminal 2 allocated with less communication resources from the mobile communication network base station 3 is slow.
  • the communication speed is not limited to the amount of communication resources allocated from the mobile communication network base station 3 described above, but varies depending on the weather, interference from other radio signals, and the like.
  • the interference area CA is an area where radio waves used for radio communication output from the mobile communication network base station 3A interfere with radio waves used for radio communication output from the mobile communication network base station 3B.
  • This interference area CA is included in the access point service area WA4 of the access point 4.
  • the access point 4 uses a communication method different from that of the mobile communication network base station 3, the radio wave from the mobile communication network base station 3 does not interfere with the radio wave from the access point 4.
  • the communication terminal 2 located in the interference area CA can wirelessly communicate with any of the mobile communication network base station 3A and the mobile communication network base station 3B.
  • the communication terminal 2 located in the interference area CA receives a radio wave that is interfered by radio waves transmitted from the mobile communication network base station 3A and the mobile communication network base station 3B.
  • the communication terminal 2 communicates with the mobile communication network base station 3 having a better communication state between the mobile communication network base station 3A and the mobile communication network base station 3B.
  • the signal quality deteriorates and high-speed communication becomes impossible.
  • the communication terminal 2 and the mobile communication network base station 3 need to perform low-speed communication, and consume a lot of communication resources for communication of the same amount of data.
  • the signal quality includes a signal-to-interference noise ratio (SINR) or CQI (Channel Quality Indicator) which is an index indicating the downlink channel reception quality for each frequency unit.
  • SINR signal-to-interference noise ratio
  • CQI Channel Quality Indicator
  • High-speed communication refers to communication with a large amount of data that can be transmitted / received per communication resource, specifically, communication with a large MCS (Modulation and Coding Scheme).
  • Low-speed communication refers to communication with a small amount of data that can be transmitted / received per communication resource, specifically, communication with a small MCS.
  • the CQI is specifically information used when the mobile communication network base station 3 determines the MCS.
  • the mobile communication network base station 3 If the mobile communication network base station 3 cannot perform sufficient communication even if the MCS is lowered, it is necessary to retransmit data to the communication terminal 2 or to request data retransmission. Thereby, the mobile communication network base station 3 further consumes communication resources.
  • the mobile communication network base station 3 consumes communication resources, thereby reducing the consumption of communication resources allocated to communication terminals other than the communication terminal 2 located in the interference area CA, and reducing the communication speed of other communication terminals. To do. For this reason, the speed of wireless communication between the communication terminal 2 located in the mobile communication service area SA3 other than the interference area CA and the mobile communication network base station 3 also becomes slow.
  • the speed of wireless communication is the speed of data exchange between the mobile communication network base station 3 and the communication terminal 2 and the speed of communication response between the mobile communication network base station 3 and the communication terminal 2.
  • the communication terminal 2 located in the interference area CA described above switches the wireless communication path.
  • the communication terminal 2 can increase the speed of wireless communication by performing wireless communication with the access point 4. Switching the wireless communication path is also referred to as offload in the following description.
  • the mobile communication network base station 3 can suppress the consumption of the communication resources described above when the communication terminal 2 is offloaded.
  • FIG. 2 is a diagram illustrating an example of functional configurations of the mobile communication network base station 3, the access point 4, and the communication terminal 2 according to the first embodiment.
  • the mobile communication network base station 3 includes a control unit 30.
  • the control unit 30 includes, for example, a CPU, and performs various calculations and information exchange.
  • the control unit 30 includes a terminal communication unit 32 as its function unit.
  • the terminal communication unit 32 is realized by a command from the CPU and a communication interface.
  • the terminal communication unit 32 performs wireless communication with the communication unit 23 included in the communication terminal 2.
  • the access point 4 includes a control unit 40.
  • the control unit 40 includes, for example, a CPU, and performs various calculations and information exchange.
  • the control unit 40 includes a terminal communication unit 42 as its function unit.
  • the terminal communication unit 42 is realized by a command from the CPU and a communication interface.
  • the terminal communication unit 42 performs wireless communication with the communication unit 23 included in the communication terminal 2.
  • the communication terminal 2 includes a control unit 20.
  • the control unit 20 includes, for example, a CPU, and performs various calculations and information exchange.
  • the control unit 20 includes a first communication quality information generation unit 27, a first communication quality information acquisition unit 21, a second communication quality information generation unit 28, a second communication quality information acquisition unit 22, and a communication disconnection determination unit 24.
  • the communication part 23 is provided as the function part.
  • the first communication quality information generation unit 27 generates first communication quality information indicating communication quality between the communication terminal 2 and the mobile communication network base station 3.
  • the first communication quality information includes the above-mentioned CQI, RSSI (Received Signal Strength Indicator) indicating the strength of radio communication radio waves received by the communication terminal 2 from the mobile communication network base station 3. ), Information including SNR (Signal to Noise Ratio) of radio communication radio waves received from the mobile communication network base station 3 by the communication terminal 2.
  • the RSSI indicating the radio wave intensity of the wireless communication received by the communication terminal 2 from the mobile communication network base station 3 is also referred to as a first RSSI.
  • the first communication quality information generation unit 27 generates the first communication quality information based on the first RSSI and the communication resources allocated from the mobile communication network base station 3.
  • the first communication quality information generation unit 27 supplies the generated first communication quality information to the first communication quality information acquisition unit 21.
  • the first communication quality information acquisition unit 21 acquires first communication quality information from the first communication quality information generation unit 27.
  • the first communication quality information acquisition unit 21 supplies the first communication quality information acquired from the first communication quality information generation unit 27 to the communication disconnection determination unit 24.
  • the second communication quality information generation unit 28 generates second communication quality information indicating the communication quality between the communication terminal 2 and the access point 4.
  • the second communication quality information is information including RSSI indicating the intensity of radio waves received from the access point 4 by the communication terminal 2, SNR between the communication terminal 2 and the access point 4, and the like.
  • RSSI indicating the strength of radio communication radio waves received from the access point 4 by the communication terminal 2 is also referred to as second RSSI.
  • the second communication quality information generation unit 28 supplies the generated second communication quality information to the second communication quality information acquisition unit 22.
  • the second communication quality information acquisition unit 22 acquires second communication quality information from the second communication quality information generation unit 28.
  • the second communication quality information acquisition unit 22 supplies the second communication quality information acquired from the second communication quality information generation unit 28 to the communication disconnection determination unit 24.
  • the communication disconnection determination unit 24 acquires the first communication quality information from the first communication quality information acquisition unit 21.
  • the communication disconnection determination unit 24 acquires second communication quality information from the second communication quality information acquisition unit 22. Based on the first communication quality information acquired from the first communication quality information acquisition unit 21 and the second communication quality information acquired from the second communication quality information acquisition unit 22, the communication disconnection determination unit 24 4 determines whether or not to disconnect the wireless communication with 4.
  • the communication disconnection determination unit 24 when the communication quality indicated by the first communication quality information is higher than a predetermined communication quality, the communication disconnection determination unit 24 according to the present embodiment provides a disconnection criterion for communication with the access point 4. Is set to a standard that is easy to cut. When the communication quality indicated by the first communication quality information is lower than the predetermined communication quality, the communication disconnection determination unit 24 sets the disconnection criterion for communication with the access point 4 to a criterion that makes it difficult to disconnect. . The communication disconnection determination unit 24 determines whether to disconnect communication with the access point 4 based on the quality information of the second communication and the communication disconnection criterion. The communication unit 23 disconnects the wireless communication with the access point 4 based on the result determined by the communication disconnection determination unit 24.
  • the communication disconnection determination unit 24 determines whether to disconnect the wireless communication with the access point 4 based on a disconnection criterion indicating a criterion for disconnecting the wireless communication with the access point 4.
  • the communication disconnection determination unit 24 sets the disconnection reference to the first reference.
  • the communication disconnection determination unit 24 sets the disconnection reference to the second reference that is harder to disconnect than the first reference. To do.
  • the predetermined communication quality is a communication quality preset in the communication terminal 2.
  • the communication disconnection determination unit 24 may switch the disconnection criteria in multiple stages based on the first communication quality by providing a plurality of predetermined communication qualities. In this case, the communication disconnection determination unit 24 sets a criterion that facilitates disconnection as the disconnection criterion as the first communication quality is higher. The communication disconnection determination unit 24 may set a disconnection criterion in proportion to the first communication quality.
  • FIG. 3 is a graph showing the relationship between the distance between the communication terminal 2 and the access point 4 and the second RSSI.
  • the relationship between the distance between the communication terminal 2 and the access point 4 and the relationship with the second RSSI shows an example in the case of a free space without an obstacle or the like.
  • the vertical axis of the graph shown in FIG. 3 indicates RSSI indicating the radio field intensity of radio communication received by the communication terminal 2 from the access point 4.
  • the horizontal axis of the graph shown in FIG. 3 indicates the distance between the communication terminal 2 and the access point 4.
  • This graph shows that the higher the CQI included in the first communication quality information, the easier the wireless communication between the communication terminal 2 and the access point 4 is disconnected.
  • the above-described disconnection criterion is set according to the value of CQI included in the first communication quality information.
  • the disconnection criterion is a threshold relating to communication quality of wireless communication between the access point 4 and the communication terminal 2.
  • the threshold value TH1 is a disconnection criterion when, for example, the CQI corresponding to the predetermined communication quality is “7” and the CQI included in the first communication quality information is “10”.
  • the communication disconnection determination unit 24 sets the disconnection criterion to a criterion that facilitates disconnection.
  • the criterion for easy cutting is a criterion for cutting when the second RSSI is lower than “ ⁇ 60 [dB]”. At this time, the connectable distance between the communication terminal 2 and the access point 4 is the distance L1.
  • the threshold value TH2 is, for example, a disconnection criterion when the CQI included in the first communication quality information is “5”.
  • the communication disconnection determination unit 24 sets the disconnection criterion to a criterion that makes it difficult to disconnect.
  • the criterion that is difficult to cut is a criterion for cutting when the second RSSI is lower than “ ⁇ 75 [dB]”.
  • the connectable distance between the communication terminal 2 and the access point 4 is the distance L2. Since the distance L1 is shorter than the distance L2, the threshold value TH1 is a reference that is easier to cut than the threshold value TH2.
  • the communication disconnection determination unit 24 sets the disconnection criterion so that wireless communication can be performed with the access point 4 that is further away from the own device as the first communication quality information indicates worse communication quality. In addition, the communication disconnection determination unit 24 sets the disconnection criterion so that the wireless communication with the access point 4 that is closer to the own device can be disconnected as the first communication quality information indicates better communication quality.
  • FIG. 4 is a flowchart showing an example of the operation of the communication terminal 2.
  • the operation procedure shown here is an example, and the operation procedure may be omitted or the operation procedure may be added.
  • the first communication quality information generation unit 27 generates first communication quality information indicating communication quality between the communication terminal 2 and the mobile communication network base station 3. Specifically, the first communication quality information generation unit 27 receives the first communication quality information from the communication unit 23 based on the RSSI and SNR of radio waves from the mobile communication network base station 3 received by the communication unit 23. Is generated. The first communication quality information acquisition unit 21 acquires first communication quality information from the first communication quality information generation unit 27 (step S10). The first communication quality information acquisition unit 21 supplies the first communication quality information acquired from the first communication quality information generation unit 27 to the communication disconnection determination unit 24.
  • the second communication quality information generation unit 28 generates second communication quality information indicating the communication quality between the communication terminal 2 and the access point 4. Specifically, the second communication quality information generation unit 28 generates second communication quality information from the communication unit 23 based on the RSSI and SNR of radio waves from the access point 4 received by the communication unit 23.
  • the second communication quality information acquisition unit 22 acquires second communication quality information from the second communication quality information generation unit 28 (step S20). The second communication quality information acquisition unit 22 supplies the second communication quality information acquired from the second communication quality information generation unit 28 to the communication disconnection determination unit 24.
  • the communication disconnection determination unit 24 acquires first communication quality information from the first communication quality information acquisition unit 21.
  • the communication disconnection determination unit 24 acquires second communication quality information from the second communication quality information acquisition unit 22.
  • the communication disconnection determination unit 24 determines whether or not to disconnect the wireless communication with the access point 4 based on the first communication quality information and the second communication quality information (step S30).
  • step S30 the operation for determining whether or not the communication disconnection determination unit 24 disconnects the wireless communication with the access point 4 will be described in detail.
  • FIG. 5 is a flowchart illustrating an example of the disconnection determination operation of the communication disconnection determination unit 24.
  • the communication disconnection determination unit 24 determines whether the communication quality indicated by the first communication quality information is higher than a predetermined communication quality (step S31). If the communication disconnection determination unit 24 determines that the communication quality indicated by the first communication quality information is higher than the predetermined communication quality (step S31; YES), the communication disconnection determination unit 24 performs communication with the access point 4.
  • the cutting standard is set to a standard that facilitates cutting (step S32). When the communication disconnection determination unit 24 determines that the communication quality indicated by the first communication quality information is lower than the predetermined communication quality (step S31; NO), the communication disconnection determination unit 24 performs communication with the access point 4.
  • the cutting reference is set to a reference that is difficult to cut (step S34).
  • the communication disconnection determination unit 24 is based on the first communication quality information acquired from the first communication quality information acquisition unit 21, the second communication quality information acquired from the second communication quality information acquisition unit 22, and the disconnection criterion. Then, it is determined whether to disconnect the wireless communication with the access point 4 (step S33). Specifically, the communication disconnection determination unit 24 determines to disconnect the wireless communication with the access point 4 when the communication quality indicated by the second communication quality information is below the threshold.
  • the communication disconnection determination unit 24 supplies the determination result to the communication unit 23 (step S40).
  • the communication unit 23 acquires a determination result from the communication disconnection determination unit 24.
  • the communication unit 23 disconnects communication with the access point 4 based on the determination result acquired from the communication disconnection determination unit 24 (step S50).
  • the communication unit 23 starts wireless communication with the mobile communication network base station 3 (step S60).
  • the communication disconnection determination unit 24 uses not only the second communication quality information indicating the communication quality with the access point 4 but also the mobile communication using a communication method different from the access point 4. Based on the first communication quality information indicating the communication quality with the network base station 3, the disconnection of the wireless communication with the access point 4 is determined. Since the communication terminal 2 disconnects the communication with the access point 4 further based on the first communication quality information, the mobile terminal consumes a large amount of communication resources to the mobile communication network base station 3. It can be offloaded from the communication network base station 3 to the access point 4. Thereby, the communication terminal 2 can improve the communication speed of the communication system 100 whole. That is, the communication terminal 2 can improve the communication speed of a plurality of communication terminals connected to the mobile communication network base station 3 and the access point 4.
  • the communication terminal 2 determines the communication speed of the entire communication system 100 without changing the operation of the access point 4 that has already been installed in order to determine whether or not the own device disconnects communication with the access point 4. Can be improved. Moreover, the effect mentioned above can be acquired by updating software, without changing the hardware of the communication terminal 2.
  • the communication terminal 2 maintains the communication quality of the access point 4 by preferentially offloading the communication terminal located in an area where radio waves output from the mobile communication network base station 3 interfere with each other, Communication quality of the entire communication system 100 can be improved.
  • the first communication quality information generated by the first communication quality information generation unit 27 includes the number of other communication terminals connected to the mobile communication network base station 3 and the past of the mobile communication network base station 3.
  • the communication quality statistical information may be included. Thereby, the communication terminal 2 can be offloaded with high accuracy.
  • the second communication quality information generated by the second communication quality information generation unit 28 includes the number of other communication terminals connected to the access point 4 and statistical information on the past communication quality of the access point 4. It may be. In this case, the communication terminal 2 can be offloaded with high accuracy.
  • the first communication quality information is CQI.
  • the present invention is not limited to this. If the first communication quality information includes at least one of information on the modulation degree and coding rate of communication that can be used when the mobile communication network base station 3 and the communication terminal 2 perform wireless communication. Good.
  • the second communication quality information is the second RSSI information.
  • the second communication quality information may be generated by information including at least information indicating the quality of radio waves received from the access point 4 by the communication terminal 2.
  • the first base station is a mobile communication network base station.
  • the second base station is a wireless LAN.
  • the second base station only needs to correspond to a communication medium of a different type from the mobile communication network.
  • the second base station may be an access point of a high speed wireless communication network. Examples of the high-speed wireless communication network include wireless MAN (Wireless Metropolitan Area Network).
  • the communication unit 23 after disconnecting the wireless communication with the access point 4, if the first communication quality information and the second communication quality information satisfy a predetermined condition, The wireless communication may be resumed.
  • This predetermined condition is a condition of the communication quality indicated by the first communication quality information set in advance in the communication terminal 2 and the communication quality indicated by the second communication quality information set in advance in the communication terminal 2. More specifically, the communication unit 23 indicates that the value indicated by the current first communication quality information is worse than the value indicated by the preset first communication quality information, and the second communication quality information When the value indicated by indicates a quality better than the preset second communication quality information, the wireless communication with the access point 4 is resumed. That is, the predetermined condition changes according to the communication quality indicated by the first communication quality information. When the first communication quality information indicates a communication quality lower than the predetermined communication quality, the communication unit 23 changes the predetermined condition to a reference that facilitates wireless communication with the second base station.
  • FIG. 6 is a block diagram illustrating an example of functional configurations of the mobile communication network base station 3, the communication terminal 2a, and the access point 4a according to the second embodiment.
  • the mobile communication network base station 3 has the same configuration as that of the first embodiment described above.
  • the access point 4a of this embodiment performs wireless communication with a plurality of communication terminals.
  • the communication terminal 2a includes a control unit 20a.
  • the control unit 20a includes, for example, a CPU, and performs various calculations and information exchange.
  • the control unit 20a includes the communication unit 23, the first communication quality information generation unit 27, the first communication quality information acquisition unit 21, the second communication quality information generation unit 28, and the second communication quality information acquisition unit 22 described above. 1st communication quality information transmission part 25 and 2nd communication quality information transmission part 26 are provided.
  • the first communication quality information acquisition unit 21 acquires first communication quality information from the first communication quality information generation unit 27.
  • the first communication quality information acquisition unit 21 supplies the first communication quality information acquired from the first communication quality information generation unit 27 to the first communication quality information transmission unit 25.
  • the first communication quality information transmission unit 25 acquires first communication quality information from the first communication quality information acquisition unit 21.
  • the first communication quality information transmission unit 25 supplies the first communication quality information acquired from the first communication quality information acquisition unit 21 to the access point 4a.
  • the first communication quality information acquisition unit 21 may supply the first communication quality information via the communication unit 23.
  • the second communication quality information acquisition unit 22 acquires second communication quality information from the second communication quality information generation unit 28.
  • the second communication quality information acquisition unit 22 supplies the second communication quality information acquired from the second communication quality information generation unit 28 to the second communication quality information transmission unit 26.
  • the second communication quality information transmission unit 26 acquires second communication quality information from the second communication quality information acquisition unit 22.
  • the second communication quality information transmission unit 26 supplies the second communication quality information acquired from the second communication quality information acquisition unit 22 to the access point 4a. Note that the second communication quality information acquisition unit 26 may supply the second communication quality information via the communication unit 23.
  • the access point 4a includes a control unit 40a.
  • the control unit 40a includes, for example, a CPU, and performs various calculations and information exchange.
  • the control unit 40a includes a first communication quality information acquisition unit 43, a second communication quality information acquisition unit 44, a priority setting unit 45, and a communication disconnection determination unit 46.
  • the first communication quality information acquisition unit 43 acquires the first communication quality information from the first communication quality information transmission unit 25.
  • the first communication quality information acquisition unit 43 supplies the first communication quality information acquired from the first communication quality information transmission unit 25 to the priority setting unit 45.
  • the first communication quality information acquisition unit 43 supplies the first communication quality information acquired from the first communication quality information transmission unit 25 to the communication disconnection determination unit 46.
  • the second communication quality information acquisition unit 44 acquires second communication quality information from the second communication quality information transmission unit 26.
  • the second communication quality information acquisition unit 44 supplies the second communication quality information acquired from the second communication quality information transmission unit 26 to the priority setting unit 45.
  • the second communication quality information acquisition unit 44 supplies the second communication quality information acquired from the second communication quality information transmission unit 26 to the communication disconnection determination unit 46.
  • the priority setting unit 45 acquires the first communication quality information from the first communication quality information acquisition unit 43.
  • the priority setting unit 45 acquires second communication quality information from the second communication quality information acquisition unit 44.
  • the priority setting unit 45 is based on the first communication quality information acquired from the first communication quality information acquisition unit 43 and the second communication quality information acquired from the second communication quality information acquisition unit 44.
  • the priority indicating the degree of ease of disconnecting the wireless communication with 2a is set for each of the communication terminals 2a connected to the own apparatus.
  • the priority setting unit 45 indicates a communication in which the communication quality indicated by the first communication quality information is higher than the predetermined communication, and the second communication quality information is lower than the predetermined communication quality.
  • a high priority is set as the priority of disconnection of wireless communication.
  • this high priority is also described as the first priority.
  • the priority setting unit 45 indicates that the communication quality indicated by the first communication quality information indicates a communication quality lower than the predetermined communication quality, and the second communication quality information indicates a communication quality higher than the predetermined communication quality.
  • the priority setting unit 45 indicates that the communication quality indicated by the first communication quality information indicates a communication quality lower than the predetermined communication quality, and the second communication quality information indicates a communication quality lower than the predetermined communication quality. Is set with a second priority.
  • the priority setting unit 45 The third priority is set.
  • the first priority is higher than the second priority.
  • the second priority is higher than the third priority and the fourth priority.
  • the third priority is higher than the fourth priority.
  • the priority setting unit 45 supplies priority information indicating the result of setting the priority to the communication disconnection determination unit 46.
  • the communication disconnection determination unit 46 acquires the first communication quality information from the first communication quality information acquisition unit 43.
  • the communication disconnection determination unit 46 acquires the second communication quality information from the second communication quality information acquisition unit 44.
  • the communication disconnection determination unit 46 acquires priority information from the priority setting unit 45.
  • the communication disconnection determination unit 46 acquires the first communication quality information and the second communication quality information for each communication terminal connected to the own device.
  • the communication disconnection determination unit 46 is based on the first communication quality information acquired from the first communication quality information acquisition unit 43 and the second communication quality information acquired from the second communication quality information acquisition unit 44. It is determined whether or not to disconnect the wireless communication with 2a.
  • the communication disconnection determination unit 46 when disconnecting the wireless communication with the communication terminal 2a, is based on the priority set by the priority setting unit 45, and is wireless with the communication terminal 2a. It is determined whether or not to disconnect communication.
  • the communication disconnection determination unit 46 supplies the determination result to the terminal communication unit 42.
  • the terminal communication unit 42 acquires the determination result from the communication disconnection determination unit 46.
  • the terminal communication unit 42 disconnects the wireless communication with the communication terminal 2a connected to the own device based on the determination result acquired from the communication disconnection determination unit 46.
  • FIG. 7 is a table showing an example of priorities for each communication terminal connected to the access point 4a.
  • the priority information set by the priority setting unit 45 is a state in which the connection number, the terminal identification number, the first communication quality information, the second communication quality information, and the disconnection priority are associated with each communication terminal. Included.
  • the connection number is a number assigned in the order in which the communication terminal 2a is connected to the access point 4a. This connection number is not essential.
  • the terminal identification number is information for identifying a communication terminal connected to the access point 4a.
  • the disconnection priority is information indicating a priority for disconnecting wireless communication between the access point 4a and the communication terminal. In this example, a communication terminal having a smaller disconnection priority value indicates a higher disconnection priority.
  • the priority setting unit 45 sets the disconnection priority based on the first communication quality information and the second communication quality information.
  • the communication disconnection determination unit 46 includes the connection number “1”, the terminal identification number “C1”, the first communication quality information “10”, the second communication quality information “ ⁇ 20”, and the disconnection priority “ Disconnect from the communication terminal 2a to which the priority of 1 ′′ is assigned.
  • the communication disconnection determination unit 46 determines to sequentially disconnect the wireless communication with the communication terminal 2 a from the connection number “1” to the connection number “3”, and supplies the determination result to the terminal communication unit 42.
  • the communication disconnection determination unit 46 has fewer than a predetermined number of communication terminals connected to its own device. If it is found, the cutting process is terminated.
  • the communication disconnection determination unit 46 may not perform the disconnection determination process when the number of communication terminals connected to the own device is smaller than a predetermined number.
  • the number of communication terminals connected to the own device is smaller than a predetermined number, there is a margin in the processing of the own device, and by offloading communication between the communication terminal 2a and the mobile communication network base station 3 This is because consumption of communication resources of the mobile communication network base station 3 can be suppressed.
  • FIG. 8 is a flowchart showing an example of the operation of the access point 4a.
  • the operation procedure shown here is an example, and the operation procedure may be omitted or the operation procedure may be added.
  • the first communication quality information acquisition unit 43 acquires the first communication quality information from the first communication quality information transmission unit 25 (step S910).
  • the first communication quality information acquisition unit 43 supplies the first communication quality information to the priority setting unit 45.
  • the first communication quality information acquisition unit 43 supplies the first communication quality information to the communication disconnection determination unit 46.
  • the second communication quality information acquisition unit 44 acquires second communication quality information from the second communication quality information transmission unit 26 (step S920).
  • the second communication quality information acquisition unit 44 supplies the second communication quality information to the priority setting unit 45.
  • the second communication quality information acquisition unit 44 supplies the second communication quality information to the communication disconnection determination unit 46.
  • the priority setting unit 45 sets the priority (step S930).
  • the priority setting unit 45 supplies priority information indicating the set priority to the communication disconnection determination unit 46.
  • the communication disconnection determination unit 46 acquires priority information from the priority setting unit 45.
  • the communication disconnection determination unit 46 determines whether or not to disconnect the wireless communication with the communication terminal based on the priority information (step S940). If there is no communication terminal that disconnects wireless communication, the communication disconnection determination unit 46 ends the process (step S940; NO).
  • the communication disconnection determination unit 46 supplies the determination result to the terminal communication unit 42 (step S940; YES).
  • the terminal communication unit 42 acquires the determination result from the communication disconnection determination unit 46.
  • the terminal communication unit 42 disconnects wireless communication with the communication terminal based on the determination result acquired from the communication disconnection determination unit 46 (step S950).
  • the access point 4a is a communication that disconnects wireless communication from among a plurality of communication terminals connected to its own device based on the first communication quality information and the second communication quality information. Determine the terminal. Thereby, the access point 4a can maintain the wireless communication with the own terminal for the communication terminal located in the interference area CA. Further, the access point 4a disconnects wireless communication with a communication terminal that is not located in the interference area CA. Thereby, the access point 4a can improve the communication speed of the communication system 100 whole.
  • the first communication quality information acquisition unit 43 has described the configuration for acquiring the first communication quality information from the first communication quality information transmission unit 25, but is not limited thereto.
  • the first communication quality information acquisition unit 43 may be supplied with the first communication quality information from the mobile communication network base station 3.
  • the mobile communication network base station 3 may include the first communication quality information transmission unit 31.
  • the first communication quality information supplied from the first communication quality information transmitter 31 may include information that is not supplied to the communication terminal 2.
  • the information that is not supplied is the number of communication terminals connected to the mobile communication network base station 3, information on statistics of past communication quality, and the like.
  • the access point 4a determines the communication terminal to be disconnected based on the first communication quality information including information that is not supplied to the communication terminal 2a. Can be communicated with.
  • the access point 4a includes the priority setting unit 45 .
  • the priority setting unit 45 is not essential.
  • the communication disconnection determination unit 46 of the access point 4a that does not include the priority setting unit 45 is similar to the communication disconnection determination unit 24 of the first embodiment described above, and includes first communication quality information and second communication quality information. Based on the above, it is determined whether or not the wireless communication with the communication terminal 2 is disconnected. For example, when the number of communication terminals 2a connected to the mobile communication network base station 3 exceeds a predetermined number, the access point 4a may set the disconnection criterion to a criterion that makes disconnection more difficult.
  • the access point 4a may set the disconnection criterion according to the average value and the variance value of the communication quality of the communication terminals connected to the mobile communication network base station 3. Specifically, since the access point 4a has a poor average communication quality and the variance value is smaller than a predetermined value, the improvement effect due to offload tends to be small. Set to. The access point 4a disconnects the wireless communication with the communication terminal having a low offload effect according to the disconnection priority set by the priority setting unit 45, and causes the communication terminal having a high offload effect to wirelessly communicate with the own device. You can continue.
  • the communication disconnection determination unit 46 is further based on at least one of statistical information calculated from a plurality of pieces of first communication quality information and the number of communication terminals 2a that wirelessly communicate with its own device. It may be determined whether to disconnect the wireless communication.
  • the units included in the communication terminal 2, the communication terminal 2a, the mobile communication network base station 3, the access point 4, and the access point 4a in each of the above embodiments may be realized by dedicated hardware. Further, it may be realized by a memory and a microprocessor.
  • the communication terminal 2, the communication terminal 2a, the mobile communication network base station 3, the access point 4, and each unit included in the access point 4a are configured by a memory and a CPU (Central Processing Unit), and the communication terminal 2, the communication terminal 2a, You may implement
  • a CPU Central Processing Unit
  • a program for realizing the functions of each unit included in the communication terminal 2, the communication terminal 2a, the mobile communication network base station 3, the access point 4, and the access point 4a is recorded on a computer-readable recording medium. Processing may be performed by causing a computer system to read and execute a program recorded on a medium.
  • the “computer system” includes an OS and hardware such as peripheral devices.
  • the “computer system” includes a homepage providing environment (or display environment) if a WWW system is used.
  • the “computer-readable recording medium” refers to a storage device such as a flexible medium, a magneto-optical disk, a portable medium such as a ROM or a CD-ROM, and a hard disk incorporated in a computer system.
  • the “computer-readable recording medium” dynamically holds a program for a short time like a communication line when transmitting a program via a network such as the Internet or a communication line such as a telephone line.
  • a volatile memory in a computer system serving as a server or a client in that case, and a program that holds a program for a certain period of time are also included.
  • the program may be a program for realizing a part of the functions described above, and may be a program capable of realizing the functions described above in combination with a program already recorded in a computer system.

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  • Computer Networks & Wireless Communication (AREA)
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  • Mobile Radio Communication Systems (AREA)

Abstract

According to the present invention, a communication terminal, which performs wireless communication with a first base station and a second base station that uses a communication method differing from that of the first base station, is provided with: a first communication quality information acquisition unit which acquires first communication quality information which indicates the communication quality of wireless communication with the first base station; a second communication quality information acquisition unit which acquires second communication quality information which indicates the communication quality of wireless communication with the second base station; a communication disconnection determination unit which determines whether to disconnect the wireless communication with the second base station on the basis of the first communication quality information acquired by the first communication quality information acquisition unit and the second communication quality information acquired by the second communication quality information acquisition unit; and a communication unit which disconnects the wireless communication with the second base station on the basis of the result determined by the communication disconnection determination unit.

Description

通信端末及び基地局Communication terminal and base station
 本発明は、通信端末及び基地局に関する。
 本願は、2017年3月27日に、日本に出願された特願2017-61779号に基づき優先権を主張し、その内容をここに援用する。
The present invention relates to a communication terminal and a base station.
This application claims priority on March 27, 2017 based on Japanese Patent Application No. 2017-61779 filed in Japan, the contents of which are incorporated herein by reference.
 従来、無線通信の電波同士の干渉を、通信端末がこの電波を受信した信号の強度によって判定する技術が知られている(例えば、特許文献1)。 2. Description of the Related Art Conventionally, a technique is known in which a communication terminal determines interference between radio communication radio waves based on the intensity of a signal received from the radio wave (for example, Patent Document 1).
特表2016-539565号公報Special table 2016-539565 gazette
 従来の技術では、信号同士の干渉を、この信号の強度によって判定し、通信の周波数チャネルを選択することにより、信号同士の干渉による通信速度の低下を抑制する。しかし、信号同士の干渉があると、基地局に接続される複数の通信端末の通信速度が低下するという影響があることは知られていなかった。
 本発明は、上記問題に鑑みて為されたものであり、基地局に接続される複数の通信端末の通信速度を改善する通信端末及び基地局を提供することを目的とする。
In the prior art, interference between signals is determined based on the intensity of the signal, and a communication frequency channel is selected to suppress a decrease in communication speed due to interference between signals. However, it has not been known that if there is interference between signals, the communication speed of a plurality of communication terminals connected to the base station is reduced.
The present invention has been made in view of the above problems, and an object thereof is to provide a communication terminal and a base station that improve the communication speed of a plurality of communication terminals connected to the base station.
 (1)本発明の一態様の通信端末は、第1の基地局及び前記第1の基地局とは異なる通信の方式を用いる第2の基地局のそれぞれと無線通信する通信端末であって、前記第1の基地局との間の無線通信の通信品質を示す第1の通信品質情報を取得する第1通信品質情報取得部と、前記第2の基地局との間の無線通信の通信品質を示す第2の通信品質情報を取得する第2通信品質情報取得部と、前記第1通信品質情報取得部が取得する前記第1の通信品質情報と、前記第2通信品質情報取得部が取得する前記第2の通信品質情報とに基づいて、前記第2の基地局との間の無線通信を切断するか否かを判定する通信切断判定部と、前記通信切断判定部が判定した結果に基づいて前記第2の基地局との間の無線通信を切断する通信部とを備える。 (1) A communication terminal according to an aspect of the present invention is a communication terminal that wirelessly communicates with each of a first base station and a second base station that uses a communication method different from that of the first base station, Communication quality of wireless communication between the first communication quality information acquisition unit for acquiring first communication quality information indicating the communication quality of wireless communication with the first base station, and the second base station The second communication quality information acquisition unit that acquires the second communication quality information indicating, the first communication quality information acquired by the first communication quality information acquisition unit, and the second communication quality information acquisition unit A communication disconnection determination unit that determines whether or not to disconnect the wireless communication with the second base station based on the second communication quality information, and a result determined by the communication disconnection determination unit And a communication unit that disconnects wireless communication with the second base station.
 (2)本発明の一態様の通信端末は、上記(1)の通信端末において、前記通信切断判定部は、前記第2の基地局との間の無線通信を切断する基準を示す切断基準に基づいて前記第2の基地局との間の無線通信を切断するか否かを判定し、前記第1の通信品質情報が所定の通信品質よりも高い通信品質を示す場合には、前記切断基準をより切断しやすい基準へと設定し、前記第1の通信品質情報が前記所定の通信品質よりも低い通信品質を示す場合には、前記切断基準をより切断しにくい基準へと設定する。 (2) In the communication terminal according to one aspect of the present invention, in the communication terminal according to (1), the communication disconnection determination unit may use a disconnection criterion indicating a criterion for disconnecting wireless communication with the second base station. If it is determined whether to disconnect the wireless communication with the second base station based on the first communication quality information indicates a communication quality higher than a predetermined communication quality, the disconnection criterion If the first communication quality information indicates a communication quality lower than the predetermined communication quality, the disconnection criterion is set to a criterion that is more difficult to disconnect.
 (3)本発明の一態様の通信端末は、上記(2)に記載の通信端末において、前記切断基準とは第2の基地局との間の無線通信の通信品質に関する閾値であって、前記通信切断判定部は、前記第1の通信品質情報が示す通信品質が前記所定の通信品質よりも高い通信品質を示す場合には、前記閾値をより高い値に設定し、前記第1の通信品質情報が示す通信品質が前記所定の通信品質よりも低い通信品質を示す場合には、前記閾値をより低い値に設定し、前記第2の通信品質情報が示す通信品質が前記閾値を下回る場合には、前記第2の基地局との間の無線通信を切断すると判定する。 (3) In the communication terminal according to one aspect of the present invention, in the communication terminal according to (2), the disconnection criterion is a threshold value related to communication quality of wireless communication with the second base station, and The communication disconnection determination unit sets the threshold to a higher value when the communication quality indicated by the first communication quality information indicates a communication quality higher than the predetermined communication quality, and the first communication quality When the communication quality indicated by the information indicates a communication quality lower than the predetermined communication quality, the threshold is set to a lower value, and the communication quality indicated by the second communication quality information is lower than the threshold. Determines to disconnect the wireless communication with the second base station.
 (4)本発明の一態様の通信端末は、上記(1)から(3)のいずれか一に記載の通信端末において、前記通信部は、前記第2の基地局との間の無線通信の切断後、前記第1の基地局と無線通信する。 (4) The communication terminal according to one aspect of the present invention is the communication terminal according to any one of (1) to (3), in which the communication unit performs wireless communication with the second base station. After disconnection, wireless communication is performed with the first base station.
 (5)本発明の一態様の通信端末は、上記(1)から(4)のいずれか一に記載の通信端末において、前記通信部は、前記第2の基地局との間の無線通信の切断後、前記第1の通信品質情報と、前記第2の通信品質情報とが、所定の条件を満たす場合には、前記第2の基地局との無線通信を再開する。 (5) The communication terminal according to one aspect of the present invention is the communication terminal according to any one of (1) to (4), in which the communication unit performs wireless communication with the second base station. After the disconnection, when the first communication quality information and the second communication quality information satisfy a predetermined condition, wireless communication with the second base station is resumed.
 (6)本発明の一態様の通信端末は、上記(5)に記載の通信端末において、前記所定の条件は、前記第1の通信品質情報が示す通信品質に応じて変化し、前記第1の通信品質情報が前記所定の通信品質よりも低い通信品質を示す場合には、前記所定の条件をより前記第2の基地局と無線通信しやすい基準へと変化させる。 (6) In the communication terminal according to one aspect of the present invention, in the communication terminal according to (5), the predetermined condition changes according to communication quality indicated by the first communication quality information, If the communication quality information indicates a communication quality lower than the predetermined communication quality, the predetermined condition is changed to a reference that facilitates wireless communication with the second base station.
 (7)本発明の一態様の通信端末は、上記(1)から(5)のいずれか一に記載の通信端末において、前記第1の基地局とは、移動体通信網の基地局であり、前記第2の基地局は、前記移動体通信網ではない基地局である。 (7) The communication terminal according to one aspect of the present invention is the communication terminal according to any one of (1) to (5), wherein the first base station is a base station of a mobile communication network. The second base station is a base station that is not the mobile communication network.
 (8)本発明の一態様の通信端末は、上記(1)から(7)のいずれか一に記載の通信端末において、前記第1の通信品質情報には、前記第1の基地局と自装置とが無線通信する際に利用可能な変調度、符号化率に関する情報が含まれ、前記第2の通信品質情報には、自装置が前記第2の基地局から受信する電波の強さを示す情報が含まれる。 (8) The communication terminal according to one aspect of the present invention is the communication terminal according to any one of (1) to (7), wherein the first communication quality information includes the first base station and the communication terminal. Information on the modulation factor and coding rate that can be used when wirelessly communicating with the device is included, and the second communication quality information includes the strength of the radio wave received by the device from the second base station. Contains information to indicate.
 (9)本発明の一態様の基地局は、通信端末と無線通信する基地局であって、当該基地局とは異なる通信方式を用いて無線通信する他の基地局と当該通信端末との間の通信品質を示す第1の通信品質情報を取得する第1通信品質情報取得部と、前記通信端末との間の無線通信の通信品質を示す第2の通信品質情報を取得する第2通信品質情報取得部と、前記第1通信品質情報取得部が取得する前記第1の通信品質情報と、前記第2通信品質情報取得部が取得する前記第2の通信品質情報とに基づいて、前記通信端末との間の無線通信を切断するか否かを判定する通信切断判定部と、前記通信切断判定部が判定した結果に基づいて前記通信端末との間の無線通信を切断する通信部とを備える。 (9) A base station of one embodiment of the present invention is a base station that performs wireless communication with a communication terminal, and between the communication terminal and another base station that performs wireless communication using a communication method different from the base station. The first communication quality information acquisition unit for acquiring the first communication quality information indicating the communication quality of the second communication quality, and the second communication quality for acquiring the second communication quality information indicating the communication quality of the wireless communication with the communication terminal Based on the information acquisition unit, the first communication quality information acquired by the first communication quality information acquisition unit, and the second communication quality information acquired by the second communication quality information acquisition unit, the communication A communication disconnection determination unit that determines whether or not to disconnect the wireless communication with the terminal, and a communication unit that disconnects the wireless communication with the communication terminal based on a result determined by the communication disconnection determination unit Prepare.
 (10)本発明の一態様の基地局は、上記(9)に記載の基地局において、前記通信切断判定部は、前記通信端末との間の無線通信を切断する基準を示す切断基準に基づいて前記通信端末との間の無線通信を切断するか否かを判定し、前記第1の通信品質情報が所定の通信品質よりも高い通信品質を示す場合には、前記切断基準をより切断しやすい基準へと設定し、前記第1の通信品質情報が当該所定の通信品質よりも低い通信品質を示す場合には、前記切断基準をより切断しにくい基準へと設定する。 (10) The base station according to one aspect of the present invention is the base station according to (9), wherein the communication disconnection determination unit is based on a disconnection criterion indicating a criterion for disconnecting wireless communication with the communication terminal. To determine whether to disconnect the wireless communication with the communication terminal, and when the first communication quality information indicates a communication quality higher than a predetermined communication quality, the disconnection criterion is further disconnected. If the first communication quality information indicates a communication quality lower than the predetermined communication quality, the disconnection criterion is set to a criterion that is more difficult to disconnect.
 (11)本発明の一態様の基地局は、上記(9)から(10)のいずれか一に記載の基地局において、前記通信切断判定部は、複数の前記第1の通信品質情報から算出される統計情報、自装置と無線通信する前記通信端末の数のうち少なくとも1つに更に基づいて、前記通信端末との間の無線通信を切断するか否かを判定する。 (11) The base station according to one aspect of the present invention is the base station according to any one of (9) to (10), wherein the communication disconnection determination unit is calculated from a plurality of the first communication quality information. It is further determined whether or not to disconnect the wireless communication with the communication terminal based on at least one of the statistical information to be performed and the number of the communication terminals wirelessly communicating with the own device.
 (12)本発明の一態様の基地局は、上記(9)から(11)のいずれか一に記載の基地局において、前記第1の通信品質情報は、前記通信端末及び前記他の基地局のうち少なくとも1つから取得する。 (12) The base station according to one aspect of the present invention is the base station according to any one of (9) to (11), wherein the first communication quality information includes the communication terminal and the other base station. From at least one of the above.
 本発明によれば、基地局に接続される複数の通信端末の通信速度を改善する通信端末及び基地局を提供することができる。 According to the present invention, it is possible to provide a communication terminal and a base station that improve the communication speed of a plurality of communication terminals connected to the base station.
第1の実施形態に係る通信システムを示す図である。1 is a diagram illustrating a communication system according to a first embodiment. 第1の実施形態に係る移動体通信網基地局と、アクセスポイントと、通信端末との機能構成を示すブロック図である。It is a block diagram which shows the function structure of the mobile communication network base station which concerns on 1st Embodiment, an access point, and a communication terminal. 第1の実施形態に係る通信端末とアクセスポイントとの距離と、第2のRSSIとの関係を示すグラフである。It is a graph which shows the relationship between the distance of the communication terminal which concerns on 1st Embodiment, and an access point, and 2nd RSSI. 第1の実施形態に係る通信端末の動作の一例を示すフローチャートである。It is a flowchart which shows an example of operation | movement of the communication terminal which concerns on 1st Embodiment. 第1の実施形態に係る通信切断判定部の切断判定動作の一例を示すフローチャートである。It is a flowchart which shows an example of the disconnection determination operation | movement of the communication disconnection determination part which concerns on 1st Embodiment. 第2の実施形態に係る移動体通信網基地局と、通信端末と、アクセスポイントとの機能構成を示すブロック図である。It is a block diagram which shows the function structure of the mobile communication network base station which concerns on 2nd Embodiment, a communication terminal, and an access point. 第2の実施形態に係るアクセスポイントに接続された通信端末毎の優先度の一例を示す表である。It is a table | surface which shows an example of the priority for every communication terminal connected to the access point which concerns on 2nd Embodiment. 第2の実施形態に係るアクセスポイントの動作の一例を示すフローチャートである。It is a flowchart which shows an example of operation | movement of the access point which concerns on 2nd Embodiment.
<第1の実施形態>
 以下、図面を参照して通信システムの第1の実施形態について説明する。
<通信状態情報生成システムの概要について>
 図1は、第1の実施形態に係る通信システム100の概要の一例を示す図である。
<First Embodiment>
Hereinafter, a first embodiment of a communication system will be described with reference to the drawings.
<About the communication status information generation system>
FIG. 1 is a diagram illustrating an example of an overview of a communication system 100 according to the first embodiment.
 通信システム100は、通信端末2と、移動体通信網基地局3Aと、移動体通信網基地局3Bと、アクセスポイント4とを備える。
 通信端末2は、通信部23を備える。通信部23は、移動体通信網基地局3Aと、移動体通信網基地局3Bと、アクセスポイント4とのそれぞれと無線通信する。通信部23は、移動体通信網基地局3Aと、移動体通信網基地局3Bと、アクセスポイント4とのうちから少なくとも1つを介して通信回線NWに接続されるサーバなどの装置と通信する。通信端末2は、例えば携帯電話、スマートフォン及びタブレット型のコンピュータ(タブレットPC)等の携帯型のパーソナルコンピュータ等である。通信回線NWは、無線通信網、当該無線通信網と接続される有線通信網及びインターネット等の通信網である。無線通信網は、例えば、LTE(Long Term Evolution)方式等の通信方式の通信を行う携帯電話ネットワークである。無線通信は、LTE方式にしたがって構築された通信網に限られず、LTE方式にしたがって構築された通信網以外の3G方式等の通信網であってもよい。有線通信網は、有線接続により接続された機器が構成する通信網である。
The communication system 100 includes a communication terminal 2, a mobile communication network base station 3 A, a mobile communication network base station 3 B, and an access point 4.
The communication terminal 2 includes a communication unit 23. The communication unit 23 performs wireless communication with each of the mobile communication network base station 3 </ b> A, the mobile communication network base station 3 </ b> B, and the access point 4. The communication unit 23 communicates with a device such as a server connected to the communication line NW via at least one of the mobile communication network base station 3A, the mobile communication network base station 3B, and the access point 4. . The communication terminal 2 is, for example, a mobile personal computer such as a mobile phone, a smartphone, and a tablet computer (tablet PC). The communication line NW is a communication network such as a wireless communication network, a wired communication network connected to the wireless communication network, and the Internet. The wireless communication network is, for example, a mobile phone network that performs communication using a communication method such as LTE (Long Term Evolution). The wireless communication is not limited to a communication network constructed according to the LTE method, and may be a communication network such as a 3G method other than the communication network constructed according to the LTE method. The wired communication network is a communication network configured by devices connected by wired connection.
 移動体通信網基地局3Aは、移動体通信サービスエリアSA3Aのエリアに位置する通信端末2と無線通信する。
 移動体通信網基地局3Bは、移動体通信サービスエリアSA3Bのエリアに位置する通信端末2と無線通信する。以下の説明では、移動体通信網基地局3A及び移動体通信網基地局3Bを区別しない場合には、単に移動体通信網基地局3とも記載する。
 移動体通信網基地局3は、上述した無線通信網の基地局である。移動体通信網基地局3は、この一例では、LTE方式等の通信方式の基地局である。移動体通信網基地局3は、第1の基地局の一例である。
The mobile communication network base station 3A wirelessly communicates with the communication terminal 2 located in the mobile communication service area SA3A.
The mobile communication network base station 3B wirelessly communicates with the communication terminal 2 located in the mobile communication service area SA3B. In the following description, when the mobile communication network base station 3A and the mobile communication network base station 3B are not distinguished, they are also simply referred to as the mobile communication network base station 3.
The mobile communication network base station 3 is a base station of the above-described wireless communication network. In this example, the mobile communication network base station 3 is a base station of a communication scheme such as the LTE scheme. The mobile communication network base station 3 is an example of a first base station.
 アクセスポイント4は、アクセスポイントサービスエリアWA4のエリアに位置する通信端末2と無線通信する。アクセスポイント4は、移動体通信網基地局3とは異なる通信の方式を用いる。アクセスポイント4は、この一例では、無線LAN(Wireless Local Area Network)のアクセスポイントである。アクセスポイント4は、第2の基地局の一例である。 The access point 4 performs wireless communication with the communication terminal 2 located in the area of the access point service area WA4. The access point 4 uses a communication method different from that of the mobile communication network base station 3. In this example, the access point 4 is a wireless LAN (Wireless Local Area Network) access point. The access point 4 is an example of a second base station.
<移動体通信網基地局と、通信端末との無線通信の速度について>
 ここで、移動体通信網基地局3が接続された通信端末の通信を制御する一例について説明する。移動体通信網基地局3には、複数の通信端末が接続される。移動体通信網基地局3は、移動体通信網基地局3と接続された複数の通信端末のそれぞれに対して、通信端末が移動体通信網基地局3と通信を行う頻度や、通信端末が移動体通信網基地局3と一度に通信するデータの量である通信量の割り当てを行う。通信を行う頻度が多いほど、通信端末2と移動体通信網基地局3との間の通信の頻度が多い。通信量の割り当てが多いほど、通信端末2と移動体通信網基地局3との間の通信量が多い。
 言い換えると、移動体通信網基地局3は、接続される通信端末に対して、通信リソースの割り当てを行う。具体的には、移動体通信網基地局3は、接続された通信端末から移動体通信網基地局3に対しての通信を、周波数分割多元接続(Frequency Division Multiple Access)等によって通信リソースの割り当てを行う。通信リソースとは、通信端末が基地局にデータを送受信できる時間、及びそのデータ送受信に用いることができる周波数である。以下の説明では、移動体通信網基地局3が、接続された複数の通信端末に対して、通信リソースの割り当てを行うことを、スケジューリングとも記載する。移動体通信網基地局3は、スケジューリングを行い、通信端末2との通信を制御する。移動体通信網基地局3から通信リソースが多く割り当てられた通信端末2の通信の速さは速い。移動体通信網基地局3から通信リソースが少なく割り当てられた通信端末2の通信の速さは遅い。通信の速さは、上述した移動体通信網基地局3から割り当てられた通信リソースの量に限られず、天候、他の無線信号からの干渉等によっても変化する。
<Radio communication speed between mobile communication network base station and communication terminal>
Here, an example of controlling communication of a communication terminal to which the mobile communication network base station 3 is connected will be described. A plurality of communication terminals are connected to the mobile communication network base station 3. The mobile communication network base station 3 determines the frequency at which the communication terminal communicates with the mobile communication network base station 3 for each of a plurality of communication terminals connected to the mobile communication network base station 3, and the communication terminal A communication amount that is the amount of data to be communicated with the mobile communication network base station 3 at one time is assigned. As the frequency of communication increases, the frequency of communication between the communication terminal 2 and the mobile communication network base station 3 increases. The greater the amount of communication allocated, the greater the amount of communication between the communication terminal 2 and the mobile communication network base station 3.
In other words, the mobile communication network base station 3 assigns communication resources to the connected communication terminal. Specifically, the mobile communication network base station 3 allocates communication resources for communication from the connected communication terminal to the mobile communication network base station 3 by frequency division multiple access or the like. I do. The communication resource is a time during which the communication terminal can transmit / receive data to / from the base station and a frequency that can be used for the data transmission / reception. In the following description, it is also referred to as scheduling that the mobile communication network base station 3 assigns communication resources to a plurality of connected communication terminals. The mobile communication network base station 3 performs scheduling and controls communication with the communication terminal 2. Communication speed of the communication terminal 2 to which many communication resources are allocated from the mobile communication network base station 3 is fast. The communication speed of the communication terminal 2 allocated with less communication resources from the mobile communication network base station 3 is slow. The communication speed is not limited to the amount of communication resources allocated from the mobile communication network base station 3 described above, but varies depending on the weather, interference from other radio signals, and the like.
<干渉エリアについて>
 ここで、移動体通信サービスエリアSA3Aと、移動体通信サービスエリアSA3Bとが重複する干渉エリアCAについて説明する。以下の説明では、移動体通信サービスエリアSA3Aと、移動体通信サービスエリアSA3Bとを区別しない場合には、単に移動体通信サービスエリアSA3とも記載する。
 干渉エリアCAは、移動体通信網基地局3Aから出力される無線通信に用いる電波と、移動体通信網基地局3Bから出力される無線通信に用いる電波とが干渉するエリアである。この干渉エリアCAは、アクセスポイント4のアクセスポイントサービスエリアWA4に含まれる。ここで、アクセスポイント4は、移動体通信網基地局3とは異なる通信方式を用いているため、移動体通信網基地局3からの電波と、アクセスポイント4からの電波とでは干渉しない。
<About interference area>
Here, the interference area CA where the mobile communication service area SA3A and the mobile communication service area SA3B overlap will be described. In the following description, when the mobile communication service area SA3A and the mobile communication service area SA3B are not distinguished, they are also simply referred to as the mobile communication service area SA3.
The interference area CA is an area where radio waves used for radio communication output from the mobile communication network base station 3A interfere with radio waves used for radio communication output from the mobile communication network base station 3B. This interference area CA is included in the access point service area WA4 of the access point 4. Here, since the access point 4 uses a communication method different from that of the mobile communication network base station 3, the radio wave from the mobile communication network base station 3 does not interfere with the radio wave from the access point 4.
 この干渉エリアCAに位置する通信端末2は、移動体通信網基地局3Aと、移動体通信網基地局3Bとの、いずれの基地局とも無線通信することができる。干渉エリアCAに位置する通信端末2は、移動体通信網基地局3Aと移動体通信網基地局3Bとから送信される電波同士が干渉した電波を受信する。通信端末2は、移動体通信網基地局3Aと、移動体通信網基地局3Bとのうちから、通信の状態がよい方の移動体通信網基地局3と通信する。しかし、通信端末2と移動体通信網基地局3との無線の電波に干渉があると、信号品質が低下することにより、高速通信ができなくなる。このため、通信端末2と、移動体通信網基地局3とは、低速通信を行う必要があり、同じデータ量の通信に、多くの通信リソースを消費する。ここで、信号品質は、信号対干渉雑音比(signal-to-interference noise ratio;SINR)又は周波数単位ごとに下りチャネルの受信品質を示す指標であるCQI(Channel Quality Indicator)などが示される。高速通信とは、通信リソースあたり送受信可能なデータ量が多い通信を指し、具体的にはMCS(Modulation and Coding Scheme)が大きい通信である。低速通信とは、通信リソースあたり送受信可能なデータ量が少ない通信を指し、具体的にはMCSが小さい通信である。なお、CQIとは、具体的には、移動体通信網基地局3が、MCSを決定する際に使用する情報である。 The communication terminal 2 located in the interference area CA can wirelessly communicate with any of the mobile communication network base station 3A and the mobile communication network base station 3B. The communication terminal 2 located in the interference area CA receives a radio wave that is interfered by radio waves transmitted from the mobile communication network base station 3A and the mobile communication network base station 3B. The communication terminal 2 communicates with the mobile communication network base station 3 having a better communication state between the mobile communication network base station 3A and the mobile communication network base station 3B. However, if there is interference in radio waves between the communication terminal 2 and the mobile communication network base station 3, the signal quality deteriorates and high-speed communication becomes impossible. For this reason, the communication terminal 2 and the mobile communication network base station 3 need to perform low-speed communication, and consume a lot of communication resources for communication of the same amount of data. Here, the signal quality includes a signal-to-interference noise ratio (SINR) or CQI (Channel Quality Indicator) which is an index indicating the downlink channel reception quality for each frequency unit. High-speed communication refers to communication with a large amount of data that can be transmitted / received per communication resource, specifically, communication with a large MCS (Modulation and Coding Scheme). Low-speed communication refers to communication with a small amount of data that can be transmitted / received per communication resource, specifically, communication with a small MCS. The CQI is specifically information used when the mobile communication network base station 3 determines the MCS.
 移動体通信網基地局3は、MCSを下げても十分な通信ができない場合には、通信端末2に対してデータを再送し、又はデータの再送を要求する必要がある。これにより、移動体通信網基地局3は、さらに通信リソースを消費する。移動体通信網基地局3は、通信リソースの消費が生じることで、干渉エリアCAに位置する通信端末2以外の通信端末に割り当てられる通信リソースの消費が減り、他の通信端末の通信速度も低下する。このため、干渉エリアCA以外の移動体通信サービスエリアSA3に位置する通信端末2と、移動体通信網基地局3との無線通信の速度も遅くなってしまう。無線通信の速度とは、移動体通信網基地局3と通信端末2とのデータのやり取りの速度や、移動体通信網基地局3と通信端末2との通信の応答の速さである。 If the mobile communication network base station 3 cannot perform sufficient communication even if the MCS is lowered, it is necessary to retransmit data to the communication terminal 2 or to request data retransmission. Thereby, the mobile communication network base station 3 further consumes communication resources. The mobile communication network base station 3 consumes communication resources, thereby reducing the consumption of communication resources allocated to communication terminals other than the communication terminal 2 located in the interference area CA, and reducing the communication speed of other communication terminals. To do. For this reason, the speed of wireless communication between the communication terminal 2 located in the mobile communication service area SA3 other than the interference area CA and the mobile communication network base station 3 also becomes slow. The speed of wireless communication is the speed of data exchange between the mobile communication network base station 3 and the communication terminal 2 and the speed of communication response between the mobile communication network base station 3 and the communication terminal 2.
 上述した干渉エリアCAに位置する通信端末2は、無線通信の経路を切り替える。通信端末2は、アクセスポイント4と無線通信することにより、無線通信の速度を上げることができる。この無線通信の経路を切り替えることを、以下の説明では、オフロードとも記載する。移動体通信網基地局3は、通信端末2がオフロードすることにより、上述した通信リソースの消費を抑制することができる。 The communication terminal 2 located in the interference area CA described above switches the wireless communication path. The communication terminal 2 can increase the speed of wireless communication by performing wireless communication with the access point 4. Switching the wireless communication path is also referred to as offload in the following description. The mobile communication network base station 3 can suppress the consumption of the communication resources described above when the communication terminal 2 is offloaded.
<第1の実施形態の通信端末の機能構成について>
 ここで、図2を参照して、通信端末2の機能構成の一例について説明する。
 図2は、第1の実施形態に係る移動体通信網基地局3と、アクセスポイント4と、通信端末2との機能構成の一例を示す図である。
<Regarding Functional Configuration of Communication Terminal of First Embodiment>
Here, an example of a functional configuration of the communication terminal 2 will be described with reference to FIG.
FIG. 2 is a diagram illustrating an example of functional configurations of the mobile communication network base station 3, the access point 4, and the communication terminal 2 according to the first embodiment.
 移動体通信網基地局3は、制御部30を備える。制御部30は、例えばCPUを備えており、種々の演算や情報の授受を行う。制御部30は、端末通信部32を、その機能部として備える。
 端末通信部32は、CPUからの命令、及び通信インタフェースによって実現される。端末通信部32は、通信端末2が備える通信部23と無線通信する。
The mobile communication network base station 3 includes a control unit 30. The control unit 30 includes, for example, a CPU, and performs various calculations and information exchange. The control unit 30 includes a terminal communication unit 32 as its function unit.
The terminal communication unit 32 is realized by a command from the CPU and a communication interface. The terminal communication unit 32 performs wireless communication with the communication unit 23 included in the communication terminal 2.
 アクセスポイント4は、制御部40を備える。制御部40は、例えばCPUを備えており、種々の演算や情報の授受を行う。制御部40は、端末通信部42を、その機能部として備える。
 端末通信部42は、CPUからの命令、及び通信インタフェースによって実現される。端末通信部42は、通信端末2が備える通信部23と無線通信する。
The access point 4 includes a control unit 40. The control unit 40 includes, for example, a CPU, and performs various calculations and information exchange. The control unit 40 includes a terminal communication unit 42 as its function unit.
The terminal communication unit 42 is realized by a command from the CPU and a communication interface. The terminal communication unit 42 performs wireless communication with the communication unit 23 included in the communication terminal 2.
 通信端末2は、制御部20を備える。制御部20は、例えばCPUを備えており、種々の演算や情報の授受を行う。制御部20は、第1通信品質情報生成部27と、第1通信品質情報取得部21と、第2通信品質情報生成部28と、第2通信品質情報取得部22と、通信切断判定部24と、通信部23とを、その機能部として備える。 The communication terminal 2 includes a control unit 20. The control unit 20 includes, for example, a CPU, and performs various calculations and information exchange. The control unit 20 includes a first communication quality information generation unit 27, a first communication quality information acquisition unit 21, a second communication quality information generation unit 28, a second communication quality information acquisition unit 22, and a communication disconnection determination unit 24. And the communication part 23 is provided as the function part.
 第1通信品質情報生成部27は、通信端末2と移動体通信網基地局3との間の通信品質を示す第1の通信品質情報を生成する。具体的には、第1の通信品質情報には、上述したCQI、通信端末2が移動体通信網基地局3から受信した無線通信の電波の強度を示すRSSI(Received Signal Strength Indicator;電波受信強度)、通信端末2が移動体通信網基地局3から受信した無線通信の電波のSNR(Signal to Noise Ratio;信号雑音比)などを含む情報である。
 以下の説明では、通信端末2が移動体通信網基地局3から受信した無線通信の電波の強度を示すRSSIの事を、第1のRSSIとも記載する。この一例では、第1の通信品質情報が、CQIの場合について説明する。第1通信品質情報生成部27は、第1のRSSI及び、移動体通信網基地局3から割り当てられた通信リソースなどに基づいて、第1の通信品質情報を生成する。第1通信品質情報生成部27は、生成した第1の通信品質情報を、第1通信品質情報取得部21に対して供給する。
The first communication quality information generation unit 27 generates first communication quality information indicating communication quality between the communication terminal 2 and the mobile communication network base station 3. Specifically, the first communication quality information includes the above-mentioned CQI, RSSI (Received Signal Strength Indicator) indicating the strength of radio communication radio waves received by the communication terminal 2 from the mobile communication network base station 3. ), Information including SNR (Signal to Noise Ratio) of radio communication radio waves received from the mobile communication network base station 3 by the communication terminal 2.
In the following description, the RSSI indicating the radio wave intensity of the wireless communication received by the communication terminal 2 from the mobile communication network base station 3 is also referred to as a first RSSI. In this example, a case where the first communication quality information is CQI will be described. The first communication quality information generation unit 27 generates the first communication quality information based on the first RSSI and the communication resources allocated from the mobile communication network base station 3. The first communication quality information generation unit 27 supplies the generated first communication quality information to the first communication quality information acquisition unit 21.
 第1通信品質情報取得部21は、第1通信品質情報生成部27から第1の通信品質情報を取得する。第1通信品質情報取得部21は、第1通信品質情報生成部27から取得した第1の通信品質情報を、通信切断判定部24に対して供給する。 The first communication quality information acquisition unit 21 acquires first communication quality information from the first communication quality information generation unit 27. The first communication quality information acquisition unit 21 supplies the first communication quality information acquired from the first communication quality information generation unit 27 to the communication disconnection determination unit 24.
 第2通信品質情報生成部28は、通信端末2とアクセスポイント4との間の通信品質を示す第2の通信品質情報を生成する。具体的には、第2の通信品質情報とは、通信端末2がアクセスポイント4から受信する電波の強度を示すRSSI、通信端末2とアクセスポイント4とのSNRなどを含む情報である。以下の説明では、通信端末2がアクセスポイント4から受信した無線通信の電波の強度を示すRSSIの事を、第2のRSSIとも記載する。この一例では、第2の通信品質情報が、第2のRSSIの場合について説明する。
 第2通信品質情報生成部28は、生成した第2の通信品質情報を、第2通信品質情報取得部22に対して供給する。
The second communication quality information generation unit 28 generates second communication quality information indicating the communication quality between the communication terminal 2 and the access point 4. Specifically, the second communication quality information is information including RSSI indicating the intensity of radio waves received from the access point 4 by the communication terminal 2, SNR between the communication terminal 2 and the access point 4, and the like. In the following description, RSSI indicating the strength of radio communication radio waves received from the access point 4 by the communication terminal 2 is also referred to as second RSSI. In this example, a case where the second communication quality information is the second RSSI will be described.
The second communication quality information generation unit 28 supplies the generated second communication quality information to the second communication quality information acquisition unit 22.
 第2通信品質情報取得部22は、第2通信品質情報生成部28から第2の通信品質情報を取得する。第2通信品質情報取得部22は、第2通信品質情報生成部28から取得した第2の通信品質情報を、通信切断判定部24に対して供給する。 The second communication quality information acquisition unit 22 acquires second communication quality information from the second communication quality information generation unit 28. The second communication quality information acquisition unit 22 supplies the second communication quality information acquired from the second communication quality information generation unit 28 to the communication disconnection determination unit 24.
 通信切断判定部24は、第1通信品質情報取得部21から第1の通信品質情報を取得する。通信切断判定部24は、第2通信品質情報取得部22から第2の通信品質情報を取得する。通信切断判定部24は、第1通信品質情報取得部21から取得した第1の通信品質情報と、第2通信品質情報取得部22から取得した第2の通信品質情報とに基づいて、アクセスポイント4との間の無線通信を切断するか否かを判定する。 The communication disconnection determination unit 24 acquires the first communication quality information from the first communication quality information acquisition unit 21. The communication disconnection determination unit 24 acquires second communication quality information from the second communication quality information acquisition unit 22. Based on the first communication quality information acquired from the first communication quality information acquisition unit 21 and the second communication quality information acquired from the second communication quality information acquisition unit 22, the communication disconnection determination unit 24 4 determines whether or not to disconnect the wireless communication with 4.
 具体的には、本実施形態の通信切断判定部24は、第1の通信品質情報が示す通信品質が所定の通信品質よりも高い通信品質の場合には、アクセスポイント4との通信の切断基準を切断しやすい基準へと設定する。通信切断判定部24は、第1の通信品質情報が示す通信品質が所定の通信品質よりも低い通信品質の場合には、アクセスポイント4との通信の切断基準を切断しにくい基準へと設定する。通信切断判定部24は、第2の通信の品質情報と、通信の切断基準とに基づいてアクセスポイント4との間の通信を切断するか否かを判定する。
 通信部23は、通信切断判定部24が判定した結果に基づいてアクセスポイント4との間の無線通信を切断する。
Specifically, when the communication quality indicated by the first communication quality information is higher than a predetermined communication quality, the communication disconnection determination unit 24 according to the present embodiment provides a disconnection criterion for communication with the access point 4. Is set to a standard that is easy to cut. When the communication quality indicated by the first communication quality information is lower than the predetermined communication quality, the communication disconnection determination unit 24 sets the disconnection criterion for communication with the access point 4 to a criterion that makes it difficult to disconnect. . The communication disconnection determination unit 24 determines whether to disconnect communication with the access point 4 based on the quality information of the second communication and the communication disconnection criterion.
The communication unit 23 disconnects the wireless communication with the access point 4 based on the result determined by the communication disconnection determination unit 24.
<通信切断判定部の判定方法>
 ここで、図3を参照して、通信切断判定部24が、無線通信を切断するか否かを判定する判定方法について説明する。
 通信切断判定部24は、アクセスポイント4との間の無線通信を切断する基準を示す切断基準に基づいてアクセスポイント4との間の無線通信を切断するか否かを判定する。
 通信切断判定部24は、第1の通信品質情報が所定の通信品質よりも高い通信品質を示す場合には、切断基準を第1の基準へと設定する。また、通信切断判定部24は、第1の通信品質情報が所定の通信品質よりも低い通信品質を示す場合には、切断基準を第1の基準よりも切断しにくい第2の基準へと設定する。ここで、所定の通信品質は、通信端末2に予め設定された通信品質である。なお、通信切断判定部24は、所定の通信品質を複数設けることにより、第1の通信品質に基づいて切断基準を多段階に切り替えてもよい。この場合、通信切断判定部24は、第1の通信品質が高いほど、切断基準として切断しやすい基準を設定する。通信切断判定部24は、第1の通信品質に比例して切断基準を設定してもよい。
<Determination method of communication disconnection determination unit>
Here, with reference to FIG. 3, the determination method in which the communication disconnection determination unit 24 determines whether to disconnect the wireless communication will be described.
The communication disconnection determination unit 24 determines whether to disconnect the wireless communication with the access point 4 based on a disconnection criterion indicating a criterion for disconnecting the wireless communication with the access point 4.
When the first communication quality information indicates a communication quality higher than the predetermined communication quality, the communication disconnection determination unit 24 sets the disconnection reference to the first reference. Further, when the first communication quality information indicates a communication quality lower than the predetermined communication quality, the communication disconnection determination unit 24 sets the disconnection reference to the second reference that is harder to disconnect than the first reference. To do. Here, the predetermined communication quality is a communication quality preset in the communication terminal 2. Note that the communication disconnection determination unit 24 may switch the disconnection criteria in multiple stages based on the first communication quality by providing a plurality of predetermined communication qualities. In this case, the communication disconnection determination unit 24 sets a criterion that facilitates disconnection as the disconnection criterion as the first communication quality is higher. The communication disconnection determination unit 24 may set a disconnection criterion in proportion to the first communication quality.
 図3は、通信端末2とアクセスポイント4との距離と、第2のRSSIとの関係を示すグラフである。なお、この通信端末2とアクセスポイント4との距離と、第2のRSSIとの関係との関係は、障害物等がない自由空間の場合の一例を示すものである。
 図3に示すグラフの縦軸は、通信端末2がアクセスポイント4から受信する無線通信の電波の電波強度を示すRSSIを示す。図3に示すグラフの横軸は、通信端末2と、アクセスポイント4との距離を示す。
 このグラフは、第1の通信品質情報に含まれるCQIが高い値の方が、通信端末2と、アクセスポイント4との無線通信を切断しやすいことを示す。例えば、上述した切断基準は、第1の通信品質情報に含まれるCQIの値に応じて設定される。ここで、切断基準とは、アクセスポイント4と通信端末2との間の無線通信の通信品質に関する閾値である。
FIG. 3 is a graph showing the relationship between the distance between the communication terminal 2 and the access point 4 and the second RSSI. The relationship between the distance between the communication terminal 2 and the access point 4 and the relationship with the second RSSI shows an example in the case of a free space without an obstacle or the like.
The vertical axis of the graph shown in FIG. 3 indicates RSSI indicating the radio field intensity of radio communication received by the communication terminal 2 from the access point 4. The horizontal axis of the graph shown in FIG. 3 indicates the distance between the communication terminal 2 and the access point 4.
This graph shows that the higher the CQI included in the first communication quality information, the easier the wireless communication between the communication terminal 2 and the access point 4 is disconnected. For example, the above-described disconnection criterion is set according to the value of CQI included in the first communication quality information. Here, the disconnection criterion is a threshold relating to communication quality of wireless communication between the access point 4 and the communication terminal 2.
 閾値TH1は、例えば、所定の通信品質に対応するCQIが“7”であり、第1の通信品質情報に含まれるCQIが“10”の場合の切断基準である。この場合には、第1の通信品質情報が示す通信品質が所定の通信品質よりも高い通信品質を示すため、通信切断判定部24は、切断基準を切断しやすい基準へと設定する。この一例では、切断しやすい基準とは、第2のRSSIが“-60[dB]”を下回る場合に切断する基準である。このとき、通信端末2と、アクセスポイント4との接続可能距離は、距離L1である。
 閾値TH2は、例えば、第1の通信品質情報に含まれるCQIが“5”の場合の、切断基準である。この場合には、第1の通信品質情報が示す通信品質が所定の通信品質よりも低い通信品質を示すため、通信切断判定部24は、切断基準を切断しにくい基準へと設定する。切断しにくい基準とは、この一例では第2のRSSIが“-75[dB]”を下回る場合に切断する基準である。このとき、通信端末2と、アクセスポイント4との接続可能距離は、距離L2である。この距離L1は、距離L2よりも短い距離であるから、閾値TH1は閾値TH2よりも切断しやすい基準である。つまり、通信切断判定部24は、第1の通信品質情報が悪い通信品質を示すほど、自装置と距離が離れたアクセスポイント4とも無線通信可能な状態に、切断基準を設定する。また、通信切断判定部24は、第1の通信品質情報が良い通信品質を示すほど、自装置と距離が近いアクセスポイント4との無線通信を切断可能な状態に、切断基準を設定する。
The threshold value TH1 is a disconnection criterion when, for example, the CQI corresponding to the predetermined communication quality is “7” and the CQI included in the first communication quality information is “10”. In this case, since the communication quality indicated by the first communication quality information indicates a communication quality higher than the predetermined communication quality, the communication disconnection determination unit 24 sets the disconnection criterion to a criterion that facilitates disconnection. In this example, the criterion for easy cutting is a criterion for cutting when the second RSSI is lower than “−60 [dB]”. At this time, the connectable distance between the communication terminal 2 and the access point 4 is the distance L1.
The threshold value TH2 is, for example, a disconnection criterion when the CQI included in the first communication quality information is “5”. In this case, since the communication quality indicated by the first communication quality information indicates a communication quality lower than the predetermined communication quality, the communication disconnection determination unit 24 sets the disconnection criterion to a criterion that makes it difficult to disconnect. In this example, the criterion that is difficult to cut is a criterion for cutting when the second RSSI is lower than “−75 [dB]”. At this time, the connectable distance between the communication terminal 2 and the access point 4 is the distance L2. Since the distance L1 is shorter than the distance L2, the threshold value TH1 is a reference that is easier to cut than the threshold value TH2. That is, the communication disconnection determination unit 24 sets the disconnection criterion so that wireless communication can be performed with the access point 4 that is further away from the own device as the first communication quality information indicates worse communication quality. In addition, the communication disconnection determination unit 24 sets the disconnection criterion so that the wireless communication with the access point 4 that is closer to the own device can be disconnected as the first communication quality information indicates better communication quality.
<通信端末の動作の概要>
 次に、図4及び図5を参照して、通信端末2の動作の概要について説明する。
 図4は、通信端末2の動作の一例を示すフローチャートである。なお、ここに示す動作手順は、一例であって、動作手順の省略や動作手順の追加が行われてもよい。
<Outline of operation of communication terminal>
Next, an outline of the operation of the communication terminal 2 will be described with reference to FIGS. 4 and 5.
FIG. 4 is a flowchart showing an example of the operation of the communication terminal 2. The operation procedure shown here is an example, and the operation procedure may be omitted or the operation procedure may be added.
 第1通信品質情報生成部27は、通信端末2と移動体通信網基地局3との間の通信品質を示す第1の通信品質情報を生成する。具体的には、第1通信品質情報生成部27は、通信部23から、通信部23が受信した移動体通信網基地局3からの電波のRSSIやSNRに基づいて、第1の通信品質情報を生成する。
 第1通信品質情報取得部21は、第1通信品質情報生成部27から第1の通信品質情報を取得する(ステップS10)。第1通信品質情報取得部21は、第1通信品質情報生成部27から取得した第1の通信品質情報を、通信切断判定部24に対して供給する。
The first communication quality information generation unit 27 generates first communication quality information indicating communication quality between the communication terminal 2 and the mobile communication network base station 3. Specifically, the first communication quality information generation unit 27 receives the first communication quality information from the communication unit 23 based on the RSSI and SNR of radio waves from the mobile communication network base station 3 received by the communication unit 23. Is generated.
The first communication quality information acquisition unit 21 acquires first communication quality information from the first communication quality information generation unit 27 (step S10). The first communication quality information acquisition unit 21 supplies the first communication quality information acquired from the first communication quality information generation unit 27 to the communication disconnection determination unit 24.
 第2通信品質情報生成部28は、通信端末2とアクセスポイント4との間の通信品質を示す第2の通信品質情報を生成する。具体的には、第2通信品質情報生成部28は、通信部23から、通信部23が受信したアクセスポイント4からの電波のRSSIやSNRに基づいて、第2の通信品質情報を生成する。
 第2通信品質情報取得部22は、第2通信品質情報生成部28から第2の通信品質情報を取得する(ステップS20)。第2通信品質情報取得部22は、第2通信品質情報生成部28から取得した第2の通信品質情報を、通信切断判定部24に対して供給する。
The second communication quality information generation unit 28 generates second communication quality information indicating the communication quality between the communication terminal 2 and the access point 4. Specifically, the second communication quality information generation unit 28 generates second communication quality information from the communication unit 23 based on the RSSI and SNR of radio waves from the access point 4 received by the communication unit 23.
The second communication quality information acquisition unit 22 acquires second communication quality information from the second communication quality information generation unit 28 (step S20). The second communication quality information acquisition unit 22 supplies the second communication quality information acquired from the second communication quality information generation unit 28 to the communication disconnection determination unit 24.
 通信切断判定部24は、第1通信品質情報取得部21から第1の通信品質情報を取得する。通信切断判定部24は、第2通信品質情報取得部22から第2の通信品質情報を取得する。通信切断判定部24は、第1の通信品質情報と、第2の通信品質情報とに基づいて、アクセスポイント4との間の無線通信を切断するか否かを判定する(ステップS30)。
 ここで、図5を参照して、通信切断判定部24がアクセスポイント4との間の無線通信を切断するか否かを判定する動作について詳細に説明する。
 図5は、通信切断判定部24の切断判定動作の一例を示すフローチャートである。
The communication disconnection determination unit 24 acquires first communication quality information from the first communication quality information acquisition unit 21. The communication disconnection determination unit 24 acquires second communication quality information from the second communication quality information acquisition unit 22. The communication disconnection determination unit 24 determines whether or not to disconnect the wireless communication with the access point 4 based on the first communication quality information and the second communication quality information (step S30).
Here, with reference to FIG. 5, the operation for determining whether or not the communication disconnection determination unit 24 disconnects the wireless communication with the access point 4 will be described in detail.
FIG. 5 is a flowchart illustrating an example of the disconnection determination operation of the communication disconnection determination unit 24.
 通信切断判定部24は、第1の通信品質情報が示す通信品質が、所定の通信品質よりも高い通信品質かを判定する(ステップS31)。
 通信切断判定部24は、第1の通信品質情報が示す通信品質が、所定の通信品質よりも高い通信品質であると判定した場合には(ステップS31;YES)、アクセスポイント4との通信の切断基準を、切断しやすい基準に設定する(ステップS32)。
 通信切断判定部24は、第1の通信品質情報が示す通信品質が、所定の通信品質よりも低い通信品質であると判定した場合には(ステップS31;NO)、アクセスポイント4との通信の切断基準を、切断しにくい基準に設定する(ステップS34)。
 通信切断判定部24は、第1通信品質情報取得部21から取得した第1の通信品質情報と、第2通信品質情報取得部22から取得した第2の通信品質情報と前記切断基準とに基づいて、アクセスポイント4との無線通信を切断するか否かを判定する(ステップS33)。具体的には、通信切断判定部24は、第2の通信品質情報が示す通信品質が閾値を下回る場合には、アクセスポイント4との間の無線通信を切断すると判定する。
The communication disconnection determination unit 24 determines whether the communication quality indicated by the first communication quality information is higher than a predetermined communication quality (step S31).
If the communication disconnection determination unit 24 determines that the communication quality indicated by the first communication quality information is higher than the predetermined communication quality (step S31; YES), the communication disconnection determination unit 24 performs communication with the access point 4. The cutting standard is set to a standard that facilitates cutting (step S32).
When the communication disconnection determination unit 24 determines that the communication quality indicated by the first communication quality information is lower than the predetermined communication quality (step S31; NO), the communication disconnection determination unit 24 performs communication with the access point 4. The cutting reference is set to a reference that is difficult to cut (step S34).
The communication disconnection determination unit 24 is based on the first communication quality information acquired from the first communication quality information acquisition unit 21, the second communication quality information acquired from the second communication quality information acquisition unit 22, and the disconnection criterion. Then, it is determined whether to disconnect the wireless communication with the access point 4 (step S33). Specifically, the communication disconnection determination unit 24 determines to disconnect the wireless communication with the access point 4 when the communication quality indicated by the second communication quality information is below the threshold.
 図4に戻り、通信切断判定部24は、アクセスポイント4との間の無線通信を切断しないと判定した場合には、処理を終了する(ステップS30;NO)。 Returning to FIG. 4, if the communication disconnection determination unit 24 determines that the wireless communication with the access point 4 is not disconnected, the processing is terminated (step S <b> 30; NO).
 通信切断判定部24は、アクセスポイント4との間の無線通信を切断すると判定した場合(ステップS30;YES)には、通信部23に対して判定結果を供給する(ステップS40)。
 通信部23は、通信切断判定部24から判定結果を取得する。通信部23は、通信切断判定部24から取得した判定結果に基づいて、アクセスポイント4との通信を切断する(ステップS50)。
 通信部23は、移動体通信網基地局3との無線通信を開始する(ステップS60)。
When it is determined that the wireless communication with the access point 4 is disconnected (step S30; YES), the communication disconnection determination unit 24 supplies the determination result to the communication unit 23 (step S40).
The communication unit 23 acquires a determination result from the communication disconnection determination unit 24. The communication unit 23 disconnects communication with the access point 4 based on the determination result acquired from the communication disconnection determination unit 24 (step S50).
The communication unit 23 starts wireless communication with the mobile communication network base station 3 (step S60).
<第1の実施形態のまとめ>
 以上説明したように、本実施形態の通信切断判定部24は、アクセスポイント4との通信品質を示す第2の通信品質情報だけではなく、アクセスポイント4とは異なる通信の方式を用いる移動体通信網基地局3との通信品質を示す第1の通信品質情報に更に基づいて、アクセスポイント4との無線通信の切断を判定する。通信端末2は、第1の通信品質情報に更に基づいてアクセスポイント4との通信を切断するため、自装置が移動体通信網基地局3への通信リソースを大きく消費する場合には、移動体通信網基地局3からアクセスポイント4へとオフロードさせることができる。これにより、通信端末2は、通信システム100全体の通信速度を向上させることができる。つまり、通信端末2は、移動体通信網基地局3及びアクセスポイント4に接続される複数の通信端末の通信速度を改善することができる。
<Summary of First Embodiment>
As described above, the communication disconnection determination unit 24 according to the present embodiment uses not only the second communication quality information indicating the communication quality with the access point 4 but also the mobile communication using a communication method different from the access point 4. Based on the first communication quality information indicating the communication quality with the network base station 3, the disconnection of the wireless communication with the access point 4 is determined. Since the communication terminal 2 disconnects the communication with the access point 4 further based on the first communication quality information, the mobile terminal consumes a large amount of communication resources to the mobile communication network base station 3. It can be offloaded from the communication network base station 3 to the access point 4. Thereby, the communication terminal 2 can improve the communication speed of the communication system 100 whole. That is, the communication terminal 2 can improve the communication speed of a plurality of communication terminals connected to the mobile communication network base station 3 and the access point 4.
 また、通信端末2は、自装置がアクセスポイント4との通信を切断するか否かを判定するために、既に設置されたアクセスポイント4の動作を変えることなく、通信システム100全体の通信速度を向上させることができる。また、通信端末2のハードウェアを変えず、ソフトウェアを更新することにより、上述した効果を得ることができる。 In addition, the communication terminal 2 determines the communication speed of the entire communication system 100 without changing the operation of the access point 4 that has already been installed in order to determine whether or not the own device disconnects communication with the access point 4. Can be improved. Moreover, the effect mentioned above can be acquired by updating software, without changing the hardware of the communication terminal 2. FIG.
 また、通信端末2は、移動体通信網基地局3から出力される電波同士が干渉するエリアに位置する通信端末を優先してオフロードさせることにより、アクセスポイント4の通信品質を維持しつつ、通信システム100全体の通信の品質を向上させることができる。 In addition, the communication terminal 2 maintains the communication quality of the access point 4 by preferentially offloading the communication terminal located in an area where radio waves output from the mobile communication network base station 3 interfere with each other, Communication quality of the entire communication system 100 can be improved.
 なお、第1通信品質情報生成部27が生成する第1の通信品質情報には、移動体通信網基地局3に接続される他の通信端末の台数や、移動体通信網基地局3の過去の通信品質の統計情報が含まれていてもよい。これにより、通信端末2は、精度よくオフロードすることができる。 The first communication quality information generated by the first communication quality information generation unit 27 includes the number of other communication terminals connected to the mobile communication network base station 3 and the past of the mobile communication network base station 3. The communication quality statistical information may be included. Thereby, the communication terminal 2 can be offloaded with high accuracy.
 また、第2通信品質情報生成部28が生成する第2の通信品質情報には、アクセスポイント4に接続される他の通信端末の台数や、アクセスポイント4の過去の通信品質の統計情報が含まれていてもよい。この場合には、通信端末2は、精度よくオフロードすることができる。 Further, the second communication quality information generated by the second communication quality information generation unit 28 includes the number of other communication terminals connected to the access point 4 and statistical information on the past communication quality of the access point 4. It may be. In this case, the communication terminal 2 can be offloaded with high accuracy.
 なお、上述した説明では、第1の通信品質情報がCQIの場合について説明したが、これに限られない。第1の通信品質情報には、移動体通信網基地局3と通信端末2とが無線通信する際に利用可能な通信の変調度、符号化率に関する情報のうち少なくとも1つが含まれていればよい。また、上述した説明では、第2の通信品質情報が、第2のRSSI情報の場合について説明したが、これに限られない。第2の通信品質情報は、通信端末2がアクセスポイント4から受信する電波の品質を示す情報が少なくとも含まれた情報によって生成されればよい。 In the above description, the case where the first communication quality information is CQI has been described. However, the present invention is not limited to this. If the first communication quality information includes at least one of information on the modulation degree and coding rate of communication that can be used when the mobile communication network base station 3 and the communication terminal 2 perform wireless communication. Good. In the above description, the second communication quality information is the second RSSI information. However, the present invention is not limited to this. The second communication quality information may be generated by information including at least information indicating the quality of radio waves received from the access point 4 by the communication terminal 2.
 なお、上述した説明では、第1の基地局が、移動体通信網基地局の場合について説明したが、これに限られない。また、上述した説明では、第2の基地局が、無線LANの場合について説明したが、これに限られない。第2の基地局は、移動体通信網とは異なる種別の通信メディアに対応するものであればよい。例えば、第2の基地局は、高速無線通信ネットワークのアクセスポイントであってもよい。高速無線通信ネットワークとしては、例えば、無線MAN(Wireless Metropolitan Area Network)などが挙げられる。 In the above description, the first base station is a mobile communication network base station. However, the present invention is not limited to this. In the above description, the second base station is a wireless LAN. However, the present invention is not limited to this. The second base station only needs to correspond to a communication medium of a different type from the mobile communication network. For example, the second base station may be an access point of a high speed wireless communication network. Examples of the high-speed wireless communication network include wireless MAN (Wireless Metropolitan Area Network).
 なお、通信部23は、アクセスポイント4との間の無線通信の切断後、第1の通信品質情報と、第2の通信品質情報とが、所定の条件を満たす場合には、アクセスポイント4との無線通信を再開してもよい。この所定の条件は、予め通信端末2に設定された第1の通信品質情報が示す通信品質及び予め通信端末2に設定された第2の通信品質情報が示す通信品質の条件である。より具体的には、通信部23は、現在の第1の通信品質情報が示す値が、予め設定された第1の通信品質情報が示す値よりも悪い品質を示し、第2の通信品質情報が示す値が、予め設定された第2の通信品質情報よりもよい品質を示す場合には、アクセスポイント4との無線通信を再開する。つまり、所定の条件は、第1の通信品質情報が示す通信品質に応じて変化する。通信部23は、第1の通信品質情報が所定の通信品質よりも低い通信品質を示す場合には、所定の条件をより第2の基地局と無線通信しやすい基準へと変化させる。 Note that the communication unit 23, after disconnecting the wireless communication with the access point 4, if the first communication quality information and the second communication quality information satisfy a predetermined condition, The wireless communication may be resumed. This predetermined condition is a condition of the communication quality indicated by the first communication quality information set in advance in the communication terminal 2 and the communication quality indicated by the second communication quality information set in advance in the communication terminal 2. More specifically, the communication unit 23 indicates that the value indicated by the current first communication quality information is worse than the value indicated by the preset first communication quality information, and the second communication quality information When the value indicated by indicates a quality better than the preset second communication quality information, the wireless communication with the access point 4 is resumed. That is, the predetermined condition changes according to the communication quality indicated by the first communication quality information. When the first communication quality information indicates a communication quality lower than the predetermined communication quality, the communication unit 23 changes the predetermined condition to a reference that facilitates wireless communication with the second base station.
<第2の実施形態>
 ここまでは、通信端末がアクセスポイントとの無線通信の切断を判定する構成について説明した。次に、アクセスポイントが、自装置に接続した通信端末との無線通信の切断を判定する構成について、図6を参照して説明する。なお、第1の実施形態と同一の構成及び動作については、同一の符号を付してその説明を省略する。
 図6は、第2の実施形態に係る移動体通信網基地局3と、通信端末2aと、アクセスポイント4aとの機能構成の一例を示すブロック図である。移動体通信網基地局3は、上述した第1の実施形態の構成と同様である。本実施形態のアクセスポイント4aは、複数の通信端末と無線通信する。
<Second Embodiment>
Up to this point, the configuration in which the communication terminal determines disconnection of wireless communication with the access point has been described. Next, a configuration in which an access point determines disconnection of wireless communication with a communication terminal connected to its own device will be described with reference to FIG. In addition, about the structure and operation | movement same as 1st Embodiment, the same code | symbol is attached | subjected and the description is abbreviate | omitted.
FIG. 6 is a block diagram illustrating an example of functional configurations of the mobile communication network base station 3, the communication terminal 2a, and the access point 4a according to the second embodiment. The mobile communication network base station 3 has the same configuration as that of the first embodiment described above. The access point 4a of this embodiment performs wireless communication with a plurality of communication terminals.
 通信端末2aは、制御部20aを備える。制御部20aは、例えばCPUを備えており、種々の演算や情報の授受を行う。制御部20aは、上述した通信部23と、第1通信品質情報生成部27と、第1通信品質情報取得部21と、第2通信品質情報生成部28と、第2通信品質情報取得部22とに加え、第1通信品質情報送信部25と、第2通信品質情報送信部26とを備える。 The communication terminal 2a includes a control unit 20a. The control unit 20a includes, for example, a CPU, and performs various calculations and information exchange. The control unit 20a includes the communication unit 23, the first communication quality information generation unit 27, the first communication quality information acquisition unit 21, the second communication quality information generation unit 28, and the second communication quality information acquisition unit 22 described above. 1st communication quality information transmission part 25 and 2nd communication quality information transmission part 26 are provided.
 第1通信品質情報取得部21は、第1通信品質情報生成部27から第1の通信品質情報を取得する。第1通信品質情報取得部21は、第1通信品質情報生成部27から取得した第1の通信品質情報を、第1通信品質情報送信部25に対して供給する。
 第1通信品質情報送信部25は、第1通信品質情報取得部21から第1の通信品質情報を取得する。第1通信品質情報送信部25は、第1通信品質情報取得部21から取得した第1の通信品質情報を、アクセスポイント4aに対して供給する。なお、第1通信品質情報取得部21は、通信部23を介して第1の通信品質情報を供給してもよい。
The first communication quality information acquisition unit 21 acquires first communication quality information from the first communication quality information generation unit 27. The first communication quality information acquisition unit 21 supplies the first communication quality information acquired from the first communication quality information generation unit 27 to the first communication quality information transmission unit 25.
The first communication quality information transmission unit 25 acquires first communication quality information from the first communication quality information acquisition unit 21. The first communication quality information transmission unit 25 supplies the first communication quality information acquired from the first communication quality information acquisition unit 21 to the access point 4a. Note that the first communication quality information acquisition unit 21 may supply the first communication quality information via the communication unit 23.
 第2通信品質情報取得部22は、第2通信品質情報生成部28から第2の通信品質情報を取得する。第2通信品質情報取得部22は、第2通信品質情報生成部28から取得した第2の通信品質情報を、第2通信品質情報送信部26に対して供給する。
 第2通信品質情報送信部26は、第2通信品質情報取得部22から第2の通信品質情報を取得する。第2通信品質情報送信部26は、第2通信品質情報取得部22から取得した第2の通信品質情報を、アクセスポイント4aに対して供給する。なお、第2通信品質情報取得部26は、通信部23を介して第2の通信品質情報を供給してもよい。
The second communication quality information acquisition unit 22 acquires second communication quality information from the second communication quality information generation unit 28. The second communication quality information acquisition unit 22 supplies the second communication quality information acquired from the second communication quality information generation unit 28 to the second communication quality information transmission unit 26.
The second communication quality information transmission unit 26 acquires second communication quality information from the second communication quality information acquisition unit 22. The second communication quality information transmission unit 26 supplies the second communication quality information acquired from the second communication quality information acquisition unit 22 to the access point 4a. Note that the second communication quality information acquisition unit 26 may supply the second communication quality information via the communication unit 23.
 アクセスポイント4aは、制御部40aを備える。制御部40aは、例えばCPUを備えており、種々の演算や情報の授受を行う。制御部40aは、上述した端末通信部42に加え、第1通信品質情報取得部43と、第2通信品質情報取得部44と、優先度設定部45と、通信切断判定部46とを備える。
 第1通信品質情報取得部43は、第1通信品質情報送信部25から第1の通信品質情報を取得する。第1通信品質情報取得部43は、第1通信品質情報送信部25から取得した第1の通信品質情報を、優先度設定部45に対して供給する。また、第1通信品質情報取得部43は、第1通信品質情報送信部25から取得した第1の通信品質情報を、通信切断判定部46に対して供給する。
The access point 4a includes a control unit 40a. The control unit 40a includes, for example, a CPU, and performs various calculations and information exchange. In addition to the terminal communication unit 42 described above, the control unit 40a includes a first communication quality information acquisition unit 43, a second communication quality information acquisition unit 44, a priority setting unit 45, and a communication disconnection determination unit 46.
The first communication quality information acquisition unit 43 acquires the first communication quality information from the first communication quality information transmission unit 25. The first communication quality information acquisition unit 43 supplies the first communication quality information acquired from the first communication quality information transmission unit 25 to the priority setting unit 45. The first communication quality information acquisition unit 43 supplies the first communication quality information acquired from the first communication quality information transmission unit 25 to the communication disconnection determination unit 46.
 第2通信品質情報取得部44は、第2通信品質情報送信部26から第2の通信品質情報を取得する。第2通信品質情報取得部44は、第2通信品質情報送信部26から取得した第2の通信品質情報を、優先度設定部45に対して供給する。第2通信品質情報取得部44は、第2通信品質情報送信部26から取得した第2の通信品質情報を、通信切断判定部46に対して供給する。 The second communication quality information acquisition unit 44 acquires second communication quality information from the second communication quality information transmission unit 26. The second communication quality information acquisition unit 44 supplies the second communication quality information acquired from the second communication quality information transmission unit 26 to the priority setting unit 45. The second communication quality information acquisition unit 44 supplies the second communication quality information acquired from the second communication quality information transmission unit 26 to the communication disconnection determination unit 46.
 優先度設定部45は、第1通信品質情報取得部43から第1の通信品質情報を取得する。優先度設定部45は、第2通信品質情報取得部44から第2の通信品質情報を取得する。優先度設定部45は、第1通信品質情報取得部43から取得した第1の通信品質情報と、第2通信品質情報取得部44から取得した第2の通信品質情報とに基づいて、通信端末2aとの間の無線通信の切断し易さの程度を示す優先度を、自装置に接続された通信端末2aのそれぞれに設定する。 The priority setting unit 45 acquires the first communication quality information from the first communication quality information acquisition unit 43. The priority setting unit 45 acquires second communication quality information from the second communication quality information acquisition unit 44. The priority setting unit 45 is based on the first communication quality information acquired from the first communication quality information acquisition unit 43 and the second communication quality information acquired from the second communication quality information acquisition unit 44. The priority indicating the degree of ease of disconnecting the wireless communication with 2a is set for each of the communication terminals 2a connected to the own apparatus.
 具体的には、優先度設定部45は、第1の通信品質情報が示す通信品質が、所定の通信よりも高い通信品質を示し、第2の通信品質情報が所定の通信品質よりも低い通信品質を示す場合には、無線通信の切断の優先度には、高い優先度を設定する。以下の説明では、この高い優先度を、第1の優先度とも記載する。
 優先度設定部45は、第1の通信品質情報が示す通信品質が、所定の通信品質よりも低い通信品質を示し、第2の通信品質情報が所定の通信品質よりも高い通信品質を示す場合には優先度を低く設定する。以下の説明では、この低い優先度を第4の優先度とも記載する。
Specifically, the priority setting unit 45 indicates a communication in which the communication quality indicated by the first communication quality information is higher than the predetermined communication, and the second communication quality information is lower than the predetermined communication quality. In the case of indicating quality, a high priority is set as the priority of disconnection of wireless communication. In the following description, this high priority is also described as the first priority.
The priority setting unit 45 indicates that the communication quality indicated by the first communication quality information indicates a communication quality lower than the predetermined communication quality, and the second communication quality information indicates a communication quality higher than the predetermined communication quality. Set a low priority for. In the following description, this low priority is also referred to as a fourth priority.
 優先度設定部45は、第1の通信品質情報が示す通信品質が、所定の通信品質よりも低い通信品質を示し、第2の通信品質情報が所定の通信品質よりも低い通信品質を示す場合には、第2の優先度を設定する。
 優先度設定部45は、第1の通信品質情報が示す通信品質が所定の通信品質よりも高い通信品質を示し第2の通信品質情報が所定の通信品質よりも高い通信品質を示す場合には、第3の優先度を設定する。
The priority setting unit 45 indicates that the communication quality indicated by the first communication quality information indicates a communication quality lower than the predetermined communication quality, and the second communication quality information indicates a communication quality lower than the predetermined communication quality. Is set with a second priority.
When the communication quality indicated by the first communication quality information indicates a communication quality higher than the predetermined communication quality and the second communication quality information indicates a communication quality higher than the predetermined communication quality, the priority setting unit 45 The third priority is set.
 第1の優先度は、第2の優先度よりも、切断の優先度が高い。また、第2の優先度は、第3の優先度及び第4の優先度よりも切断の優先度が高い。第3の優先度は、第4の優先度よりも切断の優先度が高い。 The first priority is higher than the second priority. The second priority is higher than the third priority and the fourth priority. The third priority is higher than the fourth priority.
 優先度設定部45は、優先度を設定した結果を示す優先度情報を、通信切断判定部46に対して供給する。 The priority setting unit 45 supplies priority information indicating the result of setting the priority to the communication disconnection determination unit 46.
 通信切断判定部46は、第1通信品質情報取得部43から第1の通信品質情報を取得する。通信切断判定部46は、第2通信品質情報取得部44から第2の通信品質情報を取得する。通信切断判定部46は、優先度設定部45から優先度情報を取得する。通信切断判定部46は、この第1の通信品質情報と、この第2の通信品質情報とを、自装置に接続する通信端末毎に取得する。 The communication disconnection determination unit 46 acquires the first communication quality information from the first communication quality information acquisition unit 43. The communication disconnection determination unit 46 acquires the second communication quality information from the second communication quality information acquisition unit 44. The communication disconnection determination unit 46 acquires priority information from the priority setting unit 45. The communication disconnection determination unit 46 acquires the first communication quality information and the second communication quality information for each communication terminal connected to the own device.
 通信切断判定部46は、第1通信品質情報取得部43から取得した第1の通信品質情報と、第2通信品質情報取得部44から取得した第2の通信品質情報とに基づいて、通信端末2aとの間の無線通信を切断するか否かを判定する。なお、本実施形態では、通信切断判定部46は、通信端末2aとの無線通信を切断する場合には、優先度設定部45が設定する優先度に基づいて、通信端末2aとの間の無線通信を切断するか否かを判定する。通信切断判定部46は、この判定結果を端末通信部42に対して供給する。
 端末通信部42は、通信切断判定部46から判定結果を取得する。端末通信部42は、通信切断判定部46から取得した判定結果に基づいて、自装置と接続した通信端末2aとの無線通信を切断する。
The communication disconnection determination unit 46 is based on the first communication quality information acquired from the first communication quality information acquisition unit 43 and the second communication quality information acquired from the second communication quality information acquisition unit 44. It is determined whether or not to disconnect the wireless communication with 2a. In the present embodiment, the communication disconnection determination unit 46, when disconnecting the wireless communication with the communication terminal 2a, is based on the priority set by the priority setting unit 45, and is wireless with the communication terminal 2a. It is determined whether or not to disconnect communication. The communication disconnection determination unit 46 supplies the determination result to the terminal communication unit 42.
The terminal communication unit 42 acquires the determination result from the communication disconnection determination unit 46. The terminal communication unit 42 disconnects the wireless communication with the communication terminal 2a connected to the own device based on the determination result acquired from the communication disconnection determination unit 46.
 ここで、図7を参照して、優先度設定部45が設定する優先度の一例について説明する。
 図7は、アクセスポイント4aに接続された通信端末毎の優先度の一例を示す表である。
Here, an example of the priority set by the priority setting unit 45 will be described with reference to FIG.
FIG. 7 is a table showing an example of priorities for each communication terminal connected to the access point 4a.
 アクセスポイント4aには、N台の通信端末が接続される。優先度設定部45が設定する優先度情報には、通信端末毎に、接続番号と端末識別番号と第1の通信品質情報と第2の通信品質情報と切断優先度とが対応付けられた状態で含まれる。接続番号は、アクセスポイント4aに通信端末2aが接続された順に付与される番号である。なお、この接続番号は、必須ではない。端末識別番号とは、アクセスポイント4aに接続された通信端末を識別する情報である。切断優先度とは、アクセスポイント4aと通信端末との間の無線通信を切断する優先度を示す情報である。この一例では、切断優先度の数値が小さい通信端末ほど、切断する優先度が高いことを示す。 N communication terminals are connected to the access point 4a. The priority information set by the priority setting unit 45 is a state in which the connection number, the terminal identification number, the first communication quality information, the second communication quality information, and the disconnection priority are associated with each communication terminal. Included. The connection number is a number assigned in the order in which the communication terminal 2a is connected to the access point 4a. This connection number is not essential. The terminal identification number is information for identifying a communication terminal connected to the access point 4a. The disconnection priority is information indicating a priority for disconnecting wireless communication between the access point 4a and the communication terminal. In this example, a communication terminal having a smaller disconnection priority value indicates a higher disconnection priority.
 優先度設定部45は、第1の通信品質情報と、第2の通信品質情報とに基づいて、切断優先度を設定する。具体的には、通信切断判定部46は、接続番号“1”、端末識別番号“C1”、第1の通信品質情報“10”、第2の通信品質情報“-20”、切断優先度“1”の優先度が割り振られた通信端末2aから切断する。
 この一例では、通信切断判定部46は、接続番号“1”から接続番号“3”までの通信端末2aとの無線通信を順次切断すると判定し、判定結果を端末通信部42に供給する。
通信切断判定部46は、接続番号“1”から接続番号“3”までの通信端末2aとの無線通信を切断した結果、自装置に接続された通信端末の数が所定の数よりも少なくなった場合は、切断処理を終了する。
The priority setting unit 45 sets the disconnection priority based on the first communication quality information and the second communication quality information. Specifically, the communication disconnection determination unit 46 includes the connection number “1”, the terminal identification number “C1”, the first communication quality information “10”, the second communication quality information “−20”, and the disconnection priority “ Disconnect from the communication terminal 2a to which the priority of 1 ″ is assigned.
In this example, the communication disconnection determination unit 46 determines to sequentially disconnect the wireless communication with the communication terminal 2 a from the connection number “1” to the connection number “3”, and supplies the determination result to the terminal communication unit 42.
As a result of disconnecting the wireless communication with the communication terminal 2a from the connection number "1" to the connection number "3", the communication disconnection determination unit 46 has fewer than a predetermined number of communication terminals connected to its own device. If it is found, the cutting process is terminated.
 なお、通信切断判定部46は、自装置に接続された通信端末の数が、所定の数よりも少ない場合には、切断判定処理を行わなくてもよい。自装置に接続された通信端末の台数が所定の数よりも少ない場合には、自装置の処理に余裕があり、通信端末2aと移動体通信網基地局3との通信をオフロードすることにより、移動体通信網基地局3の通信リソースの消費を抑制することができるためである。 Note that the communication disconnection determination unit 46 may not perform the disconnection determination process when the number of communication terminals connected to the own device is smaller than a predetermined number. When the number of communication terminals connected to the own device is smaller than a predetermined number, there is a margin in the processing of the own device, and by offloading communication between the communication terminal 2a and the mobile communication network base station 3 This is because consumption of communication resources of the mobile communication network base station 3 can be suppressed.
<アクセスポイント4aの動作の概要>
 次に、図8を参照して、アクセスポイント4aの動作の概要について説明する。
 図8は、アクセスポイント4aの動作の一例を示すフローチャートである。なお、ここに示す動作手順は、一例であって、動作手順の省略や動作手順の追加が行われてもよい。
<Outline of operation of access point 4a>
Next, an outline of the operation of the access point 4a will be described with reference to FIG.
FIG. 8 is a flowchart showing an example of the operation of the access point 4a. The operation procedure shown here is an example, and the operation procedure may be omitted or the operation procedure may be added.
 第1通信品質情報取得部43は、第1通信品質情報送信部25から、第1の通信品質情報を取得する(ステップS910)。第1通信品質情報取得部43は、優先度設定部45に対して第1の通信品質情報を供給する。第1通信品質情報取得部43は、通信切断判定部46に対して第1の通信品質情報を供給する。
 第2通信品質情報取得部44は、第2通信品質情報送信部26から、第2の通信品質情報を取得する(ステップS920)。第2通信品質情報取得部44は、優先度設定部45に対して第2の通信品質情報を供給する。第2通信品質情報取得部44は、通信切断判定部46に対して第2の通信品質情報を供給する。
 優先度設定部45は、優先度を設定する(ステップS930)。優先度設定部45は、設定した優先度を示す優先度情報を、通信切断判定部46に対して供給する。
 通信切断判定部46は、優先度設定部45から優先度情報を取得する。通信切断判定部46は、優先度情報に基づいて通信端末との間の無線通信を切断するか否かを判定する(ステップS940)。
 通信切断判定部46は、無線通信を切断する通信端末が存在しない場合には、処理を終了する(ステップS940;NO)。
 通信切断判定部46は、判定結果を端末通信部42に対して供給する(ステップS940;YES)。
 端末通信部42は、通信切断判定部46から判定結果を取得する。端末通信部42は、通信切断判定部46から取得した判定結果に基づいて、通信端末との無線通信を切断する(ステップS950)。
The first communication quality information acquisition unit 43 acquires the first communication quality information from the first communication quality information transmission unit 25 (step S910). The first communication quality information acquisition unit 43 supplies the first communication quality information to the priority setting unit 45. The first communication quality information acquisition unit 43 supplies the first communication quality information to the communication disconnection determination unit 46.
The second communication quality information acquisition unit 44 acquires second communication quality information from the second communication quality information transmission unit 26 (step S920). The second communication quality information acquisition unit 44 supplies the second communication quality information to the priority setting unit 45. The second communication quality information acquisition unit 44 supplies the second communication quality information to the communication disconnection determination unit 46.
The priority setting unit 45 sets the priority (step S930). The priority setting unit 45 supplies priority information indicating the set priority to the communication disconnection determination unit 46.
The communication disconnection determination unit 46 acquires priority information from the priority setting unit 45. The communication disconnection determination unit 46 determines whether or not to disconnect the wireless communication with the communication terminal based on the priority information (step S940).
If there is no communication terminal that disconnects wireless communication, the communication disconnection determination unit 46 ends the process (step S940; NO).
The communication disconnection determination unit 46 supplies the determination result to the terminal communication unit 42 (step S940; YES).
The terminal communication unit 42 acquires the determination result from the communication disconnection determination unit 46. The terminal communication unit 42 disconnects wireless communication with the communication terminal based on the determination result acquired from the communication disconnection determination unit 46 (step S950).
<第2の実施形態のまとめ>
 以上説明したように、アクセスポイント4aは、第1の通信品質情報と、第2の通信品質情報とに基づいて、自装置に接続された複数の通信端末のうちから、無線通信を切断する通信端末を判定する。これにより、アクセスポイント4aは、干渉エリアCAに位置する通信端末を、自装置との無線通信を維持することができる。また、アクセスポイント4aは、干渉エリアCAに位置しない通信端末との無線通信を切断する。これにより、アクセスポイント4aは、通信システム100全体の通信速度を向上させることができる。
<Summary of Second Embodiment>
As described above, the access point 4a is a communication that disconnects wireless communication from among a plurality of communication terminals connected to its own device based on the first communication quality information and the second communication quality information. Determine the terminal. Thereby, the access point 4a can maintain the wireless communication with the own terminal for the communication terminal located in the interference area CA. Further, the access point 4a disconnects wireless communication with a communication terminal that is not located in the interference area CA. Thereby, the access point 4a can improve the communication speed of the communication system 100 whole.
 なお、上述した説明では、第1通信品質情報取得部43は、第1通信品質情報送信部25から第1の通信品質情報を取得する構成について説明したがこれに限られない。第1通信品質情報取得部43は、第1の通信品質情報を移動体通信網基地局3から供給されてもよい。この場合には、移動体通信網基地局3は、第1通信品質情報送信部31を備えればよい。この第1通信品質情報送信部31から供給される第1の通信品質情報には、通信端末2には供給されない情報が含まれていてもよい。この供給されない情報は、移動体通信網基地局3に接続されている通信端末の台数や、過去の通信品質の統計の情報などである。 In the above description, the first communication quality information acquisition unit 43 has described the configuration for acquiring the first communication quality information from the first communication quality information transmission unit 25, but is not limited thereto. The first communication quality information acquisition unit 43 may be supplied with the first communication quality information from the mobile communication network base station 3. In this case, the mobile communication network base station 3 may include the first communication quality information transmission unit 31. The first communication quality information supplied from the first communication quality information transmitter 31 may include information that is not supplied to the communication terminal 2. The information that is not supplied is the number of communication terminals connected to the mobile communication network base station 3, information on statistics of past communication quality, and the like.
 アクセスポイント4aは、この通信端末2aには供給されない情報が含まれる第1の通信品質情報に基づいて、切断する通信端末を判定することにより、よりオフロードの効果が高い通信端末を、自装置と通信させることができる。 The access point 4a determines the communication terminal to be disconnected based on the first communication quality information including information that is not supplied to the communication terminal 2a. Can be communicated with.
 なお、上述した説明では、アクセスポイント4aが、優先度設定部45を備える構成について説明したが、優先度設定部45は必須ではない。優先度設定部45を備えないアクセスポイント4aの通信切断判定部46は、上述した第1の実施形態の通信切断判定部24と同様に、第1の通信品質情報と、第2の通信品質情報とに基づいて、通信端末2との間の無線通信を切断するか否かを判定する。
 アクセスポイント4aは、例えば、移動体通信網基地局3に接続している通信端末2aが所定の数を上回る場合には、切断基準をより切断しにくい基準に設定してもよい。アクセスポイント4aは、移動体通信網基地局3に接続している通信端末の通信品質の平均値と分散値に応じて切断基準を設定してもよい。具体的には、アクセスポイント4aは、この通信品質の平均が悪く、分散値が所定の値よりも小さい場合には、オフロードによる改善効果が小さい傾向にあるため、切断基準を切断しやすい基準に設定する。
 アクセスポイント4aは、優先度設定部45が設定する切断の優先度により、オフロードの効果が低い通信端末との無線通信を切断し、オフロードの効果が高い通信端末を自装置と無線通信させ続けることができる。
In the above description, the configuration in which the access point 4a includes the priority setting unit 45 has been described. However, the priority setting unit 45 is not essential. The communication disconnection determination unit 46 of the access point 4a that does not include the priority setting unit 45 is similar to the communication disconnection determination unit 24 of the first embodiment described above, and includes first communication quality information and second communication quality information. Based on the above, it is determined whether or not the wireless communication with the communication terminal 2 is disconnected.
For example, when the number of communication terminals 2a connected to the mobile communication network base station 3 exceeds a predetermined number, the access point 4a may set the disconnection criterion to a criterion that makes disconnection more difficult. The access point 4a may set the disconnection criterion according to the average value and the variance value of the communication quality of the communication terminals connected to the mobile communication network base station 3. Specifically, since the access point 4a has a poor average communication quality and the variance value is smaller than a predetermined value, the improvement effect due to offload tends to be small. Set to.
The access point 4a disconnects the wireless communication with the communication terminal having a low offload effect according to the disconnection priority set by the priority setting unit 45, and causes the communication terminal having a high offload effect to wirelessly communicate with the own device. You can continue.
 通信切断判定部46は、複数の第1の通信品質情報から算出される統計情報、自装置と無線通信する通信端末2aの数のうち少なくとも1つに更に基づいて、通信端末2aとの間の無線通信を切断するか否かを判定してもよい。 The communication disconnection determination unit 46 is further based on at least one of statistical information calculated from a plurality of pieces of first communication quality information and the number of communication terminals 2a that wirelessly communicate with its own device. It may be determined whether to disconnect the wireless communication.
 なお、上記の各実施形態における通信端末2、通信端末2a、移動体通信網基地局3、アクセスポイント4及びアクセスポイント4aが備える各部は、専用のハードウェアにより実現されるものであってもよく、また、メモリおよびマイクロプロセッサにより実現させるものであってもよい。 The units included in the communication terminal 2, the communication terminal 2a, the mobile communication network base station 3, the access point 4, and the access point 4a in each of the above embodiments may be realized by dedicated hardware. Further, it may be realized by a memory and a microprocessor.
 なお、通信端末2、通信端末2a、移動体通信網基地局3、アクセスポイント4及びアクセスポイント4aが備える各部は、メモリおよびCPU(中央演算装置)により構成され、通信端末2、通信端末2a、移動体通信網基地局3、アクセスポイント4及びアクセスポイント4aが備える各部の機能を実現するためのプログラムをメモリにロードして実行することによりその機能を実現させるものであってもよい。 The communication terminal 2, the communication terminal 2a, the mobile communication network base station 3, the access point 4, and each unit included in the access point 4a are configured by a memory and a CPU (Central Processing Unit), and the communication terminal 2, the communication terminal 2a, You may implement | achieve the function by loading the program for implement | achieving the function of each part with which the mobile communication network base station 3, the access point 4, and the access point 4a are equipped, and executing it.
 また、通信端末2、通信端末2a、移動体通信網基地局3、アクセスポイント4及びアクセスポイント4aが備える各部の機能を実現するためのプログラムをコンピュータ読み取り可能な記録媒体に記録して、この記録媒体に記録されたプログラムをコンピュータシステムに読み込ませ、実行することにより処理を行ってもよい。なお、ここでいう「コンピュータシステム」とは、OSや周辺機器等のハードウェアを含むものとする。 In addition, a program for realizing the functions of each unit included in the communication terminal 2, the communication terminal 2a, the mobile communication network base station 3, the access point 4, and the access point 4a is recorded on a computer-readable recording medium. Processing may be performed by causing a computer system to read and execute a program recorded on a medium. Here, the “computer system” includes an OS and hardware such as peripheral devices.
 また、「コンピュータシステム」は、WWWシステムを利用している場合であれば、ホームページ提供環境(あるいは表示環境)も含むものとする。
 また、「コンピュータ読み取り可能な記録媒体」とは、フレキシブルディスク、光磁気ディスク、ROM、CD-ROM等の可搬媒体、コンピュータシステムに内蔵されるハードディスク等の記憶装置のことをいう。さらに「コンピュータ読み取り可能な記録媒体」とは、インターネット等のネットワークや電話回線等の通信回線を介してプログラムを送信する場合の通信線のように、短時間の間、動的にプログラムを保持するもの、その場合のサーバやクライアントとなるコンピュータシステム内部の揮発性メモリのように、一定時間プログラムを保持しているものも含むものとする。また上記プログラムは、前述した機能の一部を実現するためのものであってもよく、さらに前述した機能をコンピュータシステムにすでに記録されているプログラムとの組み合わせで実現できるものであってもよい。
Further, the “computer system” includes a homepage providing environment (or display environment) if a WWW system is used.
The “computer-readable recording medium” refers to a storage device such as a flexible medium, a magneto-optical disk, a portable medium such as a ROM or a CD-ROM, and a hard disk incorporated in a computer system. Furthermore, the “computer-readable recording medium” dynamically holds a program for a short time like a communication line when transmitting a program via a network such as the Internet or a communication line such as a telephone line. In this case, a volatile memory in a computer system serving as a server or a client in that case, and a program that holds a program for a certain period of time are also included. The program may be a program for realizing a part of the functions described above, and may be a program capable of realizing the functions described above in combination with a program already recorded in a computer system.
 以上、本発明の実施形態を、図面を参照して詳述してきたが、具体的な構成はこの実施形態に限られるものではなく、本発明の趣旨を逸脱しない範囲で適宜変更を加えることができる。上述した各実施形態に記載の構成を組み合わせてもよい。 The embodiment of the present invention has been described in detail with reference to the drawings. However, the specific configuration is not limited to this embodiment, and appropriate modifications may be made without departing from the spirit of the present invention. it can. You may combine the structure as described in each embodiment mentioned above.
 100 通信システム
2,2a 通信端末
3,3A,3B 移動体通信網基地局
4,4a アクセスポイント
20,20a,30,30a,40,40a 制御部
21,21a 第1通信品質情報取得部
22 第2通信品質情報取得部
23 通信部
24 通信切断判定部
25 第1通信品質情報送信部
26 第2通信品質情報送信部 
27 第1通信品質情報生成部
28 第2通信品質情報生成部
31 第1通信品質情報送信部
32 端末通信部
42 端末通信部
43 第1通信品質情報取得部
44 第2通信品質情報取得部
45 優先度設定部
46 通信切断判定部
SA3A,SA3B 移動体通信サービスエリア
CA 干渉エリア
100 communication system 2, 2a communication terminal 3, 3A, 3B mobile communication network base station 4, 4a access point 20, 20a, 30, 30a, 40, 40a control unit 21, 21a first communication quality information acquisition unit 22 second Communication quality information acquisition unit 23 Communication unit 24 Communication disconnection determination unit 25 First communication quality information transmission unit 26 Second communication quality information transmission unit
27 first communication quality information generation unit 28 second communication quality information generation unit 31 first communication quality information transmission unit 32 terminal communication unit 42 terminal communication unit 43 first communication quality information acquisition unit 44 second communication quality information acquisition unit 45 priority Degree setting unit 46 Communication disconnection determination unit SA3A, SA3B Mobile communication service area CA Interference area

Claims (12)

  1.  第1の基地局及び前記第1の基地局とは異なる通信の方式を用いる第2の基地局のそれぞれと無線通信する通信端末であって、
     前記第1の基地局との間の無線通信の通信品質を示す第1の通信品質情報を取得する第1通信品質情報取得部と、
     前記第2の基地局との間の無線通信の通信品質を示す第2の通信品質情報を取得する第2通信品質情報取得部と、
     前記第1通信品質情報取得部が取得する前記第1の通信品質情報と、前記第2通信品質情報取得部が取得する前記第2の通信品質情報とに基づいて、前記第2の基地局との間の無線通信を切断するか否かを判定する通信切断判定部と、
     前記通信切断判定部が判定した結果に基づいて前記第2の基地局との間の無線通信を切断する通信部と
     を備える通信端末。
    A communication terminal that wirelessly communicates with each of a first base station and a second base station that uses a different communication method from the first base station,
    A first communication quality information acquisition unit that acquires first communication quality information indicating communication quality of wireless communication with the first base station;
    A second communication quality information acquisition unit for acquiring second communication quality information indicating communication quality of wireless communication with the second base station;
    Based on the first communication quality information acquired by the first communication quality information acquisition unit and the second communication quality information acquired by the second communication quality information acquisition unit, A communication disconnection determination unit for determining whether to disconnect the wireless communication between
    A communication terminal comprising: a communication unit that disconnects wireless communication with the second base station based on a result determined by the communication disconnection determination unit.
  2.  前記通信切断判定部は、
      前記第2の基地局との間の無線通信を切断する基準を示す切断基準に基づいて前記第2の基地局との間の無線通信を切断するか否かを判定し、
      前記第1の通信品質情報が所定の通信品質よりも高い通信品質を示す場合には、前記切断基準をより切断しやすい基準へと設定し、
      前記第1の通信品質情報が前記所定の通信品質よりも低い通信品質を示す場合には、前記切断基準をより切断しにくい基準へと設定する
     請求項1に記載の通信端末。
    The communication disconnection determination unit
    Determining whether to disconnect the wireless communication with the second base station based on a disconnection criterion indicating a criterion for disconnecting the wireless communication with the second base station;
    If the first communication quality information indicates a communication quality higher than a predetermined communication quality, set the disconnection criterion to a criterion that makes it easier to disconnect,
    The communication terminal according to claim 1, wherein when the first communication quality information indicates a communication quality lower than the predetermined communication quality, the disconnection reference is set to a reference that is more difficult to disconnect.
  3.  前記切断基準とは前記第2の基地局との間の無線通信の通信品質に関する閾値であって、
     前記通信切断判定部は、
     前記第1の通信品質情報が示す通信品質が前記所定の通信品質よりも高い通信品質を示す場合には、前記閾値をより高い値に設定し、
     前記第1の通信品質情報が示す通信品質が前記所定の通信品質よりも低い通信品質を示す場合には、前記閾値をより低い値に設定し、
     前記第2の通信品質情報が示す通信品質が前記閾値を下回る場合には、前記第2の基地局との間の無線通信を切断すると判定する
     請求項2に記載の通信端末。
    The disconnection criterion is a threshold relating to communication quality of wireless communication with the second base station,
    The communication disconnection determination unit
    When the communication quality indicated by the first communication quality information indicates a communication quality higher than the predetermined communication quality, the threshold value is set to a higher value,
    When the communication quality indicated by the first communication quality information indicates a communication quality lower than the predetermined communication quality, the threshold is set to a lower value,
    The communication terminal according to claim 2, wherein when the communication quality indicated by the second communication quality information is lower than the threshold, it is determined to disconnect the wireless communication with the second base station.
  4.  前記通信部は、
      前記第2の基地局との間の無線通信の切断後、前記第1の基地局と無線通信する
     請求項1から請求項3のいずれか一項に記載の通信端末。
    The communication unit is
    The communication terminal according to any one of claims 1 to 3, wherein the communication terminal wirelessly communicates with the first base station after disconnecting the wireless communication with the second base station.
  5.  前記通信部は、
      前記第2の基地局との間の無線通信の切断後、前記第1の通信品質情報と、前記第2の通信品質情報とが、所定の条件を満たす場合には、前記第2の基地局との無線通信を再開する
     請求項1から請求項4のいずれか一項に記載の通信端末。
    The communication unit is
    When the first communication quality information and the second communication quality information satisfy a predetermined condition after disconnecting the wireless communication with the second base station, the second base station The communication terminal according to any one of claims 1 to 4, wherein the wireless communication is resumed.
  6.  前記所定の条件は、前記第1の通信品質情報が示す通信品質に応じて変化し、
      前記第1の通信品質情報が前記所定の通信品質よりも低い通信品質を示す場合には、前記所定の条件をより前記第2の基地局と無線通信しやすい基準へと変化させる
     請求項5に記載の通信端末。
    The predetermined condition changes according to the communication quality indicated by the first communication quality information,
    6. If the first communication quality information indicates a communication quality lower than the predetermined communication quality, the predetermined condition is changed to a reference that facilitates wireless communication with the second base station. The communication terminal described.
  7.  前記第1の基地局とは、移動体通信網の基地局であり、
     前記第2の基地局は、前記移動体通信網ではない基地局である
     請求項1から請求項5のいずれか一項に記載の通信端末。
    The first base station is a base station of a mobile communication network,
    The communication terminal according to any one of claims 1 to 5, wherein the second base station is a base station that is not the mobile communication network.
  8.  前記第1の通信品質情報には、前記第1の基地局と自装置とが無線通信する際に利用可能な変調度、符号化率に関する情報が含まれ、
     前記第2の通信品質情報には、自装置が前記第2の基地局から受信する電波の強さを示す情報が含まれる
     請求項1から請求項7のいずれか一項に記載の通信端末。
    The first communication quality information includes information on a modulation degree and a coding rate that can be used when the first base station and the own apparatus perform wireless communication.
    The communication terminal according to any one of claims 1 to 7, wherein the second communication quality information includes information indicating a strength of a radio wave received by the device from the second base station.
  9.  通信端末と無線通信する基地局であって、
     当該基地局とは異なる通信方式を用いて無線通信する他の基地局と当該通信端末との間の通信品質を示す第1の通信品質情報を取得する第1通信品質情報取得部と、
     前記通信端末との間の無線通信の通信品質を示す第2の通信品質情報を取得する第2通信品質情報取得部と、
     前記第1通信品質情報取得部が取得する前記第1の通信品質情報と、前記第2通信品質情報取得部が取得する前記第2の通信品質情報とに基づいて、前記通信端末との間の無線通信を切断するか否かを判定する通信切断判定部と、
     前記通信切断判定部が判定した結果に基づいて前記通信端末との間の無線通信を切断する通信部と
     を備える基地局。
    A base station that communicates wirelessly with a communication terminal,
    A first communication quality information acquisition unit that acquires first communication quality information indicating communication quality between another communication station and the communication terminal that performs wireless communication using a communication method different from that of the base station;
    A second communication quality information acquisition unit that acquires second communication quality information indicating communication quality of wireless communication with the communication terminal;
    Based on the first communication quality information acquired by the first communication quality information acquisition unit and the second communication quality information acquired by the second communication quality information acquisition unit, between the communication terminals A communication disconnection determination unit that determines whether to disconnect the wireless communication;
    A base station comprising: a communication unit that disconnects wireless communication with the communication terminal based on a result determined by the communication disconnection determination unit.
  10.  前記通信切断判定部は、
      前記通信端末との間の無線通信を切断する基準を示す切断基準に基づいて前記通信端末との間の無線通信を切断するか否かを判定し、
      前記第1の通信品質情報が所定の通信品質よりも高い通信品質を示す場合には、前記切断基準をより切断しやすい基準へと設定し、
      前記第1の通信品質情報が当該所定の通信品質よりも低い通信品質を示す場合には、前記切断基準をより切断しにくい基準へと設定する
     請求項9に記載の基地局。
    The communication disconnection determination unit
    Determining whether to disconnect wireless communication with the communication terminal based on a disconnection criterion indicating a criterion for disconnecting wireless communication with the communication terminal;
    If the first communication quality information indicates a communication quality higher than a predetermined communication quality, set the disconnection criterion to a criterion that makes it easier to disconnect,
    The base station according to claim 9, wherein when the first communication quality information indicates a communication quality lower than the predetermined communication quality, the disconnection reference is set to a reference that is more difficult to disconnect.
  11.  前記通信切断判定部は、
      複数の前記第1の通信品質情報から算出される統計情報、自装置と無線通信する前記通信端末の数のうち少なくとも1つに更に基づいて、前記通信端末との間の無線通信を切断するか否かを判定する
     請求項9から請求項10のいずれか一項に記載の基地局。
    The communication disconnection determination unit
    Whether to disconnect wireless communication with the communication terminal based on at least one of statistical information calculated from a plurality of the first communication quality information and the number of the communication terminals wirelessly communicating with the own device. The base station as described in any one of Claim 9 to 10. It determines whether or not.
  12.  前記第1の通信品質情報は、
      前記通信端末及び前記他の基地局のうち少なくとも1つから取得する
     請求項9から請求項11のいずれか一項に記載の基地局。
    The first communication quality information is:
    The base station according to any one of claims 9 to 11, which is obtained from at least one of the communication terminal and the other base station.
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JP2011510580A (en) * 2008-01-25 2011-03-31 ブリティッシュ・テレコミュニケーションズ・パブリック・リミテッド・カンパニー Handover control

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