WO2012144353A1 - 無線通信システム、無線基地局、無線端末及び通信制御方法 - Google Patents
無線通信システム、無線基地局、無線端末及び通信制御方法 Download PDFInfo
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- WO2012144353A1 WO2012144353A1 PCT/JP2012/059539 JP2012059539W WO2012144353A1 WO 2012144353 A1 WO2012144353 A1 WO 2012144353A1 JP 2012059539 W JP2012059539 W JP 2012059539W WO 2012144353 A1 WO2012144353 A1 WO 2012144353A1
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- base station
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- radio
- radio base
- wireless communication
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/50—Connection management for emergency connections
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W24/00—Supervisory, monitoring or testing arrangements
- H04W24/04—Arrangements for maintaining operational condition
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W36/00—Hand-off or reselection arrangements
- H04W36/0005—Control or signalling for completing the hand-off
- H04W36/0055—Transmission or use of information for re-establishing the radio link
- H04W36/0066—Transmission or use of information for re-establishing the radio link of control information between different types of networks in order to establish a new radio link in the target network
Definitions
- the present invention relates to a radio communication system having a first system corresponding to the first radio communication system and a second system corresponding to the second radio communication system, a radio base station in the radio communication system, and a radio terminal And a communication control method in the wireless communication system.
- a wireless base station In 3GPP (Third Generation Partnership Project), a wireless communication system corresponding to LTE (Long Term Evolution) that is currently developing a standard, a wireless base station is connected to an MME (Mobile Management Management Entity) that is an upper node via a backhaul. ) To communicate with the MME.
- LTE Long Term Evolution
- MME Mobile Management Management Entity
- a radio base station is connected to an upper node MSC / VLR (Mobile Switching Center / Visitor Location Register) via a backhaul, Communication is performed between the MSC / VLR.
- MSC / VLR Mobile Switching Center / Visitor Location Register
- a wireless communication system that supports LTE and CDMA uses CS-Fallback technology during voice communication service when LTE does not have a VoIP (Voice over IP) function.
- CS-Fallback a radio terminal connected to a radio base station (LTE base station) compatible with LTE switches to a radio base station (CDMA base station) compatible with CDMA and starts voice communication.
- LTE base station radio base station
- CDMA base station radio base station
- a wireless terminal In a wireless communication system using CS-Fallback, a wireless terminal is always connected to an LTE base station. For this reason, in the voice communication, the wireless terminal transmits a call request and receives a call when an incoming call is received via the LTE base station. Thereafter, the wireless terminal performs handover for switching the connection from the LTE base station to the CDMA base station. After the handover, the wireless terminal transmits a call request and receives a call when an incoming call is received via the CDMA base station, and starts a voice call.
- a radio communication system using CS-Fallback requires that a radio terminal can be connected to both an LTE base station and a CDMA base station.
- a failure such as a failure of the radio base station or disconnection of the backhaul line.
- the wireless terminal cannot perform voice communication even if the CDMA base station is operating normally.
- a feature of the present invention is that a first radio base station (LTE base station 10) corresponding to the first radio communication system (LTE) and a second radio base station corresponding to the second radio communication system (CDMA) (CDMA base station 20)
- a wireless communication system wireless communication system 1 having a system, wherein when the first wireless base station receives emergency information (ETWS information) related to an emergency situation, A first switching request notification for requesting switching of connection to the second radio base station to the radio terminal (UE 200) connected to the first radio base station (from the LTE base station 10)
- ETS information emergency information
- the wireless terminal transmits the second wireless base station to the second wireless base station when the wireless terminal receives the first switching request notification.
- connection request message connection request message
- the first radio base station when the first radio base station receives emergency information, the first radio base station breaks down due to a subsequent disaster, or the first radio base station and an upper apparatus are There is a possibility that a wireless terminal connected to the first wireless base station cannot perform wireless communication due to disconnection of the backhaul line to be connected. For this reason, when the first radio base station receives emergency information, the radio terminal connected to the first radio base station is requested to switch the connection to the second radio base station. In response to the switching request, the radio terminal requests the second radio base station to connect to the second radio base station. As a result, the wireless terminal can switch the connection destination to the second wireless base station in advance before the failure of the first wireless base station or the occurrence of a failure related to the first wireless base station. The certainty can be improved.
- a feature of the present invention is that the second radio base station is configured to provide the first radio base station with respect to a radio terminal that is not performing voice communication among a plurality of radio terminals whose connection is switched to the second radio base station.
- the gist is to transmit a second switching request notification (a handover command for switching the connection destination from the CDMA base station 20 to the LTE base station 10) requesting switching of the connection to the radio base station.
- the gist of the present invention is that the second radio base station transmits the second switching request notification according to the number of radio terminals performing voice communication.
- the gist of a feature of the present invention is that the second radio base station transmits the second switching request notification according to a ratio of radio terminals performing voice communication.
- a feature of the present invention is that the wireless terminal is connected to the first wireless base station with respect to the first wireless base station after a lapse of a first predetermined time after connecting to the second wireless base station.
- the gist is to transmit a first reconnection request notification (connection request message) requesting the connection.
- a feature of the present invention is that the wireless terminal requests connection to the first wireless base station after a second predetermined time has elapsed after connecting to the second wireless base station and performing voice communication.
- the gist is to transmit a reconnection request notification of No. 2.
- a feature of the present invention is that the first radio base station transmits the first switch request notification at different timings to a plurality of radio terminals connected to the first radio base station. The gist.
- a feature of the present invention is a wireless base station in a system corresponding to a predetermined wireless communication system, and when receiving emergency information related to an emergency situation, a wireless terminal connected to the wireless base station Thus, the gist is to transmit a switching request notification for requesting switching of connection to another wireless base station in a system corresponding to another wireless communication method.
- a feature of the present invention is a radio terminal connectable to a first radio base station corresponding to a first radio communication scheme and a second radio base station corresponding to a second radio communication scheme, When receiving a switching request notification requesting switching of the connection to the second radio base station, transmitted from the first radio base station, the second radio base station The gist is to transmit a connection request notification requesting connection to a radio base station.
- a feature of the present invention is a communication control method in a radio communication system having a first radio base station corresponding to the first radio communication scheme and a second radio base station corresponding to the second radio communication scheme.
- the radio terminal connected to the first radio base station is directed to the second radio base station. Transmitting a switching request notification for requesting switching of the connection, and when the wireless terminal receives the switching request notification, to the second wireless base station, to the second wireless base station And a step of transmitting a connection request notification for requesting connection.
- FIG. 1 is an overall schematic configuration diagram of a radio communication system according to an embodiment of the present invention.
- FIG. 2 is a configuration diagram of an LTE base station according to the embodiment of the present invention.
- FIG. 3 is a configuration diagram of a CDMA base station according to the embodiment of the present invention.
- FIG. 4 is a configuration diagram of the UE according to the embodiment of the present invention.
- FIG. 5 is a sequence diagram showing a first operation of the radio communication system according to the embodiment of the present invention.
- FIG. 6 is a sequence diagram showing a second operation of the wireless communication system according to the embodiment of the present invention.
- FIG. 7 is a sequence diagram showing a third operation of the radio communication system according to the embodiment of the present invention.
- FIG. 8 is a sequence diagram showing a fourth operation of the radio communication system according to the embodiment of the present invention.
- FIG. 9 is a sequence diagram showing a fifth operation of the radio communication system according to the embodiment of the present invention.
- FIG. 1 is a schematic configuration diagram of a radio communication system according to the present embodiment.
- a radio communication system 1 illustrated in FIG. 1 includes a radio communication system compatible with LTE and a radio communication system compatible with CDMA.
- the radio communication system 1 is connected to a radio terminal (UE: User) Equipment) 200-1 and UE 200-2 (hereinafter, UE 200-1 and UE 200-2 are collectively referred to as “UE 200” as appropriate) and an external exchange 450.
- UE 200 User
- UE 200-2 are collectively referred to as “UE 200” as appropriate
- the voice communication with the terminal device 400 is enabled.
- the wireless communication system corresponding to LTE is a wireless communication system for data communication that does not have a VoIP (Voice over IP) function.
- the wireless communication system corresponding to LTE includes LTE base station 10, router 50, S-GW (Serving gateway) 60, P-GW (Packet data network gateway) 70, IMS (IP multimedia subsystem) 80, and MME (Mobile Management Entity) 90.
- the router 50, the S-GW 60, the P-GW 70, the IMS 80, and the MME 90 are installed in a backhaul (LTE backhaul) in a radio communication system compatible with LTE.
- LTE backhaul backhaul
- a wireless communication system corresponding to LTE has a function of an earthquake and tsunami warning system (ETWS) that is one of public warning systems (PWS).
- ETWS is a system for notifying UE 200 of emergency information regarding earthquakes and tsunamis using a broadcast channel of a wireless communication system compatible with LTE.
- the wireless communication system corresponding to CDMA is a wireless communication system for voice communication.
- the wireless communication system corresponding to CDMA includes a CDMA base station 20, an RNC (Radio Network Controller) 100, an MSC / VLR (Mobile Switching Center / Visitor Location Register) 110, a GMCS (Generalized Multi Carrier Subsystem) 120, and an exchange 130.
- the RNC 100, the MSC / VLR 110, the GMCS 120, and the exchange 130 are installed in a backhaul (CDMA backhaul) in a radio communication system that supports CDMA.
- CDMA backhaul backhaul
- the wireless communication system 1 also supports HSS (Home Subscriber Server) 140 and CBC95 shared by a wireless communication system compatible with LTE and a wireless communication system compatible with CDMA, a wireless communication system compatible with LTE, and CDMA. And a network 151 for connecting to the wireless communication system.
- HSS Home Subscriber Server
- the LTE base station 10 and the CDMA base station 20 are installed in the same position.
- the UE 200 exists in the cell of the LTE base station 10 and in the cell of the CDMA base station 20, and can perform radio communication with both the LTE base station 10 and the CDMA base station.
- FIG. 2 is a diagram illustrating a configuration of the LTE base station 10.
- the LTE base station 10 includes a control unit 11, a wireless communication unit 12, an antenna 13, a wired communication unit 14, and a storage unit 15.
- the control unit 11 is configured using, for example, a CPU (Central Processing Unit), a DSP (Digital Signal Processor), and the like.
- the control unit 11 controls various functions provided in the LTE base station 10.
- the wireless communication unit 12 is configured using, for example, a radio frequency (RF) circuit, a baseband (BB) circuit, or the like.
- the radio communication unit 12 can perform radio communication with the UE 200 via the antenna 13.
- the wired communication unit 14 communicates with the router 50, which is an upper node.
- the storage unit 15 is configured using, for example, a memory, and stores various types of information used for controlling the LTE base station 10 and the like.
- FIG. 3 is a diagram showing a configuration of the CDMA base station 20.
- the CDMA base station 20 includes a control unit 21, a wireless communication unit 22, an antenna 23, a wired communication unit 24, and a storage unit 25.
- the control unit 21 is configured using, for example, a CPU, a DSP, or the like.
- the control unit 21 controls various functions provided in the CDMA base station 20.
- the wireless communication unit 22 is configured using, for example, an RF circuit or a BB circuit.
- the radio communication unit 22 can perform radio communication with the UE 200 via the antenna 23.
- the wired communication unit 24 performs communication with the RNC 100 that is the upper node.
- the storage unit 25 is configured using, for example, a memory, and stores various types of information used for controlling the CDMA base station 20 and the like.
- FIG. 4 is a diagram illustrating a configuration of the UE 200.
- the UE 200 includes a control unit 201, a wireless communication unit 202, an antenna 203, and a storage unit 205.
- the control unit 201 is configured using, for example, a CPU, a DSP, or the like.
- the control unit 201 controls various functions that the UE 200 has.
- the wireless communication unit 202 is configured using, for example, an RF circuit or a BB circuit.
- the wireless communication unit 202 can perform wireless communication with the LTE base station 10 and the CDMA base station 20 via the antenna 203.
- the storage unit 205 is configured using, for example, a memory, and stores various types of information used for controlling the UE 200 and the like.
- the radio communication system 1 uses the CS-Fallback technology during voice communication by the UE 200. Thereby, the UE 200 connected to the LTE base station 10 switches the connection to the CDMA base station 20 and starts voice communication.
- an ETWS issuing terminal device transmits earthquake tsunami warning (ETWS) information, which is information related to a predetermined emergency, to an ETWS information server (not shown).
- ETWS information includes, for example, information on the magnitude of the expected earthquake shake and information on the expected tsunami height.
- the ETWS information server receives ETWS information. Further, the ETWS information server transmits ETWS information to the MME 90. The MME 90 receives the ETWS information. Further, the MME 90 transmits ETWS information to the LTE base station 10 via the router 50.
- the control unit 11 in the LTE base station 10 receives the ETWS information via the wired communication unit 14.
- the control unit 11 in the LTE base station 10 analyzes the scale of the disaster indicated by the ETWS information.
- the scale of the disaster is greater than or equal to a predetermined scale (for example, when the magnitude of an expected earthquake shake is greater than or equal to a predetermined value, the expected tsunami height is greater than or equal to a predetermined value)
- the LTE base station 10 instructs the UE 200 connected to the LTE base station 10 to start standby in CS-Fallback (CS standby start). Send an instruction message).
- the stand-by in CS-Fallback is a general paging message from the CDMA base station 20 when the UE 200 is connected to the CDMA base station 20 when the UE 200 is a voice communication originator and the UE 200 is a voice communication destination. This means that the UE 200 is connected to the CDMA base station 20 so as to receive a signal and enters a standby state in voice communication.
- the control unit 201 in the UE 200 receives a CS standby start instruction message via the antenna 203 and the wireless communication unit 202.
- the control unit 201 in the UE 200 and the control unit 11 in the LTE base station 10 perform processing (Optional Measurement Report Solicitation) for determining the CDMA base station 20 to which the UE 200 is connected when waiting in CS-Fallback.
- the control unit 201 in the UE 200 receives a signal (broadcast signal) from the surrounding CDMA base station 20 via the antenna 203 and the wireless communication unit 202.
- the broadcast signal includes identification information of the source CDMA base station 20.
- the control unit 201 in the UE 200 measures the reception level (reception electric field strength) of each received notification signal.
- the control unit 201 in the UE 200 determines the CDMA base station 20 that is the transmission source of the broadcast signal having a reception level equal to or higher than a predetermined value, as a candidate for the connection destination of the UE 200 when waiting in CS-Fallback.
- the control unit 201 in the UE 200 uses the identification information of the CDMA base station 20 that is a candidate for the connection destination of the UE 200 at the time of standby in CS-Fallback as measurement report information via the radio communication unit 202 and the antenna 203, and performs LTE. Transmit to the base station 10.
- the control unit 11 in the LTE base station 10 receives the measurement report information. Based on the measurement report information, the control unit 11 in the LTE base station 10 determines the CDMA base station 20 that is the connection destination of the UE 200 when waiting in CS-Fallback.
- the control unit 11 in the LTE base station 10 transmits a handover command to the UE 200 via the radio communication unit 12 and the antenna 13.
- the handover command is a command for instructing a handover to the CDMA base station 20 determined as a connection destination of the UE 200 at the time of standby in CS-Fallback.
- the handover command includes identification information of the CDMA base station 20 that is the connection destination.
- the control unit 11 in the LTE base station 10 determines the CDMA base station 20 to be a connection destination for each UE 200, the LTE
- the control unit 11 in the base station 10 transmits a handover command to each UE 200 at different timings.
- the control unit 201 in the UE 200 receives the handover command via the antenna 203 and the wireless communication unit 202.
- the control unit 201 in the UE 200 recognizes the CDMA base station 20 that is a connection destination based on the handover command.
- the control unit 201 in the UE 200 transmits a connection request message to the CDMA base station 20 via the wireless communication unit 202 and the antenna 203.
- the connection request message is a message for the UE 200 to request connection to the CDMA base station 20.
- the control unit 21 in the CDMA base station 20 receives the connection request message via the antenna 23 and the wireless communication unit 22.
- the control unit 21 in the CDMA base station 20 performs processing for connecting the UE 200.
- the process of connecting the UE 200 is a process in which the control unit 21 in the CDMA base station 20 allocates a radio channel to the UE 200.
- a handover from the LTE base station 10 to the CDMA base station 20 is performed by the connection process.
- the control unit 201 in the UE 200 transmits a CS standby start message to the CDMA base station 20 via the wireless communication unit 202 and the antenna 203.
- the CS standby start message is a message for notifying the start of standby in CS-Fallback.
- the CS standby start message includes identification information of the source UE 200.
- the control unit 21 in the CDMA base station 20 receives a CS standby start message via the antenna 23 and the wireless communication unit 22. Further, the control unit 21 in the CDMA base station 20 transmits a CS standby start message to the MSC / VLR 110 that is a higher-order node via the wired communication unit 24 and the RNC 100.
- the MSC / VLR 110 may The CS standby start message is transmitted to the other MSC / VLR 110 including the CDMA base station 20 as a lower node.
- the MSC / VLR 110 manages the location of UE 200 in units of a predetermined area (Location Area) in a CDMA system.
- the Location Area is a cell area formed by one or a plurality of CDMA base stations 20 which are lower nodes.
- the MSC / VLR 110 holds the identification information of the Location Area and the identification information of the UE 200 existing in the Location Area in association with each other.
- the MSC / VLR 110 receives the CS standby start message. From the CS standby start message, the MSC / VLR 110 can recognize that the UE 200 that is the transmission source of the CS standby start message is in a standby state in CS-Fallback and is a location management target. Further, the MSC / VLR 110 transmits a CS standby start message to the MME 90.
- the MME 90 manages the position of the UE 200 in units of a predetermined area (Tracking Area) in the LTE system.
- the Tracking Area is a cell area formed by one or a plurality of LTE base stations 10.
- the MME 90 holds the identification information of the Tracking Area and the identification information of the UE 200 existing in the Tracking Area in association with each other.
- the MME 90 receives the CS standby start message. From the CS standby start message, the MME 90 can recognize that the UE 200 that is the transmission source of the CS standby start message is in a standby state in CS-Fallback and is not subject to location management.
- the second process is a process performed after the UE 200 is connected to the CDMA base station 20 and enters a standby state in voice communication by the first process described above, and is a process at the time of incoming to the UE 200.
- MSC / VLR 110 receives an incoming request message from GMCS 120, which is an upper node.
- the incoming request message is a message for requesting an incoming call to the UE 200 in voice communication in which the terminal device 400 is the outgoing side and the UE 200 is the incoming side.
- the incoming call request message includes identification information of the UE 200 that is the incoming call destination.
- MSC / VLR 110 specifies a combination including the identification information of UE 200 included in the incoming request message from the combination of the identification information of UE 200 and the identification information of Location Area that is held. Further, the MSC / VLR 110 determines the location area corresponding to the identification information of the location area included in the specified combination as the location area where the destination UE 200 exists. Next, the MSC / VLR 110 transmits a general call message via the RNC 100 to the CDMA base station 20 corresponding to the determined Location Area.
- the general call message is a message for making a call to the UE 200 that is the destination.
- the general call message includes identification information of the UE 200 that is the destination.
- the control unit 21 in the CDMA base station 20 receives the general call message via the wired communication unit 24.
- the control unit 21 in the CDMA base station 20 receives the general call message via the radio communication unit 22 and the antenna 23.
- the control unit 201 in the UE 200 receives the general call message via the antenna 203 and the wireless communication unit 202.
- the control unit 201 in the UE 200 transmits the paging message transmission source CDMA base station 20 to the CDMA base station 20 via the wireless communication unit 202 and the antenna 203.
- a general call response message is received.
- the general call response message is a message that is a response to the general call message.
- the control unit 21 in the CDMA base station 20 receives the simultaneous call response message via the antenna 23 and the wireless communication unit 22.
- the control unit 21 in the CDMA base station 20 transmits a simultaneous call response message to the MSC / VLR 110 via the wired communication unit 24 and the RNC 100.
- MSC / VLR 110 receives the paging response message.
- the MSC / VLR 110 can recognize that the UE 200 has arrived. Thereafter, voice communication via the CDMA base station 20 is performed between the UE 200 and the terminal device 400.
- the third process is a process performed after the UE 200 is connected to the CDMA base station 20 and enters a standby state in voice communication by the first process described above, and is a process at the time of transmission by the UE 200.
- the control unit 201 in the UE 200 transmits a voice call request message via the wireless communication unit 202 and the antenna 203.
- the voice call request message is a message for requesting voice communication between the UE 200 and the terminal device 400.
- the voice call request message includes identification information of the terminal device 400 that is the destination.
- the control unit 21 in the CDMA base station 20 receives the voice call request message via the antenna 23 and the wireless communication unit 22.
- the control unit 21 in the CDMA base station 20 transmits a voice call request message to the MSC / VLR 110 via the wired communication unit 24 and the RNC 100.
- the MSC / VLR 110 receives the voice call request message and transmits it to the GMCS 120, which is an upper node. Thereafter, voice communication via the CDMA base station 20 is performed between the UE 200 and the terminal device 400.
- the fourth process is a process performed after the UE 200 is connected to the CDMA base station 20 and enters a standby state in voice communication by the first process described above.
- the control unit 201 in the UE 200 ends the elapsed time after the UE 200 switches the connection destination from the LTE base station 10 to the CDMA base station 20, or after completing the voice communication performed by connecting to the CDMA base station 20. Measure the elapsed time.
- the control unit 201 in the UE 200 transmits a connection request message to the LTE base station 10 via the wireless communication unit 202 and the antenna 203.
- the connection request message is a message for the UE 200 to request connection to the LTE base station 10.
- the control unit 11 in the LTE base station 10 receives the connection request message via the antenna 13 and the wireless communication unit 12.
- the control unit 11 in the LTE base station 10 performs processing for connecting the UE 200.
- the process of connecting the UE 200 is a process in which the control unit 11 in the LTE base station 10 allocates a radio channel to the UE 200.
- a handover from the CDMA base station 20 to the LTE base station 10 is performed by the connection process.
- the control unit 201 in the UE 200 transmits a CS standby end message to the LTE base station 10 via the wireless communication unit 202 and the antenna 203.
- the CS standby end message is a message for notifying that the standby in CS-Fallback is ended.
- the CS standby start message includes identification information of the source UE 200.
- the control unit 11 in the LTE base station 10 receives the CS standby end message via the antenna 13 and the wireless communication unit 12. Furthermore, the control unit 11 in the LTE base station 10 transmits a CS standby end message to the MME 90, which is an upper node, via the wired communication unit 14 and the router 50.
- the MME 90 receives the CS standby end message and transmits it to the MSC / VLR 110.
- the MSC / VLR 110 receives the CS standby end message. From the CS standby end message, the MSC / VLR 110 can recognize that the UE 200 that is the transmission source of the CS standby end message is not subject to location management.
- the fifth process is a process performed after the UE 200 is connected to the CDMA base station 20 and enters a standby state in voice communication by the first process described above.
- the control unit 21 in the CDMA base station 20 performs a handover from the LTE base station 10 to the CDMA base station 20 among the UEs 200 connected to the CDMA base station 20, and enters a standby state in CS-Fallback.
- UE 200 (CS standby state UE 200) is managed.
- the control unit 21 in the CDMA base station 20 can determine that the UE 200 that is the transmission source of the CS standby start message is in the CS standby state UE200.
- the control unit 21 in the CDMA base station 20 determines the CS standby state UE200 in which voice communication is not performed among the CS standby state UE200.
- the control unit 21 in the CDMA base station 20 may determine only the CS standby state UE200 that is performing voice communication at the time of determination, and the CS standby state UE200 that is not performing voice communication within the past predetermined period. May be determined. Further, the control unit 21 in the CDMA base station 20 may determine the CS standby state UE 200 that has never performed voice communication after connecting to the CDMA base station 20.
- the control unit 21 in the CDMA base station 20 acquires the number of CS standby states UE200 in which voice communication has not been performed among the CS standby states UE200 (standby state UE200 in which voice communication has not been performed). Alternatively, the control unit 21 in the CDMA base station 20 calculates the ratio (voice communication non-execution ratio) of the CS standby state UE 200 in which voice communication is not executed to the number of CS standby states UE 200.
- the control unit in the CDMA base station 20 21 transmits a handover command via the radio communication unit 22 and the antenna 23 to the CS standby state UE 200 in which voice communication is not executed.
- the handover command is a command for instructing handover to the LTE base station 10.
- the handover command includes identification information of the LTE base station 10 that is the connection destination.
- the control unit 201 in the UE 200 receives the handover command via the antenna 203 and the wireless communication unit 202.
- the control unit 201 in the UE 200 recognizes the LTE base station 10 that is the connection destination based on the handover command.
- the control unit 201 in the UE 200 transmits a connection request message to the LTE base station 10 via the wireless communication unit 202 and the antenna 203.
- the connection request message is a message for the UE 200 to request connection to the LTE base station 10.
- the control unit 11 in the LTE base station 10 receives the connection request message via the antenna 13 and the wireless communication unit 12.
- the control unit 11 in the LTE base station 10 performs processing for connecting the UE 200.
- the process of connecting the UE 200 is a process in which the control unit 11 in the LTE base station 10 allocates a radio channel to the UE 200.
- a handover from the CDMA base station 20 to the LTE base station 10 is performed by the connection process.
- the control unit 201 in the UE 200 transmits a CS standby end message to the LTE base station 10 via the wireless communication unit 202 and the antenna 203.
- the CS standby end message is a message for notifying that the standby in CS-Fallback is ended.
- the CS standby start message includes identification information of the source UE 200.
- the control unit 11 in the LTE base station 10 receives the CS standby end message via the antenna 13 and the wireless communication unit 12. Furthermore, the control unit 11 in the LTE base station 10 transmits a CS standby end message to the MME 90, which is an upper node, via the wired communication unit 14 and the router 50.
- the MME 90 receives the CS standby end message and transmits it to the MSC / VLR 110.
- the MSC / VLR 110 receives the CS standby end message. From the CS standby end message, the MSC / VLR 110 can recognize that the UE 200 that is the transmission source of the CS standby end message is not subject to location management.
- FIG. 5 is a sequence diagram showing a first operation of the radio communication system 1. The first operation corresponds to the first process described above.
- step S100 the MME 90 receives ETWS information.
- step S101 the MME 90 transmits ETWS information.
- the LTE base station 10 receives the ETWS information.
- step S102 the LTE base station 10 determines the scale of the disaster based on the ETWS information.
- step S103 the LTE base station 10 transmits a CS standby start instruction message.
- the UE 200 connected to the LTE base station 10 receives the CS standby start instruction message.
- step S104 the UE 200 and the LTE base station 10 perform a process (Optional Measurement Report Solicitation) for determining the CDMA base station 20 to which the UE 200 is connected when waiting in the CS-Fallback.
- a process Optional Measurement Report Solicitation
- step S105 the LTE base station 10 transmits a handover command.
- the UE 200 receives the handover command.
- step S106 the UE 200 transmits a connection request message.
- the CDMA base station 20 receives the connection request message.
- step S107 the CDMA base station 20 and the UE 200 perform a handover process for switching the connection destination of the UE 200 from the LTE base station 10 to the CDMA base station 20.
- step S108 the UE 200 transmits a CS standby start message.
- the CDMA base station 20 receives a CS standby start message.
- step S109 the CDMA base station 20 transmits a CS standby start message.
- the MSC / VLR 110 receives the CS standby start message.
- step S110 the MSC / VLR 110 transmits a CS standby start message.
- the MME 90 receives the CS standby start message.
- FIG. 6 is a sequence diagram showing a second operation of the wireless communication system 1. The second operation corresponds to the second process described above.
- step S201 the MSC / VLR 110 receives the incoming request message.
- step S202 the MSC / VLR 110 transmits a general call message.
- the CDMA base station 20 receives the general call message.
- step S203 the CDMA base station 20 transmits a general call message.
- UE 200 receives the general call message.
- a general call response message is transmitted.
- the CDMA base station 20 receives the general call response message.
- step S205 the CDMA base station 20 transmits a general call response message.
- MSC / VLR 110 receives the paging response message.
- step S206 the UE 200 and the terminal device 400 perform voice communication via the CDMA base station 20.
- FIG. 7 is a sequence diagram showing a third operation of the wireless communication system 1.
- the third operation corresponds to the third process described above.
- step S301 the UE 200 transmits a voice call request message.
- the CDMA base station 20 receives the voice call request message.
- step S302 the CDMA base station 20 transmits a voice call request message.
- the MSC / VLR 110 receives the voice call request message.
- step S303 the MSC / VLR 110 transmits a voice call request message.
- step S304 the UE 200 and the terminal device 400 perform voice communication via the CDMA base station 20.
- FIG. 8 is a sequence diagram showing a fourth operation of the wireless communication system 1.
- the fourth operation corresponds to the above-described fourth process.
- step S401 the UE 200 determines whether the elapsed time since the UE 200 connected to the CDMA base station 20 or the elapsed time since the voice communication performed after connecting to the CDMA base station 20 is terminated. It is determined whether or not a predetermined time has passed.
- step S402 the UE 200 transmits a connection request message.
- the LTE base station 10 receives the connection request message.
- step S403 the LTE base station 10 and the UE 200 perform a handover process for switching the connection destination of the UE 200 from the CDMA base station 20 to the LTE base station 10.
- step S404 the UE 200 transmits a CS standby end message.
- the LTE base station 10 receives the CS standby end message.
- step S405 the LTE base station 10 transmits a CS standby end message.
- the MME 90 receives the CS standby end message.
- step S406 the MME 90 transmits a CS standby end message.
- the MSC / VLR 110 receives the CS standby end message.
- FIG. 9 is a sequence diagram showing a fifth operation of the wireless communication system 1.
- the fifth operation corresponds to the fifth process described above.
- step S501 the CDMA base station 20 determines a CS standby state UE200 in which voice communication is not performed.
- the CDMA base station 20 acquires the number or ratio of the CS standby state UEs 200 that are not performing voice communication.
- step S503 the CDMA base station 20 Send a handover command.
- the UE 200 receives the handover command.
- step S504 the UE 200 transmits a connection request message.
- the LTE base station 10 receives the connection request message.
- step S505 the LTE base station 10 and the UE 200 perform a handover process for switching the connection destination of the UE 200 from the CDMA base station 20 to the LTE base station 10.
- step S506 the UE 200 transmits a CS standby end message.
- the LTE base station 10 receives the CS standby end message.
- step S507 the LTE base station 10 transmits a CS standby end message.
- the MME 90 receives the CS standby end message.
- step S508 the MME 90 transmits a CS standby end message.
- the MSC / VLR 110 receives the CS standby end message.
- the LTE base station 10 transmits a handover command that is a request for switching the connection to the CDMA base station 20 to the UE 200 connected to the LTE base station 10.
- the UE 200 transmits a connection request message for requesting connection to the CDMA base station 20 to the CDMA base station 20 based on the received handover command.
- the UE 200 can switch to the CDMA base station 20 in advance and enter a standby state in CS-Fallback. Therefore, the reliability of the voice radio communication of the UE 200 can be improved.
- the LTE base station 10 transmits a handover command to each UE 200 at different timings. Thereby, each UE 200 receives the handover command at different timings, and therefore the timing of the handover process from the LTE base station 10 to the CDMA base station 20 is also different. Therefore, the processing related to the handover in the handover source LTE base station 10 and the handover destination CDMA base station 20 is prevented from being concentrated in a short time, and the processing load is reduced.
- the elapsed time after the connection destination of the UE 200 is switched from the LTE base station 10 to the CDMA base station 20 or the elapsed time after the end of the voice communication performed by connecting to the CDMA base station 20 is a predetermined time.
- the UE 200 transmits a connection request message to the LTE base station 10. And the process which returns the connection destination of UE200 from the CDMA base station 20 to the LTE base station 10 is performed.
- the frequency of voice communication is high immediately after the occurrence of a disaster corresponding to ETWS information, and is expected to gradually decrease with the passage of time thereafter. For this reason, after the predetermined time elapses, the UE 200 can return to the LTE base station 10 from the CDMA base station 20 so that the UE 200 can select a connection destination base station that matches the user's usage mode.
- the number of CS standby states UE 200 in which voice communication is not executed is equal to or more than a predetermined number, or CS standby in which voice communication is not executed.
- the CDMA base station 20 transmits a handover command to the CS standby state UE 200 in which voice communication is not performed. And the process which returns the connection destination of UE200 from the CDMA base station 20 to the LTE base station 10 is performed.
- the UE 200 that has not performed voice communication (the CS standby state UE 200 in which voice communication has not been performed) is less likely to perform voice communication thereafter. For this reason, when the connection destination of the CS standby state UE 200 in which voice communication is not performed returns from the CDMA base station 20 to the LTE base station 10, the UE 200 can select a connection destination base station that matches the user's usage mode.
- the LTE base station 10 when receiving the ETWS information, transmits a handover command to the UE 200 so that the connection destination of the UE 200 is switched from the LTE base station 10 to the CDMA base station 20.
- the LTE base station 10 may transmit a handover command to the UE 200 even when information related to PWS other than ETWS information is received.
- the LTE base station 10 receives a message from the UE 200 that the handover is desired to the LTE base station 10 when a predetermined time for handover to the LTE base station 10 has not elapsed. In this case, the handover to the LTE base station 10 may be performed.
- the wireless communication system 1 is configured by a wireless communication system compatible with LTE and a wireless communication system compatible with CDMA.
- the wireless communication system 1 is configured by a wireless communication system compatible with other wireless communication systems. In this case, the present invention can be similarly applied.
- the reliability of wireless communication by a wireless terminal can be improved.
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Abstract
Description
図1は、本実施形態に係る無線通信システムの概略構成図である。図1に示す無線通信システム1は、LTEに対応する無線通信システムと、CDMAに対応する無線通信システムとにより構成される。
図2は、LTE基地局10の構成を示す図である。図2に示すように、LTE基地局10は、制御部11、無線通信部12、アンテナ13、有線通信部14及び記憶部15を含む。
図3は、CDMA基地局20の構成を示す図である。図3に示すように、CDMA基地局20は、制御部21、無線通信部22、アンテナ23、有線通信部24及び記憶部25を含む。
図4は、UE200の構成を示す図である。図4に示すように、UE200は、制御部201、無線通信部202、アンテナ203及び記憶部205とを含む。
図示しないETWS発令端末装置は、地震や津波の発生が予想される場合に、予め定められた緊急事態に関連する情報である地震津波警報(ETWS)情報を、図示しないETWS情報サーバへ送信する。ETWS情報は、例えば、予想される地震の揺れの大きさの情報、予想される津波の高さの情報を含む。
第2の処理は、上述した第1の処理によって、UE200がCDMA基地局20に接続して、音声通信における待ち受け状態となった後に行われる処理であり、UE200への着信時の処理である。
第3の処理は、上述した第1の処理によって、UE200がCDMA基地局20に接続して、音声通信における待ち受け状態となった後に行われる処理であり、UE200による発信時の処理である。
第4の処理は、上述した第1の処理によって、UE200がCDMA基地局20に接続して、音声通信における待ち受け状態となった後に行われる処理である。
第5の処理は、上述した第1の処理によって、UE200がCDMA基地局20に接続して、音声通信における待ち受け状態となった後に行われる処理である。
図5は、無線通信システム1の第1の動作を示すシーケンス図である。第1の動作は、上述の第1の処理に対応する。
本実施形態に係る無線通信システム1において、LTE基地局10がETWS情報を受信した場合、その後の災害により、LTE基地局10が故障したり、LTE基地局10と上位ノードとを接続するバックホール回線が切断すること等により、LTE基地局10が無線通信を行えなくなる可能性がある。
上記のように、本発明は実施形態によって記載したが、この開示の一部をなす論述及び図面はこの発明を限定するものであると理解すべきではない。この開示から当業者には様々な代替実施形態、実施例及び運用技術が明らかとなる。
Claims (10)
- 第1の無線通信方式に対応する第1の無線基地局と、第2の無線通信方式に対応する第2の無線基地局とを有する無線通信システムであって、
前記第1の無線基地局は、緊急事態に関連する緊急情報を受信した場合に、前記第1の無線基地局に接続している無線端末に対して、前記第2の無線基地局への接続の切り替えを要求する第1の切替要求通知を送信し、
前記無線端末は、前記第1の切替要求通知を受信した場合に、前記第2の無線基地局に対して、前記第2の無線基地局への接続を要求する接続要求通知を送信する無線通信システム。 - 前記第2の無線基地局は、前記第2の無線基地局に接続を切り替えた複数の無線端末のうち、音声通信を行っていない無線端末に対して、前記第1の無線基地局への接続の切り替えを要求する第2の切替要求通知を送信する請求項1に記載の無線通信システム。
- 前記第2の無線基地局は、音声通信を行っている無線端末の数に応じて、前記第2の切替要求通知を送信する請求項2に記載の無線通信システム。
- 前記第2の無線基地局は、音声通信を行っている無線端末の比率に応じて、前記第2の切替要求通知を送信する請求項2に記載の無線通信システム。
- 前記無線端末は、前記第2の無線基地局に接続してから第1の所定時間経過後に、前記第1の無線基地局に対して、前記第1の無線基地局への接続を要求する第1の再接続要求通知を送信する請求項1に記載の無線通信システム。
- 前記無線端末は、前記第2の無線基地局に接続して音声通信を行ってから第2の所定時間経過後に、前記第1の無線基地局への接続を要求する第2の再接続要求通知を送信する請求項1に記載の無線通信システム。
- 前記第1の無線基地局は、前記第1の無線基地局に接続している複数の無線端末に対して、異なるタイミングで前記第1の切替要求通知を送信する請求項1に記載の無線通信システム。
- 所定の無線通信方式に対応するシステム内の無線基地局であって、
緊急事態に関連する緊急情報を受信した場合に、前記無線基地局に接続している無線端末に対して、他の無線通信方式に対応するシステム内の他の無線基地局への接続の切り替えを要求する切替要求通知を送信する無線基地局。 - 第1の無線通信方式に対応する第1の無線基地局と、第2の無線通信方式に対応する第2の無線基地局とに接続可能な無線端末であって、
前記第1の無線基地局から送信される、前記第2の無線基地局への接続の切り替えを要求する切替要求通知を受信した場合に、前記第2の無線基地局に対して、前記第2の無線基地局への接続を要求する接続要求通知を送信する無線端末。 - 第1の無線通信方式に対応する第1の無線基地局と、第2の無線通信方式に対応する第2の無線基地局とを有する無線通信システムにおける通信制御方法であって、
前記第1の無線基地局が、緊急事態に関連する緊急情報を受信した場合に、前記第1の無線基地局に接続している無線端末に対して、前記第2の無線基地局への接続の切り替えを要求する切替要求通知を送信するステップと、
前記無線端末が、前記切替要求通知を受信した場合に、前記第2の無線基地局に対して、前記第2の無線基地局への接続を要求する接続要求通知を送信するステップとを含む通信制御方法。
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