WO2022254658A1 - 通信システム、携帯端末、プログラム及び通信方法 - Google Patents

通信システム、携帯端末、プログラム及び通信方法 Download PDF

Info

Publication number
WO2022254658A1
WO2022254658A1 PCT/JP2021/021215 JP2021021215W WO2022254658A1 WO 2022254658 A1 WO2022254658 A1 WO 2022254658A1 JP 2021021215 W JP2021021215 W JP 2021021215W WO 2022254658 A1 WO2022254658 A1 WO 2022254658A1
Authority
WO
WIPO (PCT)
Prior art keywords
mobile terminal
communication
emergency alert
information
alert information
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/JP2021/021215
Other languages
English (en)
French (fr)
Japanese (ja)
Inventor
史樹 長谷川
哲史 松田
満 望月
忠宏 下田
真也 牧野
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Mitsubishi Electric Corp
Original Assignee
Mitsubishi Electric Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Mitsubishi Electric Corp filed Critical Mitsubishi Electric Corp
Priority to JP2023525282A priority Critical patent/JP7752685B2/ja
Priority to PCT/JP2021/021215 priority patent/WO2022254658A1/ja
Priority to EP21944159.9A priority patent/EP4351186A4/en
Priority to US18/289,828 priority patent/US20240244647A1/en
Priority to CN202180098558.6A priority patent/CN117356163A/zh
Publication of WO2022254658A1 publication Critical patent/WO2022254658A1/ja
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Images

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/90Services for handling of emergency or hazardous situations, e.g. earthquake and tsunami warning systems [ETWS]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/40Resource management for direct mode communication, e.g. D2D or sidelink
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/50Connection management for emergency connections
    • 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
    • H04W88/04Terminal devices adapted for relaying to or from another terminal or user
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W92/00Interfaces specially adapted for wireless communication networks
    • H04W92/16Interfaces between hierarchically similar devices
    • H04W92/18Interfaces between hierarchically similar devices between terminal devices

Definitions

  • the present disclosure relates to communication systems, mobile terminals, programs, and communication methods.
  • PWS Public Warning System
  • ETWS Earthquake and Tsunami Warning System
  • ETWS is a method of transmitting ETWS information, which is warning information about earthquakes and tsunamis, using the PWS mechanism.
  • ETWS procedures mobile terminals that can directly communicate with the base station will be able to receive ETWS information.
  • mobile terminals that are out of range of radio waves from the base station cannot receive ETWS information according to the ETWS procedure.
  • the ETWS information is important information related to human safety, it is desirable to be able to transmit the ETWS information to mobile terminals that are out of range of radio waves from base stations.
  • 3GPP 5G NR Full Radio
  • ProSe Proximity-based Services
  • Non-Patent Document 1 in order to transmit ETWS information to mobile terminals that exist outside the range of base station radio waves
  • UE User Equipment
  • a remote terminal which is a mobile terminal that exists outside the range of the base station's radio waves, uses the relay function provided by a relay terminal, which is a mobile terminal that can directly communicate with the base station. to communicate with the base station.
  • the relay terminal has the function of transferring short message information and the function of transferring system information including SIB1, SIB6 and SIB7 to the remote terminal.
  • the relay terminal receives the short messages SIB1, SIB6 and SIB7 sent by the base station for ETWS and relays them to the remote terminal.
  • the remote terminal acquires the ETWS information based on the contents of the short message, SIB1, SIB6 and SIB7 relayed and transmitted by the relay terminal.
  • one or more aspects of the present disclosure aims to enable a relay terminal to transmit emergency alert information to a remote terminal even if the base station does not support the UE-to-Network Relay method. .
  • a communication system is a communication system that performs Side Link Relay communication of 5G NR (Fifth Generation New Radio) defined by 3GPP (Third Generation Partnership Project), comprising: a base station; 1 mobile terminal, and a second mobile terminal capable of communicating with the first mobile terminal by ProSe (Proximity-based Services); is present and the second mobile terminal is outside the range of radio waves from the base station, the first mobile terminal receives a message from the base station for notifying an emergency situation.
  • the emergency alert information is sent using the connection established with the second mobile terminal for one-to-one communication using PSSCH (Physical Sidelink Shared Channel) is transmitted to the second portable terminal.
  • PSSCH Physical Sidelink Shared Channel
  • a communication system is a communication system that performs Side Link Relay communication of 5G NR (Fifth Generation New Radio) defined by 3GPP (Third Generation Partnership Project), comprising: a base station; 1 mobile terminal, and a second mobile terminal capable of communicating with the first mobile terminal by ProSe (Proximity-based Services); is present and the second mobile terminal is outside the range of radio waves from the base station, the first mobile terminal receives a message from the base station for notifying an emergency situation. It is characterized by transmitting a broadcast message including the emergency alert information to the second mobile terminal using PSSCH (Physical Sidelink Shared Channel) when emergency alert information is received.
  • PSSCH Physical Sidelink Shared Channel
  • a communication system is a communication system that performs Side Link Relay communication of 5G NR (Fifth Generation New Radio) defined by 3GPP (Third Generation Partnership Project), comprising: a base station; 1 mobile terminal, and a second mobile terminal capable of communicating with the first mobile terminal by ProSe (Proximity-based Services); is present and the second mobile terminal is outside the range of radio waves from the base station, the first mobile terminal receives a message from the base station for notifying an emergency situation.
  • 5G NR First Generation New Radio
  • 3GPP Third Generation Partnership Project
  • the emergency alert information is sent using the connection established with the second mobile terminal for one-to-one communication using PSSCH (Physical Sidelink Shared Channel) is transmitted to the second mobile terminal, and a broadcast message including the emergency alert information is transmitted to the second mobile terminal using PSSCH.
  • PSSCH Physical Sidelink Shared Channel
  • a mobile terminal is a mobile terminal that performs Side Link Relay communication of 5G NR (Fifth Generation New Radio) defined by 3GPP (Third Generation Partnership Project), a communication unit for receiving emergency alert information, which is information for informing a situation of a When there is another mobile terminal that can communicate with ProSe (Proximity-based Services), between the mobile terminal and the other mobile terminal for one-to-one communication using PSSCH (Physical Sidelink Shared Channel) and a control unit that causes the communication unit to transmit the emergency alert information to the another mobile terminal using the connection established in the above.
  • 5G NR First Generation New Radio
  • 3GPP Third Generation Partnership Project
  • ProSe Proximity-based Services
  • a mobile terminal is a mobile terminal that performs Side Link Relay communication of 5G NR (Fifth Generation New Radio) defined by 3GPP (Third Generation Partnership Project), a communication unit for receiving emergency alert information, which is information for notifying a situation; (Proximity-based Services), when there is another mobile terminal capable of communicating with the and a control unit for transmitting to another mobile terminal.
  • 5G NR First Generation New Radio
  • 3GPP Third Generation Partnership Project
  • a mobile terminal is a mobile terminal that performs Side Link Relay communication of 5G NR (Fifth Generation New Radio) defined by 3GPP (Third Generation Partnership Project), a communication unit for receiving emergency alert information, which is information for notifying a situation; (Proximity-based Services) when there is another mobile terminal that can communicate with the other mobile terminal for one-to-one communication using PSSCH (Physical Sidelink Shared Channel) causing the communication unit to transmit the emergency alert information to the another mobile terminal using the established connection, and transmitting a broadcast message including the emergency alert information to the communication unit using the PSSCH; and a control unit for transmitting to a mobile terminal.
  • 5G NR First Generation New Radio
  • 3GPP Third Generation Partnership Project
  • PSSCH Physical Sidelink Shared Channel
  • a program according to a first aspect of the present disclosure is a computer functioning as a mobile terminal that performs Side Link Relay communication of 5G NR (Fifth Generation New Radio) defined by 3GPP (Third Generation Partnership Project), from a base station to an emergency and when the communication unit receives the emergency alert information, the portable terminal is outside the range of radio waves from the base station. and another mobile terminal that can communicate with ProSe (Proximity-based Services), for one-to-one communication using PSSCH (Physical Sidelink Shared Channel) with the another mobile terminal It is characterized by functioning as a control unit that causes the communication unit to transmit the emergency alert information to the another mobile terminal using the connection established between them.
  • 5G NR First Generation New Radio
  • 3GPP Third Generation Partnership Project
  • a program according to a second aspect of the present disclosure is a computer functioning as a mobile terminal that performs Side Link Relay communication of 5G NR (Fifth Generation New Radio) specified by 3GPP (Third Generation Partnership Project). and when the communication unit receives the emergency alert information, the portable terminal is outside the range of radio waves from the base station. and another mobile terminal that can communicate with ProSe (Proximity-based Services), the broadcast message containing the emergency alert information is sent to the communication unit using PSSCH (Physical Sidelink Shared Channel) function as a control unit for transmitting to the another mobile terminal.
  • PSSCH Physical Sidelink Shared Channel
  • a program according to a third aspect of the present disclosure is a computer functioning as a mobile terminal that performs Side Link Relay communication of 5G NR (Fifth Generation New Radio) defined by 3GPP (Third Generation Partnership Project), from a base station to an emergency and when the communication unit receives the emergency alert information, the portable terminal is outside the range of radio waves from the base station. and another mobile terminal that can communicate with ProSe (Proximity-based Services), for one-to-one communication using PSSCH (Physical Sidelink Shared Channel) with the another mobile terminal causing the communication unit to transmit the emergency alert information to the another mobile terminal using the connection established between the It is characterized by functioning as a control unit for transmitting to another mobile terminal.
  • 5G NR First Generation New Radio
  • 3GPP Third Generation Partnership Project
  • a communication method is a communication method performed by a mobile terminal that performs Side Link Relay communication of 5G NR (Fifth Generation New Radio) defined by 3GPP (Third Generation Partnership Project),
  • 5G NR Full Generation New Radio
  • 3GPP Third Generation Partnership Project
  • PSSCH Physical Sidelink Shared CHannel
  • a communication method is a communication method performed by a mobile terminal that performs Side Link Relay communication of 5G NR (Fifth Generation New Radio) defined by 3GPP (Third Generation Partnership Project), wherein a base
  • 5G NR Full Generation New Radio
  • 3GPP Third Generation Partnership Project
  • ProSe Proximity- If there is another mobile terminal that can communicate with the mobile terminal using PSSCH (Physical Sidelink Shared Channel), the broadcast message containing the emergency alert information is sent to the other mobile terminal using PSSCH (Physical Sidelink Shared Channel)
  • PSSCH Physical Sidelink Shared Channel
  • a communication method is a communication method performed by a mobile terminal that performs Side Link Relay communication of 5G NR (Fifth Generation New Radio) defined by 3GPP (Third Generation Partnership Project),
  • 5G NR Full Generation New Radio
  • 3GPP Third Generation Partnership Project
  • PSSCH Physical Sidelink Shared CHannel
  • the relay terminal can transmit emergency alert information to the remote terminal.
  • FIG. 1 is a block diagram schematically showing a configuration of a radio communication system according to Embodiments 1-6;
  • FIG. FIG. 4 is a sequence diagram showing a procedure for transmitting ETWS information by ETWS in 3GPP 5G NR between a base station and a relay terminal within the radio wave range of the base station;
  • 3 is a block diagram schematically showing the configuration of a relay terminal in Embodiment 1;
  • FIG. (A) and (B) are block diagrams showing hardware configuration examples.
  • 2 is a block diagram schematically showing the configuration of a remote terminal according to Embodiment 1;
  • FIG. 4 is a sequence diagram showing a communication procedure of ETWS information in Embodiment 1.
  • FIG. 10 is a block diagram schematically showing the configuration of a relay terminal in Embodiment 2;
  • FIG. 11 is a block diagram schematically showing the configuration of a remote terminal according to Embodiment 2;
  • FIG. 10 is a sequence diagram showing a communication procedure of ETWS information in Embodiment 2;
  • FIG. 12 is a block diagram schematically showing the configuration of a relay terminal in Embodiment 3;
  • FIG. 12 is a block diagram schematically showing the configuration of a remote terminal according to Embodiment 3;
  • FIG. 12 is a sequence diagram showing a communication procedure of ETWS information in Embodiment 3;
  • FIG. 14 is a block diagram schematically showing the configuration of a relay terminal in Embodiment 4;
  • FIG. 4 is a schematic diagram showing an example of ETWS information and transmission end time
  • FIG. 21 is a block diagram schematically showing the configuration of a relay terminal in Embodiment 5
  • FIG. 22 is a block diagram schematically showing the configuration of a relay terminal in Embodiment 6
  • FIG. 21 is a block diagram schematically showing the configuration of a relay terminal in Embodiment 5
  • FIG. 22 is a block diagram schematically showing the configuration of a relay terminal in Embodiment 6
  • FIG. 1 is a block diagram schematically showing the configuration of radio communication system 100 according to Embodiment 1.
  • Wireless communication system 100 comprises relay terminal 110 and remote terminal 130 .
  • the radio communication system 100 is a communication system that performs Side Link Relay communication of 5G NR (Fifth Generation New Radio) defined by 3GPP (Third Generation Partnership Project).
  • 5G NR Frifth Generation New Radio
  • 3GPP Third Generation Partnership Project
  • a relay terminal 110 is a mobile terminal located within range 102 of radio waves from base station 101 , and a remote terminal 130 is located outside the range 102 of radio waves from base station 101 . Assume that it is a mobile terminal.
  • the relay terminal 110 is also called a first mobile terminal, and the remote terminal 130 is also called a second mobile terminal.
  • the relay terminal 110 can directly communicate with the base station 101 regardless of whether or not the UE-to-Network Relay method is used, and has a function of communicating with ProSe.
  • the remote terminal 130 exists outside the radio wave range of the base station 101 and has a function of communicating with the relay terminal 110 by ProSe.
  • FIG. 2 is a sequence diagram showing a procedure for transmitting ETWS information by ETWS in 3GPP 5G NR between the base station 101 and the relay terminal 110 in the radio wave range 102 of the base station 101 .
  • the base station 101 transmits a short message indicating the presence of ETWS information to the relay terminal 110 on the PDCCH (Physical Downlink Control Channel) communication channel (S10). Thereby, base station 101 notifies relay terminal 110 of the existence of ETWS information.
  • PDCCH Physical Downlink Control Channel
  • the relay terminal 110 which has received the short message indicating that ETWS information exists, receives the information indicating the transmission timing of the ETWS information.
  • (System Information Block) 1 is received (S11). This allows relay terminal 110 to know the transmission timing of SIB6 and SIB7, which indicate ETWS information, on the BCCH from the contents of received SIB1.
  • the relay terminal 110 receives SIB6 and SIB7 on BCCH based on the transmission timing of SIB6 and SIB7 on BCCH learned in step S11 (S12, S13). Thereby, the relay terminal 110 can acquire the ETWS information.
  • the ETWS information can be transmitted from the base station 101 to the mobile terminal according to the above procedure. Next, a case will be described in which ETWS information is transmitted to a mobile terminal that is out of range of radio waves from the base station 101 .
  • relay terminal 110 exists within range 102 within which radio waves from base station 101 reach, and remote terminal 130 exists outside range 102 within which radio waves from base station 101 reach.
  • emergency alert information from the base station 101, which is information for announcing an emergency situation, it uses the connection established with the remote terminal 130 for one-to-one communication using the PSSCH.
  • connection between relay terminal 110 and remote terminal 130 is established before emergency alert information is received.
  • the relay terminal 110 is supposed to transmit system information to the remote terminal 130, the establishment of the connection between the relay terminal 110 and the remote terminal 130 is performed at a timing different from the timing of transmitting the system information. shall be done in a timely manner.
  • FIG. 3 is a block diagram schematically showing the configuration of relay terminal 110 according to the first embodiment.
  • Relay terminal 110 includes communication section 111 , ProSe communication data processing section 112 , ProSe communication connection control section 113 , PSSCH communication connection recording section 114 , ETWS processing section 115 , and ETWS information transfer processing section 116 .
  • the communication unit 111 communicates with the base station 101 and the remote terminal 130 .
  • the communication unit 111 transmits data plane and control plane messages to the remote terminal 130 over the communication channel used by ProSe.
  • the communication unit 111 receives from the base station 101 the ETWS information transmitted by the base station 101 using the short message and BCCH.
  • the ProSe communication data processing unit 112 performs communication protocol processing for transmitting messages between the data plane and the control plane on the communication channel used by ProSe.
  • the ProSe communication data processing unit 112 passes to the ProSe communication connection control unit 113 necessary data (for example, a control plane message) among the data received by the communication unit 111 on the communication channel used by ProSe.
  • the ProSe communication connection control unit 113 processes control plane communication messages such as connection establishment and release necessary for communication on the communication channel used by ProSe.
  • the PSSCH communication connection recording unit 114 records the information of the remote terminal 130 to which the relay terminal 110 is currently connected as a result of control plane processing for connection establishment and release performed by the ProSe communication connection control unit 113 .
  • the ETWS processing unit 115 passes the ETWS information received by the communication unit 111 to the ETWS information transfer processing unit 116 .
  • the ETWS information transfer processing unit 116 When the ETWS information transfer processing unit 116 receives the ETWS information from the ETWS processing unit 115, the ETWS information transfer processing unit 116 performs one-to-one communication using the PSSCH based on the information recorded in the PSSCH communication connection recording unit 114. request the ProSe communication data processing unit 112 to send an ETWS notification message containing the ETWS information on the PSSCH to the remote terminal 130 with which the connection is established.
  • the ProSe communication data processing unit 112 , the ProSe communication connection control unit 113 , the ETWS processing unit 115 and the ETWS information transfer processing unit 116 are also called the control unit 119 .
  • the control unit 119 receives the emergency alert information
  • the remote terminal 130 which is another portable terminal capable of communicating with the relay terminal 110 by ProSe, is outside the range 102 where radio waves from the base station 101 reach. If present, causes communication unit 111 to transmit emergency alert information to remote terminal 130 using the connection established with remote terminal 130 for one-to-one communication using PSSCH.
  • a part or all of the ProSe communication data processing unit 112, the ProSe communication connection control unit 113, the ETWS processing unit 115, and the ETWS information transfer processing unit 116 described above are, for example, as shown in FIG.
  • it can be composed of a memory 10 and a processor 11 such as a CPU (Central Processing Unit) that executes programs stored in the memory 10 .
  • a program may be provided through a network, or recorded on a recording medium and provided. That is, such programs may be provided as program products, for example.
  • relay terminal 110 can be realized by a computer.
  • part or all of the ProSe communication data processing unit 112, the ProSe communication connection control unit 113, the ETWS processing unit 115, and the ETWS information transfer processing unit 116 may be, for example, simple as shown in FIG. It can also be composed of a processing circuit 12 such as a single circuit, a composite circuit, a processor operated by a program, a parallel processor operated by a program, an ASIC (Application Specific Integrated Circuit) or an FPGA (Field Programmable Gate Array).
  • the ProSe communication data processing unit 112, the ProSe communication connection control unit 113, the ETWS processing unit 115, and the ETWS information transfer processing unit 116 can be realized by a processing circuit network.
  • the communication unit 111 can be realized by a wireless communication device having a wireless communication function.
  • the PSSCH communication connection recording unit 114 can be realized by volatile memory or non-volatile memory.
  • FIG. 5 is a block diagram schematically showing the configuration of remote terminal 130 according to the first embodiment.
  • the remote terminal 130 includes a communication section 131 , a ProSe communication data processing section 132 , a ProSe communication connection control section 133 , a PSSCH communication connection recording section 134 and an ETWS information processing section 135 .
  • the communication unit 131 communicates with the base station 101 and the relay terminal 110.
  • the communication section 131 cannot communicate with the base station 101 but communicates with the relay terminal 110 .
  • the communication unit 131 transmits messages between the data plane and the control plane on the communication channel used by ProSe.
  • the ProSe communication data processing unit 132 performs communication protocol processing for transmitting messages between the data plane and the control plane on the communication channel used by ProSe. For example, the ProSe communication data processing unit 132 passes the ETWS notification message received on the PSSCH to the ETWS information processing unit 135, and the necessary data received on the communication channel used by ProSe (for example, the control plane message) to the ProSe communication connection control unit 133 .
  • the ProSe communication connection control unit 133 processes control plane communication messages such as connection establishment and release necessary for communication on the communication channel used by ProSe.
  • the PSSCH communication connection recording unit 134 records information about the relay terminal 110 to which the remote terminal 130 is currently connected as a result of control plane processing for connection establishment and release performed by the ProSe communication connection control unit 133 .
  • the ETWS information processing unit 135 processes the ETWS notification message received from the ProSe communication data processing unit 132.
  • Part or all of the ProSe communication data processing unit 132, the ProSe communication connection control unit 133, and the ETWS information processing unit 135 described above are, for example, as shown in FIG. It can be configured with a processor 11 such as a CPU that executes programs stored in the memory 10 .
  • a processor 11 such as a CPU that executes programs stored in the memory 10 .
  • Such a program may be provided through a network, or recorded on a recording medium and provided. That is, such programs may be provided as program products, for example.
  • remote terminal 130 may be computer-implemented.
  • part or all of the ProSe communication data processing unit 132, the ProSe communication connection control unit 133, and the ETWS information processing unit 135 are, for example, as shown in FIG. It can also be configured by a processing circuit 12 such as a processor operated by a program, a parallel processor operated by a program, an ASIC, or an FPGA. As described above, the ProSe communication data processing unit 132, the ProSe communication connection control unit 133, and the ETWS information processing unit 135 can be realized by a processing circuit network.
  • the communication unit 131 can be realized by a wireless communication device having a wireless communication function.
  • the PSSCH communication connection recording unit 134 can be realized by volatile memory or non-volatile memory.
  • FIG. 6 is a sequence diagram showing a communication procedure for ETWS information according to the first embodiment.
  • remote terminal 130 and relay terminal 110 establish a connection for one-to-one communication using PSSCH (S20).
  • the ProSe communication connection control unit 133 uses the ProSe communication data processing unit 132 and the communication unit 131 to send a control message for establishing a connection for one-to-one communication using the PSSCH.
  • the ProSe communication connection control unit 113 uses the ProSe communication data processing unit 112 and the communication unit 111 to send a control message for establishing a connection for one-to-one communication using the PSSCH to the remote terminal 130. send and receive between
  • the ProSe communication connection control unit 133 of the remote terminal 130 records information regarding the connection with the relay terminal 110 in the PSSCH communication connection recording unit 134 .
  • ProSe communication connection control section 113 of relay terminal 110 records information regarding connection with remote terminal 130 in PSSCH communication connection recording section 114 .
  • the base station 101 transmits a short message indicating the presence of ETWS information to the relay terminal 110 on the PDCCH (S21). Thereby, the base station 101 notifies the relay terminal 110 of the existence of the ETWS information.
  • the communication unit 111 of the relay terminal 110 receives the short message, and the ETWS processing unit 115 recognizes that the ETWS information is notified.
  • the relay terminal 110 Upon receiving the short message indicating that ETWS information exists, the relay terminal 110 receives SIB1 transmitted on the BCCH in order to receive information indicating the transmission timing of the ETWS information (S22).
  • the communication unit 111 of the relay terminal 110 receives SIB1 transmitted on the BCCH in order to receive information indicating the transmission timing of the ETWS information.
  • the received SIB1 is then given to ETWS processing section 115 .
  • the ETWS processing unit 115 can know the transmission timing of SIB6 and SIB7 indicating ETWS information on the BCCH from the contents of the received SIB1.
  • relay terminal 110 Based on the transmission timing of SIB6 on BCCH learned in step S22, relay terminal 110 receives SIB6 on BCCH (S23).
  • the ETWS processing unit 115 causes the communication unit 111 to receive the SIB6 on the BCCH at the transmission timing of the SIB6 on the BCCH known in step S22, and acquires the SIB6.
  • the relay terminal 110 transmits an ETWS notification message including the contents of the received SIB6 to the remote terminal 130 using a connection for one-to-one communication using PSSCH (S24).
  • the ETWS processing unit 115 passes the contents of the SIB6 received in step S23 to the ETWS information transfer processing unit 116.
  • the ETWS information transfer processing unit 116 generates an ETWS notification message including the contents of the passed SIB6, and sends it to the ProSe communication data processing unit 112 and the communication unit 111 for one-to-one communication using the PSSCH in step S20.
  • the ETWS information transfer processing unit 116 reads the information of the connected remote terminal 130 recorded in the PSSCH communication connection recording unit 114, passes the ETES notification message to the ProSe communication data processing unit 112, Request transmission to remote terminal 130 on PSSCH.
  • the remote terminal 130 acquires the ETWS information from the content of SIB6 included in the received ETWS notification message.
  • the ETWS information processing unit 135 processes the content of SIB6 included in the received ETWS notification message as earthquake and tsunami warning information.
  • relay terminal 110 receives SIB7 on BCCH (S25).
  • the ETWS processing unit 115 causes the communication unit 111 to receive SIB7 on the BCCH at the transmission timing of SIB7 on the BCCH known in step S22, and acquires the SIB7.
  • the relay terminal 110 transmits an ETWS notification message including the contents of the received SIB7 to the remote terminal 130 using a connection for one-to-one communication using PSSCH (S26).
  • the ETWS processing unit 115 passes the contents of SIB7 received in step S25 to the ETWS information transfer processing unit 116.
  • the ETWS information transfer processing unit 116 generates an ETWS notification message including the contents of the passed SIB7, and sends it to the ProSe communication data processing unit 112 and the communication unit 111 for one-to-one communication using the PSSCH in step S20.
  • the ETWS information transfer processing unit 116 reads the information of the connected remote terminal 130 recorded in the PSSCH communication connection recording unit 114, passes the ETES notification message to the ProSe communication data processing unit 112, Request transmission to remote terminal 130 on PSSCH.
  • the remote terminal 130 acquires the ETWS information from the content of SIB7 included in the received ETWS notification message.
  • the ETWS information processing unit 135 processes the contents of SIB7 included in the received ETWS notification message as earthquake and tsunami warning information.
  • ETWS information can be transmitted to the remote terminal 130 even when the base station 101, the relay terminal 110 and the remote terminal 130 do not support the UE-to-Network Relay method.
  • relay terminal 110 can transmit ETWS information to remote terminal 130 using a plurality of communication methods. can be sent by Information Processing Society of Japan Transactions Vol. 60 No. 2 514-526 (February 2019)
  • radio communication system 200 includes relay terminal 210 and remote terminal 230 .
  • relay terminal 210 exists within range 102 where radio waves from base station 101 reach, and remote terminal 230 exists outside range 102 where radio waves from base station 101 reach.
  • emergency alert information which is information for notifying an emergency situation
  • the base station 101 upon receiving emergency alert information, which is information for notifying an emergency situation, from the base station 101, it transmits a broadcast message including the emergency alert information to the remote terminal 230 using the PSSCH.
  • emergency alert information which is information for notifying an emergency situation
  • the relay terminal 210 transmits the broadcast message including the emergency alert information to the remote terminal 230 using the PSSCH.
  • the relay terminal 210 transmits the broadcast message including the emergency alert information at a timing different from the timing at which the system information is transmitted. It shall be.
  • FIG. 7 is a block diagram schematically showing the configuration of relay terminal 210 according to the second embodiment.
  • Relay terminal 210 includes communication unit 111 , ProSe communication data processing unit 112 , ETWS processing unit 115 , and Discovery transmission unit 217 .
  • the communication unit 111, the ProSe communication data processing unit 112 and the ETWS processing unit 115 of the relay terminal 210 according to the second embodiment are the same as the communication unit 111, the ProSe communication data processing unit 112 and the ETWS processing unit 115 of the relay terminal 110 according to the first embodiment. is similar to However, when the ProSe communication data processing unit 112 in Embodiment 2 receives a request for transmission of a Discovery message from the Discovery transmission unit 217 , it causes the communication unit 111 to transmit the Discovery message to the remote terminal 230 . Also, the ETWS processing unit 115 according to the second embodiment passes the ETWS information received by the communication unit 111 to the Discovery transmission unit 217 .
  • the Discovery transmission unit 217 transmits a Discovery message via the ProSe communication data processing unit 112 and the communication unit 111 at an autonomously determined timing. For example, after receiving the ETWS information from the ETWS processing unit 115, the Discovery transmission unit 217 generates a Discovery message containing the ETWS information as the first Discovery message to be transmitted. Otherwise, a Discovery message containing no ETWS information is generated. and requests the ProSe communication data processing unit 112 to transmit the Discovery message.
  • the ProSe communication data processing unit 112 , the ETWS processing unit 115 and the Discovery transmission unit 217 are also called a control unit 219 .
  • the control unit 219 receives the emergency alert information, if the remote terminal 230 capable of communicating with the relay terminal 210 using ProSe exists outside the range 102 where radio waves from the base station 101 reach, the control unit 219 A broadcast message containing the alert information is caused to be sent to the remote terminal 230 by the communication unit 111 using the PSSCH.
  • a part or all of the Discovery transmission unit 217 described above also includes, for example, a memory 10 and a processor such as a CPU that executes a program stored in the memory 10, as shown in FIG. 11.
  • a program may be provided through a network, or recorded on a recording medium and provided. That is, such programs may be provided as program products, for example.
  • relay terminal 210 can be realized by a computer.
  • the Discovery transmission unit 217 may be, for example, as shown in FIG. It can also be configured by a processing circuit 12 such as an FPGA. As described above, the Discovery transmission unit 217 can be realized by a processing circuit network.
  • FIG. 8 is a block diagram schematically showing the configuration of remote terminal 230 according to the second embodiment.
  • the remote terminal 230 comprises a communication section 131 , a ProSe communication data processing section 132 , an ETWS information processing section 135 and a Discovery reception section 236 .
  • the communication unit 131, the ProSe communication data processing unit 132, and the ETWS information processing unit 135 of the remote terminal 230 according to the second embodiment are similar to the communication unit 131, the ProSe communication data processing unit 132, and the ETWS information processing unit 130 of the remote terminal 130 according to the first embodiment. It is the same as the part 135 .
  • the ProSe communication data processing unit 132 in Embodiment 2 passes the Discovery message received by the communication unit 131 to the Discovery receiving unit 236 .
  • the ETWS information processing unit 135 according to Embodiment 2 processes the ETWS information passed from the Discovery receiving unit 236 as earthquake and tsunami warning information.
  • the Discovery receiving unit 236 processes the Discovery message passed from the ProSe communication data processing unit 132. For example, when the Discovery message contains ETWS information, the Discovery receiving unit 236 passes the ETWS information to the ETWS information processing unit 135 .
  • Part or all of the above-described Discovery receiving unit 236 also includes a memory 10 and a processor such as a CPU that executes a program stored in the memory 10, as shown in FIG. 11.
  • a program may be provided through a network, or recorded on a recording medium and provided. That is, such programs may be provided as program products, for example.
  • remote terminal 230 may be computer-implemented.
  • the Discovery receiving unit 236 is, for example, as shown in FIG. 12 can also be configured. As described above, the Discovery receiving unit 236 can be realized by a processing circuit network.
  • FIG. 9 is a sequence diagram showing a communication procedure for ETWS information according to the second embodiment.
  • the base station 101 transmits a short message indicating that ETWS information exists to the relay terminal 210 on the PDCCH (S30). Thereby, the base station 101 notifies the relay terminal 210 of the existence of the ETWS information.
  • the relay terminal 210 Upon receiving the short message indicating that ETWS information exists, the relay terminal 210 receives SIB1 transmitted on the BCCH in order to receive information indicating the transmission timing of the ETWS information (S31).
  • the relay terminal 210 receives SIB6 on BCCH based on the transmission timing of SIB6 on BCCH learned in step S31 (S32).
  • the relay terminal 210 transmits a Discovery message including the contents of the received SIB6 to the remote terminal 230 (S33).
  • the ETWS processing unit 115 passes the contents of the SIB6 received in step S32 to the Discovery transmission unit 217.
  • the Discovery transmission unit 217 transmits a Discovery message at an autonomously determined timing.
  • the Discovery transmitting unit 217 After receiving the contents of SIB6, the Discovery transmitting unit 217 generates a Discovery message by including the contents of SIB6 in the first Discovery message to be transmitted. Then, the Discovery transmission unit 217 requests the ProSe communication data processing unit 112 to transmit the generated Discovery message.
  • the Discovery transmission unit 217 generates a Discovery message that does not include the ETWS information, and requests the ProSe communication data processing unit 112 to transmit the generated Discovery message. Then, the ProSe communication data processing unit 112 causes the communication unit 111 to transmit the Discovery message.
  • the remote terminal 230 acquires ETWS information from the contents of SIB6 included in the received Discovery message.
  • the ProSe communication data processing unit 132 of the remote terminal 230 passes the Discovery message to the Discovery reception unit 236 .
  • the Discovery receiving unit 236 passes the contents of the SIB6 to the ETWS information processing unit 135 when the SIB6 is included in the passed Discovery message.
  • the ETWS information processing unit 135 processes the contents of the passed SIB6 as earthquake and tsunami warning information.
  • the relay terminal 210 receives SIB7 on BCCH based on the transmission timing of SIB7 on BCCH learned in step S31 (S34).
  • the relay terminal 210 transmits a Discovery message including the contents of the received SIB7 to the remote terminal 230 (S35).
  • the ETWS processing unit 115 passes the contents of SIB7 received in step S34 to the Discovery transmission unit 217.
  • the Discovery transmission unit 217 After receiving the contents of SIB7, the Discovery transmission unit 217 generates a Discovery message by including the contents of SIB7 in the first Discovery message to be transmitted. Then, the Discovery transmission unit 217 requests the ProSe communication data processing unit 112 to transmit the generated Discovery message. Then, the ProSe communication data processing unit 112 causes the communication unit 111 to transmit the Discovery message.
  • the remote terminal 230 acquires ETWS information from the content of SIB7 included in the received Discovery message.
  • the ProSe communication data processing unit 132 of the remote terminal 230 passes the Discovery message to the Discovery reception unit 236 .
  • the Discovery receiving unit 236 passes the contents of the SIB7 to the ETWS information processing unit 135 when the SIB7 is included in the passed Discovery message.
  • the ETWS information processing unit 135 processes the contents of the passed SIB7 as earthquake and tsunami warning information.
  • ETWS information can be transmitted to the remote terminal 230 even when the base station 101, the relay terminal 210 and the remote terminal 230 do not support the UE-to-Network Relay method.
  • the relay terminal 210 can communicate with the remote terminal 230.
  • ETWS information can be transmitted by multiple communication methods.
  • the remote terminal 230 which has not yet established a connection for one-to-one communication with the relay terminal 210 using the PSSCH, can receive the message. Any broadcast message other than the Discovery message may be used.
  • a wireless communication system 300 includes a relay terminal 310 and a remote terminal 330.
  • the relay terminal 310 is a relay terminal 310
  • a remote terminal 330 is a remote terminal 330.
  • relay terminal 310 exists within range 102 where radio waves from base station 101 reach
  • remote terminal 330 exists outside range 102 where radio waves from base station 101 reach.
  • upon receiving emergency alert information from the base station 101 which is information for notifying an emergency situation, it uses the connection established with the remote terminal 330 for one-to-one communication using the PSSCH.
  • the emergency alert information is sent to the remote terminals 330 and a broadcast message containing the emergency alert information is sent to the remote terminals 330 using the PSSCH.
  • relay terminal 310 establishes a connection with remote terminal 330 before receiving emergency alert information.
  • the relay terminal 310 establishes a connection with the remote terminal 330 at a timing different from the timing at which the system information is transmitted. along with a broadcast message containing emergency alert information.
  • FIG. 10 is a block diagram schematically showing the configuration of relay terminal 310 according to the third embodiment.
  • Relay terminal 310 includes communication unit 111, ProSe communication data processing unit 312, ProSe communication connection control unit 113, PSSCH communication connection recording unit 114, ETWS processing unit 315, ETWS information transfer processing unit 116, Discovery transmission 217.
  • the communication unit 111, the ProSe communication connection control unit 113, the PSSCH communication connection recording unit 114, and the ETWS information transfer processing unit 116 of the relay terminal 310 according to Embodiment 3 correspond to the communication unit 111 of the relay terminal 110 according to Embodiment 1, ProSe communication It is similar to the connection control unit 113 , the PSSCH communication connection recording unit 114 and the ETWS information transfer processing unit 116 . Also, the Discovery transmission section 217 of the relay terminal 310 in the third embodiment is the same as the Discovery transmission section 217 of the relay terminal 210 in the second embodiment.
  • the ProSe communication data processing unit 312 processes a communication protocol for transmitting messages between the data plane and the control plane on the communication channel used by ProSe.
  • the ProSe communication data processing unit 312 passes to the ProSe communication connection control unit 113 necessary data (for example, a control plane message) among the data received by the communication unit 111 on the communication channel used by ProSe. Also, when the ProSe communication data processing unit 312 receives a transmission request for a Discovery message from the Discovery transmission unit 217 , it causes the communication unit 111 to transmit the Discovery message to the remote terminal 330 .
  • the ETWS processing unit 315 passes the ETWS information received by the communication unit 111 to the ETWS information transfer processing unit 116 and the Discovery transmission unit 217 .
  • the ProSe communication data processing unit 312 , the ProSe communication connection control unit 113 , the ETWS processing unit 315 , the ETWS information transfer processing unit 116 and the Discovery transmission unit 217 are also called a control unit 319 .
  • the control unit 319 receives the emergency alert information, if the remote terminal 330 capable of communicating with the relay terminal 310 by ProSe exists outside the range 102 where radio waves from the base station 101 reach, the PSSCH causes communication unit 111 to transmit emergency alert information to remote terminal 330 using the connection established with remote terminal 330 for one-to-one communication using to remote terminal 330 using PSSCH.
  • FIG. 11 is a block diagram schematically showing the configuration of remote terminal 330 according to the third embodiment.
  • the remote terminal 330 includes a communication unit 131 , a ProSe communication data processing unit 332 , a ProSe communication connection control unit 133 , a PSSCH communication connection recording unit 134 , an ETWS information processing unit 335 and a Discovery reception unit 236 .
  • the communication unit 131, the ProSe communication connection control unit 133, and the PSSCH communication connection recording unit 134 of the remote terminal 330 according to the third embodiment correspond to the communication unit 131, the ProSe communication connection control unit 133, and the PSSCH communication unit 131 of the remote terminal 130 according to the first embodiment. It is similar to the connection recording unit 134 . Also, the Discovery receiver 236 of the remote terminal 330 in the third embodiment is the same as the Discovery receiver 236 of the remote terminal 230 in the second embodiment.
  • the ProSe communication data processing unit 332 processes a communication protocol for transmitting messages between the data plane and the control plane on the communication channel used by ProSe. For example, the ProSe communication data processing unit 332 passes the ETWS notification message received on the PSSCH to the ETWS information processing unit 335, and the necessary data received on the communication channel used by ProSe (for example, the control plane message) to the ProSe communication connection control unit 133 . Also, the ProSe communication data processing unit 332 passes the Discovery message received by the communication unit 131 to the Discovery reception unit 236 .
  • the ETWS information processing section 335 processes the ETWS notification message received from the ProSe communication data processing section 332 .
  • the ETWS information processing unit 335 processes the ETWS information included in the received ETWS notification message as earthquake and tsunami warning information.
  • the ETWS information processing unit 335 also processes the ETWS information passed from the Discovery receiving unit 236 as earthquake and tsunami warning information.
  • FIG. 12 is a sequence diagram showing a communication procedure for ETWS information according to the third embodiment.
  • remote terminal 330 and relay terminal 310 establish a connection for one-to-one communication using PSSCH (S40).
  • the base station 101 transmits a short message indicating the presence of ETWS information to the relay terminal 310 on the PDCCH (S41). Thereby, the base station 101 notifies the relay terminal 310 of the existence of the ETWS information.
  • the relay terminal 310 Upon receiving the short message indicating that ETWS information exists, the relay terminal 310 receives SIB1 transmitted on the BCCH in order to receive information indicating the transmission timing of the ETWS information (S42).
  • the relay terminal 310 receives SIB6 on BCCH based on the transmission timing of SIB6 on BCCH learned in step S22 (S43).
  • the relay terminal 310 transmits an ETWS notification message including the content of the received SIB6 to the remote terminal 330 using a connection for one-to-one communication using PSSCH (S44).
  • the ETWS processing unit 315 passes the contents of the SIB6 received in step S43 to the ETWS information transfer processing unit 116.
  • the ETWS information transfer processing unit 116 generates an ETWS notification message including the contents of the passed SIB6, and sends it to the ProSe communication data processing unit 312 and the communication unit 111 for one-to-one communication using PSSCH in step S40.
  • the ETWS information transfer processing unit 116 reads the information of the connected remote terminal 330 recorded in the PSSCH communication connection recording unit 114, passes the ETES notification message to the ProSe communication data processing unit 312, Request transmission to remote terminal 330 on PSSCH.
  • the remote terminal 330 obtains the ETWS information from the content of SIB6 included in the received ETWS notification message.
  • the ETWS information processing unit 335 processes the content of SIB6 included in the received ETWS notification message as earthquake and tsunami warning information.
  • the relay terminal 310 transmits a Discovery message including the contents of the received SIB6 to the remote terminal 330 (S45).
  • the ETWS processing unit 315 passes the contents of the SIB6 received in step S43 to the Discovery transmission unit 217.
  • the Discovery transmission unit 217 After receiving the contents of SIB6, the Discovery transmission unit 217 generates a Discovery message by including the contents of SIB6 in the first Discovery message to be transmitted. Then, the Discovery transmission unit 217 requests the ProSe communication data processing unit 312 to transmit the generated Discovery message.
  • the ProSe communication data processing unit 312 causes the communication unit 111 to transmit the Discovery message.
  • the remote terminal 330 acquires ETWS information from the content of SIB6 included in the received Discovery message. For example, when the communication unit 131 receives the Discovery message, the ProSe communication data processing unit 332 of the remote terminal 330 passes the Discovery message to the Discovery reception unit 236 .
  • the Discovery receiving unit 236 passes the contents of the SIB6 to the ETWS information processing unit 335 when the SIB6 is included in the passed Discovery message.
  • the ETWS information processing unit 335 processes the contents of the passed SIB6 as earthquake and tsunami warning information.
  • relay terminal 310 receives SIB7 on BCCH (S46).
  • the ETWS processing unit 315 causes the communication unit 111 to receive SIB7 on the BCCH at the transmission timing of SIB7 on the BCCH known in step S42, and obtains the SIB7.
  • the relay terminal 310 transmits an ETWS notification message including the content of the received SIB7 to the remote terminal 330 using a connection for one-to-one communication using PSSCH (S47).
  • PSSCH PSSCH
  • the remote terminal 330 acquires the ETWS information from the content of SIB7 included in the received ETWS notification message.
  • the ETWS information processing unit 135 processes the contents of SIB7 included in the received ETWS notification message as earthquake and tsunami warning information.
  • the relay terminal 310 transmits a Discovery message including the contents of the received SIB7 to the remote terminal 330 (S48).
  • the contents of processing here are the same as when the contents of SIB6 are received.
  • the remote terminal 330 acquires ETWS information from the content of SIB7 included in the received Discovery message.
  • ETWS information can be transmitted to the remote terminal 330 even when the base station 101, the relay terminal 310, and the remote terminal 330 do not support the UE-to-Network Relay scheme.
  • the above enables relay terminal 310 to transmit ETWS information to remote terminal 330 by a plurality of communication methods.
  • radio communication system 400 according to Embodiment 4 comprises relay terminal 410 and remote terminal 230 .
  • Remote terminal 230 in radio communication system 400 according to the fourth embodiment is the same as remote terminal 230 in radio communication system 200 according to the second embodiment.
  • relay terminal 410 when relay terminal 410 receives emergency alert information, relay terminal 410 sets a time limit for transmitting the emergency alert information, and multiple times within that time limit, relay terminal 410 sends a broadcast message including the emergency alert information to remote terminal 230. Send to
  • FIG. 13 is a block diagram schematically showing the configuration of relay terminal 410 according to the fourth embodiment.
  • Relay terminal 410 includes communication unit 111 , ProSe communication data processing unit 112 , ETWS processing unit 415 , Discovery transmission unit 417 , and ETWS information storage unit 418 .
  • the communication unit 111 and the ProSe communication data processing unit 112 of the relay terminal 410 according to the fourth embodiment are the same as the communication unit 111 and the ProSe communication data processing unit 112 of the relay terminal 110 according to the first embodiment.
  • the ProSe communication data processing unit 112 in Embodiment 4 receives a request for transmission of a Discovery message from the Discovery transmission unit 417 , it causes the communication unit 111 to transmit the Discovery message to the remote terminal 230 .
  • the ETWS processing unit 415 receives the ETWS information received by the communication unit 111 and determines the transmission end time, which is the time at which the transmission of the ETWS information is to end. Then, the ETWS processing unit 415 causes the ETWS information storage unit 418 to store the ETWS information and the transmission end time in association with each other. The transmission end time is the deadline for transmitting the ETES information.
  • the ETWS information storage unit 418 associates and records the ETWS information given from the ETWS processing unit 415 and the transmission end time.
  • FIG. 14 is a schematic diagram showing an example of ETWS information and transmission end times stored in the ETWS information storage unit 418. As shown in FIG.
  • the Discovery transmission unit 417 transmits a Discovery message via the ProSe communication data processing unit 112 and the communication unit 111 at an autonomously determined timing.
  • the Discovery transmission unit 417 stores the ETWS information in the ETWS information storage unit 418 when the transmission end time has not passed, in other words, the transmission end time is later than the current time. If so, generate a Discovery message containing such ETWS information. If such ETES information is not stored in the ETWS information storage unit 418, the Discovery transmission unit 417 generates a Discovery message that does not contain the ETWS information. Then, the Discovery transmission unit 417 requests the ProSe communication data processing unit 112 to transmit the generated Discovery message.
  • control unit 419 determines a time limit for transmitting the emergency alert information, and remotely sends a broadcast message including the emergency alert information to communication unit 111 multiple times within the time limit. Send to the terminal 230 .
  • the ETWS information storage unit 418 described above can be implemented with a volatile or non-volatile memory.
  • the sequence showing the ETWS information communication procedure in the fourth embodiment is almost the same as the sequence showing the ETWS information communication procedure in the second embodiment shown in FIG.
  • the ETWS processing unit 415 receives the content of the SIB6 and stores the content in the ETWS information storage unit 418 as ETWS information. Then, the ETWS processing unit 415 determines the transmission end time of the ETWS information, and stores the transmission end time in the ETWS information storage unit 418 in association with the ETWS information.
  • the transmission end time can be set to, for example, the current time plus a predetermined time. Note that the transmission end time may be determined by other methods such as using a timer notified by the base station 101 .
  • the Discovery transmission unit 417 checks the transmission end time stored in the ETWS information storage unit 418 when autonomously transmitting the Discovery message, and detects ETWS information whose transmission end time is later than the current time. exists, ProSe communication generates a Discovery message containing the ETWS information, and if such ETWS information does not exist, generates a Discovery message that does not contain ETWS information, and transmits the generated Discovery message.
  • a request is made to the data processing unit 112 .
  • ProSe communication data processing unit 112 transmits a Discovery message in response to such a request.
  • steps S34 and S35 in FIG. 9 the same processing as described above is performed on the SIB7.
  • the relay terminal 410 can transmit the ETWS information to the remote terminal 430 in the Discovery message for a certain period after the relay terminal 410 receives the ETWS information. This can increase the likelihood that remote terminal 430 will receive the ETWS information.
  • radio communication system 500 according to Embodiment 5 comprises relay terminal 510 and remote terminal 130 .
  • Remote terminal 130 in radio communication system 500 according to the fifth embodiment is the same as remote terminal 130 in radio communication system 100 according to the first embodiment.
  • relay terminal 510 upon receiving emergency alert information, sets a time limit for transmitting the emergency alert information, and transmits the emergency alert information to remote terminal 130 multiple times within the time limit.
  • FIG. 15 is a block diagram schematically showing the configuration of relay terminal 510 according to the fifth embodiment.
  • Relay terminal 510 includes communication unit 111, ProSe communication data processing unit 112, ProSe communication connection control unit 113, PSSCH communication connection recording unit 114, ETWS processing unit 515, ETWS information transfer processing unit 516, ETWS information and a storage unit 518 .
  • Communication unit 111, ProSe communication data processing unit 112, ProSe communication connection control unit 113, and PSSCH communication connection recording unit 114 of relay terminal 510 in Embodiment 5 correspond to communication unit 111 and ProSe communication data processing unit 111 of relay terminal 110 in Embodiment 1. It is similar to the data processing unit 112 , the ProSe communication connection control unit 113 and the PSSCH communication connection recording unit 114 .
  • the ETWS processing unit 515 receives the ETWS information received by the communication unit 111 and determines the transmission end time, which is the time at which the transmission of the ETWS information is to end. Then, the ETWS processing unit 515 supplies the ETWS information to the ETWS information transfer processing unit 516 and causes the ETWS information storage unit 518 to store the ETWS information in association with the transmission end time.
  • the ETWS information storage unit 518 associates and records the ETWS information given from the ETWS processing unit 515 and the transmission end time.
  • the information stored here is the same as in the fourth embodiment, as shown in FIG. 14, for example.
  • the ETWS information transfer processing unit 516 receives the ETWS information from the ETWS processing unit 515, or upon autonomous determination, based on the information recorded in the PSSCH communication connection recording unit 114. , the ProSe communication data processor 112 to send an ETWS notification message containing ETWS information on the PSSCH to the remote terminal 130 with which a connection has been established for one-to-one communication using the PSSCH.
  • the ProSe communication data processing unit 112 , the ProSe communication connection control unit 113 , the ETWS processing unit 515 and the ETWS information transfer processing unit 516 are also called a control unit 519 .
  • the control unit 519 determines a time limit for transmitting the emergency alert information, and causes the communication unit 111 to transmit the emergency alert information to the remote terminal 130 multiple times within the time limit. .
  • the sequence indicating the ETWS information communication procedure in Embodiment 5 is substantially the same as the sequence indicating the ETWS information communication procedure in Embodiment 1 shown in FIG.
  • the ETWS processing unit 515 receives the content of the SIB6 and stores the content in the ETWS information storage unit 518 as ETWS information. Then, the ETWS processing unit 515 determines the transmission end time of the ETWS information, and stores the transmission end time in the ETWS information storage unit 518 in association with the ETWS information.
  • the transmission end time may be determined in the same manner as in the fourth embodiment.
  • the ETWS processing unit 515 then passes the contents of the SIB6 received in step S23 to the ETWS information transfer processing unit 516.
  • the ETWS information transfer processing unit 516 generates an ETWS notification message including the contents of the passed SIB6, and sends it to the ProSe communication data processing unit 112 and the communication unit 111 for one-to-one communication using the PSSCH in step S20.
  • the connection for point-to-point communication using the PSSCH is used to send the ETWS notification message to the remote terminal 130 with which the connection has been established.
  • the processing here is the same as in the first embodiment.
  • the ETWS information transfer processing unit 516 checks the transmission end time stored in the ETWS information storage unit 518 at the timing determined autonomously, and if there is ETWS information whose transmission end time is later than the current time. For example, an ETWS notification message containing the ETWS information is generated, and sent to the ProSe communication data processing unit 112 and the communication unit 111 to the remote terminal 130 that has already established a connection for one-to-one communication using the PSSCH in step S20. , PSSCH, and causes its ETWS notification message to be sent. Note that the ETWS processing unit 515 does not transmit the ETWS notification message if such ETWS information does not exist at autonomous timing.
  • steps S25 and S26 in FIG. 6 the same processing as described above is performed on the SIB7.
  • the relay terminal 510 can transmit the ETWS information to the remote terminal 130 in the ETWS notification message for a certain period after the relay terminal 510 receives the ETWS information. This may increase the likelihood that remote terminal 130 will receive the ETWS information.
  • radio communication system 600 according to Embodiment 6 comprises relay terminal 610 and remote terminal 130 .
  • Remote terminal 130 in radio communication system 600 according to the fifth embodiment is the same as remote terminal 130 in radio communication system 100 according to the first embodiment.
  • relay terminal 610 upon receiving emergency alert information, sets a time limit for transmitting the emergency alert information, and transmits the emergency alert information to remote terminal 130 multiple times within the time limit.
  • relay terminal 610 when relay terminal 610 receives emergency alert information and has not established connection with remote terminal 130, relay terminal 610 establishes connection with remote terminal 130 again. is established before transmitting the emergency alert information to the remote terminal 130 .
  • FIG. 16 is a block diagram schematically showing the configuration of relay terminal 610 according to the sixth embodiment.
  • Relay terminal 610 includes communication unit 111, ProSe communication data processing unit 112, ProSe communication connection control unit 613, PSSCH communication connection recording unit 114, ETWS processing unit 515, ETWS information transfer processing unit 616, ETWS information and a storage unit 518 .
  • the communication unit 111, the ProSe communication data processing unit 112, and the PSSCH communication connection recording unit 114 of the relay terminal 610 according to the sixth embodiment correspond to the communication unit 111, the ProSe communication data processing unit 112, and the PSSCH communication of the relay terminal 110 according to the first embodiment. It is similar to the connection recording unit 114 .
  • ETWS processing unit 515 and ETWS information storage unit 518 of relay terminal 610 in the sixth embodiment are the same as ETWS processing unit 515 and ETWS information storage unit 518 of relay terminal 510 in the fifth embodiment.
  • the ProSe communication connection control unit 613 processes control plane communication messages such as connection establishment and release necessary for communication on the communication channel used by ProSe.
  • ProSe communication connection control section 613 receives a request from ETWS information transfer processing section 616 and establishes connection for one-to-one communication with remote terminal 130 using PSSCH.
  • the ETWS information transfer processing unit 616 receives the ETWS information from the ETWS processing unit 515, or upon autonomous determination, based on the information recorded in the PSSCH communication connection recording unit 114. , the ProSe communication data processor 112 to send an ETWS notification message containing ETWS information on the PSSCH to the remote terminal 130 with which a connection has been established for one-to-one communication using the PSSCH. In the sixth embodiment, the ETWS information transfer processing unit 616 transmits the ETWS notification message if a connection for one-to-one communication with the remote terminal 130 using the PSSCH has not been established.
  • the communication connection control unit 613 is requested to establish a connection for one-to-one communication with the remote terminal 130 using the PSSCH. Whether or not a connection has been established for one-to-one communication with the remote terminal 130 using the PSSCH can be determined by checking information recorded in the PSSCH communication connection recording section 114 .
  • the ProSe communication data processing unit 112 , the ProSe communication connection control unit 613 , the ETWS processing unit 515 and the ETWS information transfer processing unit 616 are also called a control unit 619 .
  • the control unit 619 determines a time limit for transmitting the emergency alert information, and causes the communication unit 111 to transmit the emergency alert information to the remote terminal 130 multiple times within the time limit. . Then, when the communication unit 111 receives the emergency alert information, if the connection with the remote terminal 130 has not been established, the control unit 619 establishes the connection with the remote terminal 130 again. Once established, it causes communication unit 111 to transmit the emergency alert information to remote terminal 130 .
  • relay terminal 610 can also transmit ETWS information to remote terminal 130 that has newly established a connection. This may increase the likelihood that remote terminal 130 will receive the ETWS information.
  • Embodiment 1 or Embodiment 3 when the relay terminals 110 and 310 receive the emergency alert information, even if the connection with the remote terminals 130 and 330 is not established, the ETWS information transfer is performed.
  • the processing unit 116 may instruct the ProSe communication connection control unit 113 to establish a connection with the remote terminal 130 , 330 .
  • Embodiments 1 to 6 can be transmitted using PWS. (Korean Public Alert System) or other emergency alert information such as EU-Alert.

Landscapes

  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Business, Economics & Management (AREA)
  • Health & Medical Sciences (AREA)
  • Emergency Management (AREA)
  • Environmental & Geological Engineering (AREA)
  • Public Health (AREA)
  • Mobile Radio Communication Systems (AREA)
PCT/JP2021/021215 2021-06-03 2021-06-03 通信システム、携帯端末、プログラム及び通信方法 Ceased WO2022254658A1 (ja)

Priority Applications (5)

Application Number Priority Date Filing Date Title
JP2023525282A JP7752685B2 (ja) 2021-06-03 2021-06-03 通信システム、携帯端末、プログラム及び通信方法
PCT/JP2021/021215 WO2022254658A1 (ja) 2021-06-03 2021-06-03 通信システム、携帯端末、プログラム及び通信方法
EP21944159.9A EP4351186A4 (en) 2021-06-03 2021-06-03 COMMUNICATION SYSTEM, PORTABLE TERMINAL, PROGRAM AND COMMUNICATION METHOD
US18/289,828 US20240244647A1 (en) 2021-06-03 2021-06-03 Communication system, mobile terminal, non-transitory computer-readable storage medium and communication method
CN202180098558.6A CN117356163A (zh) 2021-06-03 2021-06-03 通信系统、便携终端、程序以及通信方法

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/JP2021/021215 WO2022254658A1 (ja) 2021-06-03 2021-06-03 通信システム、携帯端末、プログラム及び通信方法

Publications (1)

Publication Number Publication Date
WO2022254658A1 true WO2022254658A1 (ja) 2022-12-08

Family

ID=84324031

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/JP2021/021215 Ceased WO2022254658A1 (ja) 2021-06-03 2021-06-03 通信システム、携帯端末、プログラム及び通信方法

Country Status (5)

Country Link
US (1) US20240244647A1 (https=)
EP (1) EP4351186A4 (https=)
JP (1) JP7752685B2 (https=)
CN (1) CN117356163A (https=)
WO (1) WO2022254658A1 (https=)

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017081907A1 (ja) * 2015-11-13 2017-05-18 ソニー株式会社 装置及び方法
WO2020166280A1 (ja) * 2019-02-14 2020-08-20 ソニー株式会社 通信装置及び通信方法

Family Cites Families (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9692533B2 (en) * 2014-06-20 2017-06-27 Sony Corporation Operating a user equipment in a wireless communication network
WO2016159559A1 (ko) * 2015-04-03 2016-10-06 엘지전자 주식회사 Mcptt에서 단말이 우선 순위를 변경하는 방법 및 장치
CN109479302B (zh) * 2016-07-07 2020-09-29 松下电器(美国)知识产权公司 用于v2x发送的改进的半持续资源分配行为
KR102338285B1 (ko) * 2017-05-04 2021-12-10 블랙베리 리미티드 공공 경보 시스템 메시지 제공
EP3628133B1 (en) * 2017-05-04 2024-01-10 Koninklijke Philips N.V. Intra-group communication
EP3821658A1 (en) 2018-08-09 2021-05-19 Convida Wireless, Llc Resource management for 5g ev2x
EP3609252A1 (en) 2018-08-10 2020-02-12 Fraunhofer Gesellschaft zur Förderung der Angewand User equipment and method with improved critical communication notification in wireless communications
US11700095B2 (en) 2019-10-04 2023-07-11 Qualcomm Incorporated Channel estimation for two-stage sidelink control using sidelink data channel DMRS
US20220110187A1 (en) * 2020-10-01 2022-04-07 Apple Inc. Emergency Communication Routing for Non-cellular Coverage
US11924732B2 (en) * 2020-10-01 2024-03-05 Apple Inc. Emergency communication in non-cellular coverage
US20220182970A1 (en) * 2020-12-09 2022-06-09 Qualcomm Incorporated Paging on sidelink

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017081907A1 (ja) * 2015-11-13 2017-05-18 ソニー株式会社 装置及び方法
WO2020166280A1 (ja) * 2019-02-14 2020-08-20 ソニー株式会社 通信装置及び通信方法

Non-Patent Citations (4)

* Cited by examiner, † Cited by third party
Title
3GPP TS 23.303
APPLE: "KI#3, Sol #7: Update for support of IMS Emergency Services over L2 relay", 3GPP DRAFT; S2-2007730, 3RD GENERATION PARTNERSHIP PROJECT (3GPP), MOBILE COMPETENCE CENTRE ; 650, ROUTE DES LUCIOLES ; F-06921 SOPHIA-ANTIPOLIS CEDEX ; FRANCE, vol. SA WG2, no. Elbonia; 20201012 - 20201023, 2 October 2020 (2020-10-02), Mobile Competence Centre ; 650, route des Lucioles ; F-06921 Sophia-Antipolis Cedex ; France , XP051938760 *
JOURNAL OF THE INFORMATION PROCESSING SOCIETY OF JAPAN, vol. 60, no. 2, February 2019 (2019-02-01), pages 514 - 526
See also references of EP4351186A4

Also Published As

Publication number Publication date
CN117356163A (zh) 2024-01-05
EP4351186A1 (en) 2024-04-10
JP7752685B2 (ja) 2025-10-10
EP4351186A4 (en) 2024-05-01
JPWO2022254658A1 (https=) 2022-12-08
US20240244647A1 (en) 2024-07-18

Similar Documents

Publication Publication Date Title
US6791962B2 (en) Direct link protocol in wireless local area networks
RU2440679C2 (ru) Система и способ приостановления текущей передачи в системе связи
EP3058693B1 (en) Selection and use of a security agent for device-to-device (d2d) wireless communications
US12095572B2 (en) Method and apparatus for transmitting hybrid automatic repeat request feedback, and storage medium
WO2017133461A1 (zh) 信息上报的方法及装置
JP2012191353A (ja) 移動局
CN101238739A (zh) 向位于无线通信网络小区中的一组移动终端传送紧急告警消息的方法及相关无线网络控制器
US20150148074A1 (en) Method and apparatus for proximity-based service
CN102026122A (zh) 处理无线通讯系统紧急短讯服务的方法及其相关装置
US11290982B2 (en) Notifications concerning UE unreachability
WO2020168467A1 (en) Terminal and method for performing a group communication
WO2014179972A1 (zh) 一种传输数据的方法、装置及系统
US12048031B2 (en) Unicast connection establishment method and apparatus, and storage medium
JP7752685B2 (ja) 通信システム、携帯端末、プログラム及び通信方法
JP7672577B2 (ja) サイドリンク通信を管理するための技術
JP2017175440A (ja) 無線通信装置、無線通信システム、および無線通信方法
US12489800B2 (en) Exchanging status messages during a call
CN114586465B (zh) 一种状态转换的方法及通信装置
JP2025519770A (ja) エンドツーエンド通信確立方法及びシステム
WO2006066487A1 (fr) Procede et systeme pour mise en oeuvre de transmission d'information
CN103380655B (zh) 使用辅助连接联系目标移动台的方法、系统及装置
JP6634172B1 (ja) 短距離通信ネットワークにデジタル情報(メッセージ)を送受信するプログラムおよびシステム
EP3010261B1 (en) Method of message retransmission and user equipment using the same
WO2016162047A1 (en) Facilitating effective isolated wireless network operation
CN115669205B (zh) 连接释放方法、装置、存储介质及芯片

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 21944159

Country of ref document: EP

Kind code of ref document: A1

ENP Entry into the national phase

Ref document number: 2023525282

Country of ref document: JP

Kind code of ref document: A

WWE Wipo information: entry into national phase

Ref document number: 18289828

Country of ref document: US

WWE Wipo information: entry into national phase

Ref document number: 202347076520

Country of ref document: IN

WWE Wipo information: entry into national phase

Ref document number: 202180098558.6

Country of ref document: CN

WWE Wipo information: entry into national phase

Ref document number: 2021944159

Country of ref document: EP

NENP Non-entry into the national phase

Ref country code: DE

ENP Entry into the national phase

Ref document number: 2021944159

Country of ref document: EP

Effective date: 20240103