WO2017076055A1 - Procédé permettant de transmettre un paquet de données de service de l'internet des véhicules et dispositif correspondant - Google Patents

Procédé permettant de transmettre un paquet de données de service de l'internet des véhicules et dispositif correspondant Download PDF

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Publication number
WO2017076055A1
WO2017076055A1 PCT/CN2016/089233 CN2016089233W WO2017076055A1 WO 2017076055 A1 WO2017076055 A1 WO 2017076055A1 CN 2016089233 W CN2016089233 W CN 2016089233W WO 2017076055 A1 WO2017076055 A1 WO 2017076055A1
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Prior art keywords
base station
network element
application layer
element device
data packet
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PCT/CN2016/089233
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English (en)
Chinese (zh)
Inventor
马子江
宗在峰
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中兴通讯股份有限公司
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Publication of WO2017076055A1 publication Critical patent/WO2017076055A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/30Services specially adapted for particular environments, situations or purposes
    • H04W4/40Services specially adapted for particular environments, situations or purposes for vehicles, e.g. vehicle-to-pedestrians [V2P]
    • H04W4/44Services specially adapted for particular environments, situations or purposes for vehicles, e.g. vehicle-to-pedestrians [V2P] for communication between vehicles and infrastructures, e.g. vehicle-to-cloud [V2C] or vehicle-to-home [V2H]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/12Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • H04W28/0231Traffic management, e.g. flow control or congestion control based on communication conditions
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • H04W28/0231Traffic management, e.g. flow control or congestion control based on communication conditions
    • H04W28/0242Determining whether packet losses are due to overload or to deterioration of radio communication conditions
    • H04W4/04

Definitions

  • This application relates to, but is not limited to, the field of communication technology.
  • V2X Vehicle to Everything
  • FIG. 1 is an application scenario of transmitting information to a vehicle through a network information platform in the related art.
  • Schematic diagram, as shown in Figure 1 using various communication technologies to achieve Vehicle to Vehicle (V2V), Vehicle to Pedestrian (V2P), Vehicle and Road (road representation) (Vehicle to Infrastructure, referred to as: V2I) interconnection and interoperability, and effective use of information extraction and sharing on the information network platform to effectively control and provide comprehensive services for vehicles.
  • V2X also includes: a Road Side Unit (RSU) that can receive vehicle requests, ensure that the vehicle accesses the Internet (Internet), and has a gateway function; in addition, the V2X also has data operations, Store and forward functions.
  • RSU Road Side Unit
  • V2X in the related art mainly includes two methods: one is to use Dedicated Short Range Communication (DSRC) technology, and the other is to use Long-Term Evolution (Long-Term Evolution, referred to as : LTE) technology; among them, DSRC is based on IEEE802.11P and IEEE1609 series standards defined by Institute of Electrical and Electronics Engineers (IEEE), 802.11P is responsible for physical layer and media access control (Medium Access Control, referred to as: MAC) technology, 1609 is responsible for the upper specification, and LTE-based V2X technology has just begun to discuss, there is no standard.
  • DSRC Dedicated Short Range Communication
  • LTE Long-Term Evolution
  • IEEE Institute of Electrical and Electronics Engineers
  • 802.11P is responsible for physical layer
  • 1609 is responsible for the upper specification
  • LTE-based V2X technology has just begun to discuss, there is no standard.
  • the LTE V2X technology being discussed by the 3rd Generation Partnership Project (3GPP) in the related art includes: a Road Side Unit (RSU) that can pass a stationary user equipment (User Equipment, referred to as UE) or evolved base station (Evolution Node B, eNB for short), V2V/V2I/V2P may be implemented through a PC5 interface or a Uu interface, where the PC5 interface refers to a device to device (Device to Device, Referred to as: D2D) air interface, Uu interface refers to the air interface of the UE to the eNB.
  • RSU Road Side Unit
  • UE User Equipment
  • Evolution Node B evolved base station
  • V2V/V2I/V2P may be implemented through a PC5 interface or a Uu interface, where the PC5 interface refers to a device to device (Device to Device, Referred to as: D2D) air interface, Uu interface refers to the air interface of the UE to the eNB
  • MBMS Multimedia Broadcast Multicast Service
  • the MBMS service is a technology for transmitting data from one data source to a plurality of target mobile terminals.
  • the sharing of resources of the network is realized, and the utilization of network resources (especially air interface resources) is improved.
  • 3GPP proposes a research topic of single-cell MBMS in R13's LTE-Advanced (LTE-A), where the single-cell MBMS service is in the physical downlink shared channel (Physical Downlink Shared Channel, referred to as: Transmission on PDSCH).
  • LTE-A LTE-Advanced
  • Transmission on PDSCH Physical Downlink Shared Channel
  • the eNB/Roadside unit RSU broadcasts the V2X service in the MBMS mode, and after receiving the V2X service data from the On Board Unit (OBU), the eNB passes through the core network element, and the core network For example, the packet data network gateway (Packet Data Network Gateway, P-GW for short) and the service gateway (Serving-Gateway, G-GW for short) are sent to the application server (V2X Application Server).
  • the V2X AS is transmitted to the eNB through the core network element.
  • the core network element is, for example, a Broadcast Multicast Service Center (BM-SC) or an MBMS GW.
  • BM-SC Broadcast Multicast Service Center
  • MBMS GW Broadcast Multicast Service Center
  • the present invention provides a method and a device for transmitting a data packet of a car network service, so as to solve the problem that a large number of V2X service data will pass through the core network in the related art, and the eNB broadcasts and transmits V2X service data with a large delay.
  • a vehicle network service data packet transmission method includes:
  • the application layer network element device receives the car network V2X service data packet to be transmitted sent by the source base station, where the application layer network element device is disposed outside the core network;
  • the application layer network element device determines a MBMS bearer of the multimedia broadcast multicast service corresponding to the V2X service type to which the V2X service data packet belongs, where the MBMS bearer is pre-established in the office Between the application layer network element device and the target base station;
  • the application layer network element device sends the V2X service data packet to the target base station on the determined MBMS bearer.
  • the target base station is the source base station; or
  • the target base station includes the source base station and one or more related base stations different from the source base station; or
  • the target base station includes one or more associated base stations different from the source base station.
  • the method further includes:
  • the application layer network element device establishes an MBMS bearer with one or more predetermined base stations including the target base station, where each MBMS bearer established corresponds to a V2X service type.
  • the application layer network element device establishes an MBMS bearer with one or more predetermined base stations including the target base station, including:
  • the system pre-configures an MBMS bearer between the application layer network element device and one or more predetermined base stations including the target base station; or
  • the application layer network element device When the application layer network element device is started, the application layer network element device establishes an MBMS bearer with one or more predetermined base stations including the target base station; or
  • the application layer network element device establishes an MBMS bearer with one or more predetermined base stations including the target base station.
  • the system pre-configures an MBMS bearer between the application layer network element device and one or more predetermined base stations including the target base station, including:
  • the system pre-configures one or more of the following parameters for the application layer network element device: a tunnel end point identifier C-TEID of the general-layer packet radio service tunneling protocol GTP-U tunnel at the user level, and the application layer network element The multicast address of the device, the temporary mobility group identifier TMGI, and the service area.
  • the application layer network element device when the application layer network element device is started, the application layer network element device establishes an MBMS bearer with one or more predetermined base stations including the target base station, including:
  • the application layer network element device When the application layer network element device is started, the application layer network element device receives multiple multimedia broadcasts.
  • the application layer network element device establishes an MBMS bearer with one or more predetermined base stations including the target base station, including:
  • the application layer network element device receives one or more of the following parameters of the MBMS bearer configured by the MBMS GW: a C-TEID of the GTP-U tunnel, and a group of the application layer network element device Broadcast address, temporary mobile group identity TMGI and service area.
  • the application layer network element device receives the parameters of the MBMS bearer configured by the MBMS GW, including:
  • the application layer network element device receives the session start request message sent by the MBMS GW, where the session start request message includes one or more of the following information: C-TEID of the GTP-U tunnel, temporary mobility
  • the group identifies the TMGI, the service area, and the corresponding V2X service type;
  • the application layer network element device allocates the multicast address
  • the application layer network element device sends the allocated multicast address and the source address of the application layer network element device when sending the multicast data packet to the MBMS GW by using a session start response message.
  • the method further includes:
  • the application layer network element device receives the V2X service data packet to be transmitted by the source base station, where the UE identifier is used to indicate The UE that sends the V2X service data packet.
  • the method further includes:
  • the target base station broadcasts the V2X service data packet to one or more UEs accessing the target base station.
  • the application layer network element device is disposed outside the core network, and the method includes: the application layer network element device is integrated in the source base station; or the application layer network element device is the source base station Connected NE devices.
  • a vehicle network service data packet transmission method includes:
  • the source base station receives the car network V2X service data packet sent by the user equipment UE;
  • the source base station sends the V2X service data packet to be transmitted to the application layer network element device, to indicate that the application layer network element device is in the multimedia corresponding to the V2X service type to which the V2X service data packet to be transmitted belongs.
  • the broadcast multicast service MBMS bearer sends the V2X service data packet to be transmitted to the target base station, where the application layer network element device is set outside the core network, and the MBMS bearer is pre-established in the application layer. Between the network element device and the target base station.
  • the determining, by the source base station, the V2X service data packet to be transmitted from the received V2X service data packet including:
  • the V2X service data packet Determining, by the source base station, the V2X service data packet to be transmitted from the received V2X service data packet according to the received parameter of the V2X service data packet; wherein the received V2X service data packet is
  • the parameters include one or more of the following:
  • the determining, by the source base station, the V2X service data packet to be transmitted from the received V2X service data packet according to the received parameter of the V2X service data packet including:
  • the method further includes:
  • the one or more predetermined base stations including the target base station, establish an MBMS bearer with the application layer network element device, where each MBMS bearer that is established corresponds to a V2X service type.
  • the one or more predetermined base stations including the target base station, establish an MBMS bearer with the application layer network element device, including:
  • the system pre-configures the MBMS bearer between the one or more predetermined base stations including the target base station and the application layer network element device; or
  • the one or more predetermined base stations including the target base station establish an MBMS bearer with the application layer network element device;
  • the one or more predetermined base stations including the target base station establish an MBMS bearer with the application layer network element device.
  • the system pre-configures the MBMS bearer between the one or more predetermined base stations, including the target base station, and the application layer network element device, including:
  • a tunnel end point of a user-level general packet radio service tunneling protocol GTP-U tunnel The C-TEID, the multicast address of the application layer network element device, the temporary mobility group identifier TMGI, and the service area are identified.
  • the one or more predetermined base stations including the target base station, establish an MBMS bearer with the application layer network element device, including:
  • the predetermined base station receives one or more of the following parameters of the MBMS bearer configured by the multimedia broadcast multicast service gateway MBMS GW: a C-TEID of the GTP-U tunnel, The multicast address of the application layer network element device, the temporary mobility group identifier TMGI, and the service area.
  • the one or more predetermined base stations including the target base station, establish an MBMS bearer with the application layer network element device, including:
  • the predetermined base station receives one or more of the following parameters of the MBMS bearer configured by the MBMS GW: the multicast address allocated by the application layer network element device, and the application layer network element device The source address when sending multicast packets.
  • the method further includes:
  • the source base station sends the UE identifier and the cell identifier to the application layer network element device, where the source base station sends the V2X service data packet to be sent to the application layer network element device, where the UE identifier is used to indicate the sending station.
  • the UE that describes the V2X service data packet.
  • the target base station is the source base station; or
  • the target base station includes the source base station and one or more related base stations different from the source base station; or
  • the target base station includes one or more associated base stations different from the source base station.
  • the one or more predetermined base stations including the target base station are the source base station.
  • the source base station when the target base station is the source base station or the target base station includes the source base station, the source base station sends the V2X service data packet to be transmitted to the application layer network element device, where The method also includes:
  • the source base station broadcasts the V2X service data packet to be transmitted to one or more UEs that are connected to the source base station.
  • the application layer network element device is disposed outside the core network, where the application layer network element device is integrated in the source base station; or the application layer network element device is connected to the source base station. Network element device.
  • a vehicle network service data packet transmission device is applied to an application layer network element device, and the device includes:
  • the first transmission interface is connected to the source base station, and the first transmission interface is configured to: receive the car network V2X service data packet to be transmitted sent by the source base station;
  • a processor configured to be connected to the first transmission interface, the processor is configured to: determine a multimedia broadcast multicast service MBMS bearer corresponding to the V2X service type to which the V2X service data packet is received by the first transmission interface, where The MBMS bearer is pre-established between the application layer network element device and the target base station;
  • the second transmission interface is connected to the processor, and the second transmission interface is configured to: send the V2X service data packet received by the first transmission interface to the MBMS bearer determined by the processor Target base station;
  • the application layer network element device is disposed outside the core network.
  • the target base station is the source base station; or
  • the target base station includes the source base station and one or more related base stations different from the source base station; or
  • the target base station includes one or more associated base stations different from the source base station.
  • the second transmission interface includes one or more transmission interfaces, wherein each of the transmission interfaces connects one of one or more predetermined base stations including the target base station;
  • the processor is further configured to: before the first transmission interface receives the V2X service data packet to be transmitted sent by the source base station, by using the one or more transmission interfaces and the one or more The predetermined base station establishes an MBMS bearer, where each MBMS bearer established corresponds to a V2X service type.
  • the one or more transmission interfaces include one or more of the following:
  • a third transmission interface is connected to the system and the processor, and the third transmission interface is configured to: receive a pre-configured parameter of the system, where the pre-configured parameter is used to configure the application layer network element device An MBMS bearer between one or more predetermined base stations including the target base station;
  • a fourth transmission interface configured to be connected to the processor, where the fourth transmission interface is configured to: when the application layer network element device is started, establish an MBMS bearer with one or more predetermined base stations including the target base station ;
  • the fifth transmission interface is connected to the processor, and the fifth transmission interface is configured to: when the session starts, establish an MBMS bearer with one or more predetermined base stations including the target base station.
  • the pre-configured parameter includes one or more of the following parameters: a C-TEID of the GTP-U tunnel, a multicast address of the application layer network element device, a temporary mobility group identifier TMGI, and a service area. .
  • the fourth transmission interface is connected to the media broadcast multicast service gateway MBMS GW, where the fourth transmission interface is configured to receive the MBMS GW configuration when the application layer network element device is started.
  • One or more of the following parameters of the MBMS bearer a C-TEID of the GTP-U tunnel, a multicast address of the application layer network element device, a temporary mobility group identifier TMGI, and a service area.
  • the fifth transmission interface is connected to the MBMS GW, where the fifth transmission interface is configured to: when the session starts, receive one of the following parameters of the MBMS bearer configured by the MBMS GW or Multiple: C-TEID of the GTP-U tunnel, multicast address of the application layer network element device, temporary mobility group identifier TMGI, and service area.
  • the processor is further configured to: allocate a multicast address of the application layer network element device;
  • the fifth transmission interface is configured to: receive a session start request message sent by the MBMS GW, where the session start request message includes one or more of the following information: C- of the GTP-U tunnel TEID, temporary mobility group identifier TMGI, service area, and corresponding V2X service type;
  • the fifth transmission interface is further configured to: send the multicast address allocated by the processor, and the source address of the application layer network element device when sending the multicast data packet to the MBMS GW.
  • the first transmission interface is further configured to: when receiving the V2X service data packet to be transmitted sent by the source base station, receive a user equipment UE identifier and a cell identifier sent by the source base station, where The UE identifier is used to indicate a UE that sends the V2X service data packet.
  • the application layer network element device is disposed outside the core network, and the method includes: the application layer network element device is integrated in the source base station; or the application layer network element device is the source base station Connected NE devices.
  • a car network service data packet transmission device is applied to a source base station, and the device includes:
  • the first receiving module is configured to: receive a car network V2X service data packet sent by the user equipment UE;
  • a first determining module configured to: determine, according to the V2X service data packet received by the first receiving module, a V2X service data packet to be transmitted;
  • the first sending module is configured to: send the V2X service data packet to be transmitted that is determined by the first determining module to the application layer network element device, to indicate that the application layer network element device is in the
  • the V2X service data packet to be transmitted is sent to the target base station by the V2X service data packet corresponding to the V2X service type to which the V2X service data packet belongs, wherein the application layer network element device is set in the core network.
  • the MBMS bearer is pre-established between the application layer network element device and the target base station.
  • the first determining module is configured to: determine, according to a parameter of the V2X service data packet received by the first receiving module, the V2X service to be transmitted from the received V2X service data packet. a data packet; wherein the parameters of the received V2X service data packet include one or more of the following:
  • the first determining module is configured to: perform at least one of the following processes:
  • the destination IP address in the received V2X service data packet is a predetermined IP address, determining that the received V2X service data packet is the V2X service data packet to be transmitted;
  • the identifier of the PDCP header in the received V2X service data packet is the first predetermined identifier, determining that the received V2X service data packet is the V2X service data packet to be transmitted;
  • the identifier of the bearer in which the received V2X service data packet is located is the second predetermined identifier, determining that the received V2X service data packet is the V2X service data packet to be transmitted;
  • the received V2X service data packet is the V2X service data packet to be transmitted.
  • the device further includes:
  • a first establishing module configured to: in the first sending module, the V2X service to be transmitted Before the data packet is sent to the application layer network element device, an MBMS bearer is established with the application layer network element device, where each MBMS bearer established corresponds to a V2X service type.
  • the first establishing module includes one or more of the following:
  • a first establishing unit configured to: pre-configure an MBMS bearer between the source base station and the application layer network element device;
  • a second establishing unit configured to: when the application layer network element device is started, establish an MBMS bearer with the application layer network element device;
  • the third establishing unit is configured to: establish an MBMS bearer with the application layer network element device at the beginning of the session.
  • the first establishing unit is configured to: receive, by the system, one or more of the following parameters configured for the application layer network element device and the source base station: a general packet radio at a user level
  • the tunnel end point of the service tunneling protocol GTP-U tunnel identifies the C-TEID, the multicast address of the application layer network element device, the temporary mobility group identifier TMGI, and the service area.
  • the second establishing unit is configured to: when the application layer network element device starts, receive one or more of the following parameters of the MBMS bearer configured by the multimedia broadcast multicast service gateway MBMS GW; Item: C-TEID of the GTP-U tunnel, the multicast address of the application layer network element device, the temporary mobility group identifier TMGI, and the service area.
  • the third establishing unit is configured to: when the session starts, receive one or more of the following parameters of the MBMS bearer configured by the MBMS GW: the group allocated by the application layer network element device The broadcast address and the source address of the application layer network element device when transmitting the multicast data packet.
  • the first sending module is further configured to: when the V2X service data packet to be transmitted is sent to the application layer network element device, send the UE identifier and the cell to the application layer network element device. And an identifier, where the UE identifier is used to indicate a UE that sends the V2X service data packet.
  • the target base station is the source base station; or
  • the target base station includes the source base station and one or more related base stations different from the source base station; or
  • the target base station includes one or more associated base stations different from the source base station.
  • the device further includes:
  • a second receiving module configured to: when the target base station is the source base station or the target base station includes the source base station, and send, by the first sending module, the V2X service data packet to be transmitted to Receiving, by the application layer network element device, the V2X service data packet to be transmitted sent by the application layer network element device;
  • the broadcast module is configured to: broadcast the V2X service data packet to be transmitted received by the second receiving module to one or more UEs that are connected to the source base station.
  • the application layer network element device is disposed outside the core network, and the method includes: the application layer network element device is integrated in the source base station; or the application layer network element device is the source base station Connected NE devices.
  • the device of the application layer network element receives the V2X service data packet to be transmitted by the source base station, where the application layer network element device is disposed outside the core network;
  • the application layer network element device determines an MBMS bearer corresponding to the V2X service type to which the V2X service data packet belongs, where the MBMS bearer is pre-established between the application layer network element device and the target base station; and the application layer network element device is in the determined MBMS
  • the V2X service data packet is sent to the target base station on the bearer; the embodiment of the present invention solves the problem that the core network of the V2X service data passes through in the related art, causing the eNB to broadcast and transmit the V2X service data with a large delay.
  • the V2X service data is forwarded locally without going through the core network element and the V2X AS, thereby reducing the resources of the core network and shortening the delay of forwarding the V2X
  • FIG. 1 is a schematic diagram of an application scenario of transmitting information to a vehicle through a network information platform in related art
  • FIG. 2 is a flowchart of a method for transmitting a data packet of a vehicle networking service according to an embodiment of the present invention
  • FIG. 3 is a schematic diagram of an application scenario of an application layer network element device in a method for transmitting a data packet of a vehicle network service according to an embodiment of the present disclosure
  • FIG. 4 is a schematic diagram of an application scenario of another application layer network element device in a method for transmitting a data packet of a car network service according to an embodiment of the present disclosure
  • FIG. 5 is a flowchart of establishing an interaction of an MBMS bearer in a method for transmitting a data packet of a car network service according to an embodiment of the present invention
  • FIG. 6 is a flowchart of another method for transmitting a data packet of a vehicle networking service according to an embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of a device for transmitting data packets of a vehicle networking service according to an embodiment of the present invention.
  • FIG. 8 is a schematic structural diagram of another vehicle network service data packet transmission apparatus according to an embodiment of the present invention.
  • FIG. 9 is a schematic structural diagram of another apparatus for transmitting data packets of a car network service according to an embodiment of the present invention.
  • FIG. 10 is a schematic structural diagram of still another device for transmitting data packets of a vehicle networking service according to an embodiment of the present invention.
  • FIG. 11 is a schematic structural diagram of a first establishing module in a car network service data packet transmission apparatus according to an embodiment of the present disclosure
  • FIG. 12 is a schematic structural diagram of still another device for transmitting data packets of a car network service according to an embodiment of the present invention.
  • FIG. 13 is a schematic structural diagram of a device for transmitting data packets of a car network service according to an embodiment of the present invention
  • FIG. 14 is a schematic structural diagram of a device for transmitting data packets of a vehicle networking service according to an embodiment of the present invention.
  • FIG. 15 is a schematic structural diagram of a second establishing module in a car network service data packet transmission apparatus according to an embodiment of the present invention.
  • FIG. 16 is a schematic structural diagram of another second establishing module in a car network service data packet transmission apparatus according to an embodiment of the present invention.
  • FIG. 2 is a flowchart of a method for transmitting a data packet of a vehicle networking service according to an embodiment of the present invention.
  • the method for transmitting the data packet of the car network service provided in this embodiment may include the following steps, that is, steps 110 to 130:
  • Step 110 The application layer network element device receives the V2X service data packet to be transmitted sent by the source base station, where the application layer network element device is set outside the core network.
  • Step 120 The application layer network element device determines an MBMS bearer corresponding to the V2X service type to which the V2X service data packet belongs, where the MBMS bearer is pre-established between the application layer network element device and the target base station;
  • Step 130 The application layer network element device sends the V2X service data packet to the target base station on the determined MBMS bearer.
  • the V2X service data packet is sent to the target base station on the MBMS bearer corresponding to the V2X service type to which the V2X service data packet belongs, by using the application layer network element device disposed outside the core network, and the related information is solved.
  • a large number of V2X service data will be forwarded through the core network, causing the eNB to broadcast V2X service data with a large delay, and the V2X service data is forwarded locally without going through the core network element and the V2X AS. Therefore, the resources of the core network can be reduced, and the delay of forwarding the V2X service data can be shortened.
  • an application layer that is, the application layer network element device
  • the UE for example, an OBU
  • the foregoing application layer network element device is disposed outside the core network, for example, the application layer network element device may be integrated in the source base station; or the application layer network element device is The network element device connected to the source base station.
  • the application layer network element device may be integrated in the source base station, and the source base station is, for example, an eNB.
  • FIG. 3 is a method for transmitting a networked network service data packet according to an embodiment of the present invention.
  • Application scenario of an application layer network element device As shown in FIG. 3, the application layer network element device in this embodiment is integrated in the source base station.
  • the data of the UE is broadcast only in the range of one eNB; for example, the application layer network element device is The network element device connected to the source base station, that is, the application layer network element device is externally disposed as a logical entity.
  • FIG. 4 is a schematic diagram of an application scenario of another application layer network element device in the method for transmitting data packets of the vehicle network service provided by the embodiment of the present invention. As shown in FIG. 4, the application layer network element device in this embodiment is externally disposed as a logical entity. At this time, the application layer network element device may have an interface with multiple eNBs (target base stations).
  • the foregoing target base station may include multiple forms, for example, the target base station may directly be the source base station; or the target base station includes not only the source base station but also one or more different source base stations. A related base station; or, the target base station includes only one or more related base stations different from the source base station.
  • the application layer network element device can have an interface with multiple target base stations, the application layer network element device can broadcast the V2X service data packet in multiple target base stations. It should be noted that, if the application layer network element device is a network element device other than the source base station, the network element device is generally placed near the source base station, so as to shorten the delay of communication between the network element device and the source base station.
  • the method further includes: the application layer network element device is included with the target base station.
  • the application layer network element device is included with the target base station.
  • One or more predetermined base stations within the establishment establish an MBMS bearer, wherein each MBMS bearer established corresponds to a V2X service type.
  • the application layer network element device and the one or more predetermined base stations including the target base station may establish an MBMS bearer, that is, establish a data channel with the target base station, and send the application layer network element device to the target base station.
  • Downstream V2X data The data channel is one type of each V2X service type, and the application layer network element device distributes V2X data of different service types to the corresponding data channel.
  • the target base station also creates a radio bearer for each V2X service type for the target base station to send a V2X service data packet to the associated user equipment.
  • the target base station associates the data channel between the application layer network element device and the target base station with the corresponding radio bearer.
  • the target base station When the target base station receives the V2X downlink data from a certain data channel of the application layer network element device, the target base station according to the The association relationship directly sends data through the corresponding radio bearer.
  • the data channel between the application layer network element device and the target base station can pass the User Packet Radio Server (GPRS) protocol (the GPRS Tunneling Protocol for the User Plane). : Tunneling End Identity (GTP-U): TEID) identifier.
  • GPRS User Packet Radio Server
  • GTP-U Tunneling End Identity
  • data between the application layer network element device and the target base station may also be identified by a multicast address.
  • the application layer network element device and the one or more predetermined base stations including the target base station may establish an MBMS bearer in multiple manners.
  • the following manner may be adopted.
  • the system pre-configures an MBMS bearer between the application layer network element device and one or more predetermined base stations including the target base station;
  • the application layer network element device when the application layer network element device is started, the application layer network element device establishes an MBMS bearer with one or more predetermined base stations including the target base station;
  • the application layer network element device establishes an MBMS bearer with one or more predetermined base stations including the target base station.
  • the MBMS bearer establishment manners in the above several manners are respectively described below.
  • the system when the system pre-configures the MBMS bearer between the application layer network element device and one or more predetermined base stations including the target base station, the system is pre-configured as an application layer network.
  • the meta-device configures one or more of the following parameters: the tunnel-end identifier C-TEID of the GTP-U tunnel at the user level, the multicast address of the application-layer NE device, and the temporary mobility group identifier (Temporary) Mobile Group Identifier, referred to as: TMGI), Service Area.
  • the MBMS bearer between the application layer network element device and the target base station, and the radio bearer between the target base station and the user equipment to which the target base station belongs are established, and on the target base station.
  • the downlink bearer mapping relationship is configured, that is, the relationship between the MBMS bearer between the application layer network element device and the target base station, and the radio bearer between the target base station and the user equipment to which the user equipment belongs.
  • the application layer network element device when the application layer network element device is started, the application layer network element device establishes an MBMS bearer with one or more predetermined base stations including the target base station, including: When the layer network element device is started, the application layer network element device receives one or more of the following parameters of the MBMS bearer configured by the MBMS GW: the C-TEID of the GTP-U tunnel, the multicast address of the application layer network element device, and the temporary The mobile group identifies the TMGI and the service area.
  • the application layer network element is set.
  • Establishing an MBMS bearer with one or more predetermined base stations including the target base station including: at the beginning of the session, the application layer network element device receives one or more of the following parameters of the MBMS bearer configured by the MBMS GW: GTP- The C-TEID of the U tunnel, the multicast address of the application layer NE device, the temporary mobility group identifier TMGI, and the service area.
  • the interface between the application layer network element device and the MBMS GW needs to be increased, and the application layer network element is added.
  • the IP address of the device is configured in the downlink node list of the MBMS GW.
  • the multicast address of the application layer network element device may be allocated by the MBMS GW, or may be allocated by the application layer network element device and then sent to the MBMS GW.
  • the MBMS GW needs to send information such as the TMGI, Service Area, and V2X service type to the application layer network element device.
  • the application layer network element device receives the parameter of the MBMS bearer configured by the MBMS GW, and the application layer network element device receives the session start request message sent by the MBMS GW, where
  • the session start request message includes one or more of the following information: a C-TEID of the GTP-U tunnel, a temporary mobility group identifier TMGI, a service area Service Area, and a corresponding V2X service type; an application layer network element device allocation office
  • the multicast address is sent by the application layer network element device to the MBMS GW by using the session start response message when the multicast address of the application layer network element device and the application layer network element device sends the multicast data packet.
  • FIG. 5 is a flowchart of an MBMS bearer interaction process in a method for transmitting a data packet of a car network service according to an embodiment of the present invention.
  • the MBMS bearer parameter corresponding to the V2X service in the process shown in FIG. 5 is notified in the MBMS bearer pre-establishment process.
  • the flowchart of the application layer is as shown in FIG. 5.
  • the process of establishing an MBMS bearer includes the following steps, that is, steps 201 to 213:
  • Step 201 The MBMS GW receives a session start request message sent by the BM-SC.
  • Step 202 The MBMS GW sends a session start response message to the BM-SC.
  • Step 203 The MBMS GW sends a session start request message to the application layer network element device, and sends a message such as a TMGI, a service area, a C-TEID, and a corresponding V2X service type to the application layer network element device.
  • a message such as a TMGI, a service area, a C-TEID, and a corresponding V2X service type to the application layer network element device.
  • Step 204 After receiving the session start request message, the application layer network element device allocates a multicast address.
  • Step 205 The application layer network element device sends the multicast data to the multicast address and the application layer network element device.
  • the source address of the packet is sent to the MBMS GW through a session start response message;
  • Step 206 The MBMS GW sends a session start request message to the MME/SGSN.
  • Step 207 The MME/SGSN sends a session start request message to the E-UTRAN/UTRAN.
  • Step 208 The E-UTRAN/UTRAN sends a session start response message to the MBMS GW.
  • Step 209 The MME/SGSN sends a session start response message to the MBMS GW.
  • Step 210 The E-UTRAN/UTRAN performs RAN resource establishment.
  • Step 211 E-UTRAN/UTRAN joins IP multicast
  • Step 212 The BM-SC sends MBMS data to the MBMS GW.
  • step 213 the MBMS GW sends the MBMS data to the E-UTRAN/UTRAN.
  • the multicast address sent by the MBMS GW to the downlink node (the target base station) is the multicast address allocated by the application layer network element device, and the multicast source address is the address of the application layer network element device.
  • the Session Start process ends, an MBMS bearer is established between the application layer network element device and the target base station, and the application layer also stores sufficient information to transmit the V2X service data packet to the corresponding MBMS bearer.
  • the MBMS GW After the MBMS bearer corresponding to the V2X service type is pre-established through the Session Start process, the MBMS GW has saved parameters corresponding to each MBMS bearer, including: TMGI, C-TEID, multicast address, Service Area, and the like. In this case, the MBMS GW can configure the MBMS bearer information corresponding to the V2X to the application layer network element device, that is, the application layer network element device learns the MBMS bearer corresponding to one or more V2X service types, and the configuration corresponding to each MBMS bearer. Information/parameters, the above method includes the following steps:
  • Step 1-1 The application layer network element device sends a request message to the MBMS GW, where the request message is used to obtain the MBMS information/parameters configured by the V2X service.
  • Step 1-2 The MBMS GW sends a response message to the application layer network element device, where the response message includes one or more MBMS information/parameters corresponding to the V2X service type, for example, a V2X service type identifier and a unique corresponding TMGI identifier.
  • V2X business type ⁇ -->TMGI V2X business type ⁇ -->TMGI
  • parameters of the MBMS bearer configured for each V2X service type, such as parameters such as It is: Quality of Service (QoS), Multicast/Broadcast Area, MBMS Service Channel Identity (Logic Control ID (LCID) or MBMS Traffic ID (MBMS Traffic ID). It is: MTCH ID)), multicast address, C-TEID, and so on.
  • QoS Quality of Service
  • LCID Logic Control ID
  • MBMS Traffic ID MBMS Traffic ID
  • MTCH ID multicast address
  • C-TEID C-TEID
  • V2X service type ⁇ --> ⁇ TMGI multicast address
  • C-TEID multicast address
  • QoS service area
  • LCID/MTCH ID LCID/MTCH ID
  • the MBMS GW can also directly send the indication information of the V2X service to the application layer network element device, that is, without the above steps 1-1, only steps 1-2.
  • the same TMGI identifier may be used for the same V2X service type in different areas in order to simplify the operation of the UE. In this way, when the UE moves, the UE does not need to configure a new TMGI, thereby reducing the delay in acquiring the V2X message.
  • the TMGI of the different V2X service types may be pre-configured in the UE, or the UE may configure the TMGI through the webpage or the Open Mobile Alliance Device Management (OMA DM) configuration mode.
  • OMA DM Open Mobile Alliance Device Management
  • the method further includes the following steps: the application layer network element device receives the V2X service data packet to be transmitted sent by the source base station, and further receives the UE identifier and the cell identifier sent by the source base station, where the UE Identifies the UE that is used to indicate the sending of V2X service data packets.
  • the application layer can know which OBU each V2X service data packet comes from and which source base station from which cell.
  • the application layer network element device since the application layer network element device has obtained the MBMS bearer information/parameter corresponding to each V2X service type, after the application layer network element device receives the V2X data packet, the application layer network element device reads the V2X data packet. The content is determined by which V2X service type each V2X data packet belongs to, and then the application layer network element device carries each V2X data packet to the corresponding MBMS bearer and sends it to the target base station.
  • the application layer network element device can process only V2X service data packets from one source base station, for example, the application layer network element device is carried on a source base station; in addition, the application layer network element device can also process the V2X service data packets of multiple source base stations, at this time, the application layer network element device is connected to the multiple source base stations.
  • the application layer network element device when the application layer network element device receives/processes/transmits V2X service data packets from one or more source base stations, the application layer network element device receives the V2X service data packets from each source base station, according to each Service area to be broadcasted by the V2X service type, select Corresponding one or more target base stations are transmitted on the one or more target base stations.
  • the cell information is included in the broadcast area of the V2X service type, the one or more target base stations may be transmitted on the corresponding cell.
  • the service areas of the V2X service type 1 broadcast are eNB1, eNB2 and eNB3;
  • the service areas of the V2X service type 2 broadcast are eNB2 and eNB3;
  • the application layer After receiving the V2X service from the eNB1 and the eNB2, the application layer carries the V2X services on the MBMS bearers of the V2X service type 1 and the V2X service type 2, respectively, according to the MBMS bearer corresponding to each V2X service type, and then sends the V2X.
  • the traffic type 1 packet is sent to eNB1, eNB2 and eNB3; the V2X service type 2 packet is transmitted to eNB2 and eNB3.
  • the target base station may further include: the target base station sends the V2X service.
  • the data packet is broadcast to one or more UEs that are connected to the target base station.
  • FIG. 6 is a flowchart of another method for transmitting a data packet of a car network service according to an embodiment of the present invention. As shown in FIG. 6, the method provided in this embodiment includes the following steps, that is, step 310 to step 330:
  • Step 310 The source base station receives the V2X service data packet sent by the UE.
  • Step 320 The source base station determines, from the received V2X service data packet, a V2X service data packet to be transmitted.
  • Step 330 The source base station sends the V2X service data packet to be transmitted to the application layer network element device, to indicate that the application layer network element device is on the MBMS bearer corresponding to the V2X service type to which the V2X service data packet to be transmitted belongs.
  • the V2X service data packet to be transmitted is sent to the target base station, where the application layer network element device is set outside the core network, and the MBMS bearer is pre-established between the application layer network element device and the target base station.
  • the method for transmitting the data packet of the vehicle network service provided by the embodiment of the present invention is performed on the MBMS bearer of the multimedia broadcast multicast service corresponding to the V2X service type to which the V2X service data packet belongs, by using the application layer network element device outside the core network.
  • the V2X service data packet is sent to the target base station, and the core network that the V2X service data passes through is recovered in the related art, and the eNB broadcasts and sends the packet.
  • the V2X service data has a large delay.
  • the V2X service data is forwarded locally instead of the core network element and the V2X AS. This reduces the resources of the core network and shortens the delay of forwarding V2X service data. effect.
  • the application layer network element device is disposed outside the core network, for example, the application layer network element device may be integrated in the source base station, or the application layer network element device may be the source base station.
  • Connected NE devices The setting mode of the application layer network element device can be referred to FIG. 3 and FIG. 4.
  • the source base station determines, according to the received V2X service data packet, the V2X service data packet to be transmitted, where the source base station receives the V2X service data packet according to the received parameter.
  • the V2X service data packet is determined in the V2X service data packet, where the parameters of the received V2X service data packet include one or more of the following: a destination IP address in the V2X service data packet; and a V2X service data packet
  • PDCP Packet Data Convergence Protocol
  • the implementation manner of determining, by the source base station, the V2X service data packet to be transmitted from the received V2X service data packet according to the received parameter of the V2X service data packet may include the following situations: :
  • the source base station determines that the received V2X service data packet is a V2X service data packet to be transmitted; for example, a V2X service data packet. Whether the destination IP address belongs to a predetermined IP address range, where the predetermined IP address range is an IP address segment of the V2X service data packet that needs to be sent to the application layer network element device;
  • the source base station determines that the received V2X service data packet is a V2X service data packet to be transmitted when the identifier of the PDCP header in the received V2X service data packet is the first predetermined identifier.
  • the source base station determines that the received V2X service data packet is a V2X service data packet to be transmitted when the identifier of the bearer in which the received V2X service data packet is located is the second predetermined identifier.
  • the source base station determines that the received V2X service data packet is a V2X service data packet to be transmitted.
  • the method may further include: one or more including the target base station.
  • the predetermined base station and the application layer network element device establish an MBMS bearer, where each MBMS bearer established corresponds to a V2X service type.
  • the one or more predetermined base stations including the target base station may be the source base station.
  • the establishing the MBMS bearer by the one or more predetermined base stations, including the target base station, and the application layer network element device may include multiple implementation manners, for example, may include one of the following manners. :
  • the system pre-configures an MBMS bearer between one or more predetermined base stations including the target base station and the application layer network element device;
  • one or more predetermined base stations including the target base station establish an MBMS bearer with the application layer network element device;
  • one or more predetermined base stations including the target base station establish an MBMS bearer with the application layer network element device.
  • the above multiple manners are respectively established for the MBMS bearers corresponding to the application layer network element device side, and the above three methods are separately described below.
  • the system pre-configures an MBMS bearer between the one or more predetermined base stations, including the target base station, and the application layer network element device, where: the predetermined base station receiving system is pre- One or more of the following parameters configured for the application layer network element device and the predetermined base station: a tunnel-level identifier C-TEID of the GTP-U tunnel of the user-level general packet radio service tunneling protocol, and a group of the application layer network element device Broadcast address, temporary mobile group identifier TMGI, service area (Service Area).
  • the predetermined base station receiving system is pre- One or more of the following parameters configured for the application layer network element device and the predetermined base station: a tunnel-level identifier C-TEID of the GTP-U tunnel of the user-level general packet radio service tunneling protocol, and a group of the application layer network element device Broadcast address, temporary mobile group identifier TMGI, service area (Service Area).
  • the predetermined base station when the application layer network element device is started, when one or more predetermined base stations including the target base station establish an MBMS bearer with the application layer network element device, when the application layer network element device is started, the predetermined base station receives one or more of the following parameters of the MBMS GW configured by the MBMS GW: the C-TEID of the GTP-U tunnel, and the application layer network element The multicast address of the device, the temporary mobility group identifier TMGI, and the service area.
  • the one or more predetermined base stations including the target base station establish an MBMS bearer with the application layer network element device, including: starting at the session
  • the predetermined base station receives one or more of the following parameters of the MBMS bearer configured by the MBMS GW: a multicast address allocated by the application layer network element device, and a source address when the application layer network element device sends the multicast data packet.
  • the method further includes: when the source base station sends the V2X service data packet to be transmitted to the application layer network element device, and further sends the UE identifier and the cell identifier to the application layer network element device, where The UE identity is used to indicate a UE that transmits a V2X service data packet.
  • the source base station receives the data packet from the V2X service, it can know which OBU and which cell each V2X service data packet comes from. This is because the OBU sends the V2X service data packet to the source base station through a dedicated Point to Point (PTP) bearer.
  • PTP Point to Point
  • the UE identifier (UE ID) and the cell identifier (cell ID) may be added to each V2X service data packet, so that the application layer network element device can know each Which OBU and which source base station the V2X service data packet comes from.
  • the target base station may be a source base station; or the target base station may include a source base station and one or more related base stations different from the source base station; or the target base station may include a different one from the source base station. Or multiple related base stations.
  • the source base station is the source base station or the target base station includes the source base station
  • the source base station sends the V2X service data packet to be transmitted to the application layer network element device
  • the source base station receives the to-be-transmitted transmission sent by the application layer network element device.
  • the V2X service data packet the source base station broadcasts the V2X service data packet to be transmitted to one or more UEs accessing the source base station.
  • FIG. 7 is a schematic structural diagram of a car network service data packet transmission device according to an embodiment of the present invention.
  • the car network service data packet transmission device 40 provided in this embodiment is applied to the application layer network element device. As shown in FIG. 7, the car network service data packet transmission device 40 includes:
  • the first transmission interface 410 is connected to the source base station, and the first transmission interface 410 is configured to: receive the V2X service data packet to be transmitted sent by the source base station;
  • the processor 420 is connected to the first transmission interface 410, and the processor 420 is configured to: determine a multimedia broadcast multicast service MBMS bearer corresponding to the V2X service type to which the V2X service data packet received by the first transmission interface 410 belongs, where The MBMS bearer is pre-established between the application layer network element device and the target base station;
  • the second transmission interface 430 is respectively connected to the processor 420 and the first transmission interface 410.
  • the second transmission interface 430 is configured to: receive the V2X service data packet received by the first transmission interface 410 on the MBMS bearer determined by the processor 420.
  • the device is sent to the target base station; wherein the application layer network element device is disposed outside the core network.
  • the target base station may be a source base station; or the target base station may include a source base station and one or more related base stations different from the source base station; or the target base station may include a different one from the source base station. Or multiple related base stations.
  • FIG. 8 is a schematic structural diagram of another device for transmitting a network packet data packet according to an embodiment of the present invention.
  • the second transmission interface 430 in this embodiment may include: one or more transmission interfaces 440, wherein each transmission interface is connected. a base station of one or more predetermined base stations including the target base station; the processor 420 is further configured to: before the first transmission interface 410 receives the V2X service data packet to be transmitted sent by the source base station, through the transmission interface and the predetermined base station An MBMS bearer is established, where each MBMS bearer established corresponds to a V2X service type.
  • one or more transmission interfaces 440 may include one or more of the following interfaces: a third transmission interface 441, coupled to the system and the processor 420, the third transmission interface 441 Set to: receive pre-configured parameters of the system, wherein the pre-configured parameters are used for matching An MBMS bearer between the application layer network element device and one or more predetermined base stations including the target base station; the fourth transmission interface 442 is connected to the processor 420, and the fourth transmission interface 442 is configured to be in the application layer network.
  • the MBMS bearer is established with one or more predetermined base stations including the target base station; the fifth transmission interface 443 is connected to the processor 420, and the fifth transmission interface 443 is set to: at the beginning of the session, and includes One or more predetermined base stations, including the target base station, establish an MBMS bearer.
  • the embodiment shown in FIG. 8 is illustrated by taking one or more of the transmission interfaces 440 including the third transmission interface 441, the fourth transmission interface 442, and the fifth transmission interface 443 as an example.
  • the pre-configured parameter includes one or more of the following parameters: a C-TEID of the GTP-U tunnel, a multicast address of the application layer network element device, and a temporary mobility group identifier TMGI. And Service Area.
  • the fourth transmission interface 442 is connected to the MBMS GW 50, where the fourth transmission interface 442 is configured to receive the MBMS configured by the MBMS GW 50 when the application layer network element device is started.
  • the fifth transmission interface 443 is connected to the MBMS GW 50, where the fifth transmission interface 443 is configured to receive the following MBMS bearers configured by the MBMS GW 50 at the beginning of the session.
  • One or more of the parameters the C-TEID of the GTP-U tunnel, the multicast address of the application layer network element device, the temporary mobility group identifier TMGI, and the service area.
  • the processor 420 is further configured to: allocate a multicast address of the application layer network element device;
  • the fifth transmission interface 443 is configured to: receive a session start request message sent by the MBMS GW 50, where the session start request message includes one or more of the following information: a C-TEID of the GTP-U tunnel The temporary mobile group identifier TMGI, the service area (Service Area), and the corresponding V2X service type.
  • the fifth transmission interface 443 is further configured to: send the allocated multicast address allocated by the processor 420, and the application layer network element device is sent. The source address at the time of multicast packet is sent to the MBMS GW 50 through a session start response message.
  • the first transmission interface 410 is further configured to: when receiving the V2X service data packet to be transmitted sent by the source base station, receive the UE identifier and the cell identifier sent by the source base station.
  • the UE identifier is used to indicate a UE that sends a V2X service data packet.
  • the application layer network element device is disposed outside the core network, for example, the application layer network element device may be integrated in the source base station; or the application layer network element device may be connected to the source base station. Network element device.
  • FIG. 9 is a schematic structural diagram of another car network service data packet transmission device according to an embodiment of the present invention.
  • the car network service data packet transmission device 60 provided in this embodiment is applied to the source base station.
  • the device 60 includes: a first receiving module 610, a first determining module 620, and a first sending module 630. The above modules will be described.
  • the first receiving module 610 is configured to: receive a V2X service data packet sent by the UE;
  • the first determining module 620 is connected to the first receiving module 610, and the first determining module 620 is configured to: determine a V2X service data packet to be transmitted from the V2X service data packet received by the first receiving module 610;
  • the first sending module 630 is connected to the first determining module 620, and the first sending module 630 is configured to: send the V2X service data packet to be transmitted determined by the first determining module 620 to the application layer network element device to indicate The application layer network element device sends the V2X service data packet to be transmitted to the target base station on the MBMS bearer corresponding to the V2X service type to which the V2X service data packet to be transmitted belongs, where the application layer network element device is set in the core network.
  • the MBMS bearer is pre-established between the application layer network element device and the target base station.
  • the first determining module 620 is configured to: determine, according to the parameter of the V2X service data packet received by the first receiving module 610, the to-be-transmitted from the received V2X service data packet.
  • the first determining module 620 is configured to: perform at least one of: determining, when the destination IP address in the received V2X service data packet is a predetermined IP address, receiving The V2X service data packet to be sent is the V2X service data packet to be transmitted; When the identifier of the PDCP header in the V2X service data packet is the first predetermined identifier, it is determined that the received V2X service data packet is a V2X service data packet to be transmitted; and the identifier of the bearer where the received V2X service data packet is located is When the second predetermined identifier is determined, the received V2X service data packet is determined to be a V2X service data packet to be transmitted; and when the predetermined field in the received V2X service data packet is a predetermined value, the received V2X service data packet is determined. The V2X service data packet to be transmitted.
  • FIG. 10 is a schematic structural diagram of still another device for transmitting data packets of a vehicle networking service according to an embodiment of the present invention. As shown in FIG. 10, based on the structure of the apparatus shown in FIG. 9, the apparatus provided in this embodiment may further include a first establishing module 640, and the first establishing module 640 is described below.
  • the first establishing module 640 is respectively connected to the first sending module 630 and the first determining module 620, and is configured to: before the first sending module 630 sends the V2X service data packet to be transmitted to the application layer network element device, and the application layer
  • the network element device establishes an MBMS bearer, where each MBMS bearer established corresponds to a V2X service type.
  • FIG. 11 is a schematic structural diagram of a first establishing module in a car network service data packet transmission apparatus according to an embodiment of the present invention.
  • the first establishing module 640 in this embodiment may include one or more of the following units: a first establishing unit 641, a second establishing unit 642, and a third establishing unit 643.
  • the first setup module 640 is described.
  • the embodiment shown in FIG. 11 is illustrated by the first establishing module 640 including the first establishing unit 641, the second establishing unit 642 and the third establishing unit 643.
  • the first establishing unit 641 is configured to: the system pre-configures the MBMS bearer between the source base station and the application layer network element device;
  • the second establishing unit 642 is configured to: when the application layer network element device is started, establish an MBMS bearer with the application layer network element device;
  • the third establishing unit 643 is configured to: establish an MBMS bearer with the application layer network element device at the beginning of the session.
  • the first establishing unit 641 is configured to: the receiving system configures one or more of the following parameters for the application layer network element device and the source base station in advance: the user: Layer-wide general packet radio service tunneling protocol GTP-U tunnel tunnel end identifier C-TEID, application layer network element device multicast address, temporary mobility group identifier TMGI, and service area (Service Area).
  • the user Layer-wide general packet radio service tunneling protocol GTP-U tunnel tunnel end identifier C-TEID, application layer network element device multicast address, temporary mobility group identifier TMGI, and service area (Service Area).
  • the second establishing unit 642 is configured to: receive one of the following parameters of the MBMS bearer configured by the MBMS GW when the application layer network element device is started; Or multiple: C-TEID of the GTP-U tunnel, multicast address of the application layer network element device, temporary mobility group identifier TMGI, and service area.
  • the third establishing unit 643 is configured to: when the session starts, receive one or more of the following parameters of the MBMS GW configured by the MBMS GW: The multicast address assigned by the application layer NE device and the source address of the application layer NE device when sending multicast packets.
  • the first sending module 630 is further configured to: when the V2X service data packet to be transmitted is sent to the application layer network element device, send the UE identifier to the application layer network element device. a cell identity, where the UE identity is used to indicate a UE that sends a V2X service data packet.
  • the target base station is a source base station; or the target base station includes a source base station and one or more related base stations different from the source base station; or the target base station includes one or more related to the source base station. Base station.
  • FIG. 12 is a schematic structural diagram of still another device for transmitting data packets of a car network service according to an embodiment of the present invention. As shown in FIG. 12, based on the structure of the device shown in FIG. 9, the car network service data packet transmission device 60 may further include:
  • the second receiving module 650 is connected to the first sending module 630, and is configured to: when the target base station is the source base station or the target base station includes the source base station, and send the V2X service data packet to be transmitted to the application in the first sending module 630. Receiving, by the layer network element device, the V2X service data packet to be transmitted sent by the application layer network element device;
  • the broadcast module 660 is configured to: broadcast the V2X service data packet to be transmitted received by the second receiving module 650 to one or more UEs that access the source base station.
  • the application layer network element device is disposed outside the core network, for example, the application layer network element device may be integrated in the source base station, or the application layer network element device may be connected to the source base station. Network element device.
  • FIG. 13 is a schematic structural diagram of a car network service data packet transmission device according to an embodiment of the present invention. As shown in Figure 13 The device provided in this embodiment is applied to an application layer network element device.
  • the car network service data packet transmission device 70 includes the following modules: a third receiving module 710, a second determining module 720, and a second sending module 730. This device 70 will be described.
  • the third receiving module 710 is configured to: receive the V2X service data packet to be transmitted, which is sent by the source base station, where the application layer network element device in this embodiment is disposed outside the core network;
  • the second determining module 720 is connected to the third receiving module 710, and the second determining module 720 is configured to: determine an MBMS bearer corresponding to the V2X service type to which the V2X service data packet belongs, where the MBMS bearer is pre-established in the application layer. Between the network element device and the target base station;
  • the second sending module 730 is connected to the foregoing second determining module 720 and the third receiving module 710, where the second sending module 730 is configured to receive the third receiving module 710 on the MBMS bearer determined by the second determining module 720.
  • the V2X service data packet is sent to the target base station.
  • the target base station is a source base station; or the target base station includes a source base station and one or more related base stations different from the source base station; or the target base station includes one or more related to the source base station. Base station.
  • FIG. 14 is a schematic structural diagram of a device for transmitting data packets of a vehicle networking service according to an embodiment of the present invention.
  • the apparatus 70 provided in this embodiment may further include: a second establishing module 740, which is described below, based on the structure of the apparatus shown in FIG.
  • the second establishing module 740 is connected to the foregoing second determining module 720 and the second sending module 730, and is configured to: establish an MBMS bearer with one or more predetermined base stations including the target base station, where each MBMS bearer established Corresponds to a V2X service type.
  • FIG. 15 is a schematic structural diagram of a second establishing module in a car network service data packet transmission apparatus according to an embodiment of the present invention.
  • the second establishing module 740 may include one or more of the following: a fourth establishing unit 741, a fifth establishing unit 742, and a sixth establishing unit 743.
  • the second establishing module 740 is described below. .
  • the embodiment shown in FIG. 15 is illustrated by the second establishing module 740 including a fourth establishing unit 741, a fifth establishing unit 742 and a sixth establishing unit 743.
  • the fourth establishing unit 741 is configured to: the system pre-configures an MBMS bearer between the application layer network element device and one or more predetermined base stations including the target base station; and the fifth establishing unit 742 is configured to: at the application layer network element When the device is started, it is established with one or more predetermined base stations including the target base station.
  • the MBMS bearer; the sixth establishing unit 743 is configured to: at the beginning of the session, establish an MBMS bearer with one or more predetermined base stations including the target base station.
  • the fourth establishing unit 741 is configured to: the system pre-configures one or more of the following parameters for the application layer network element device: a general grouping at the user level
  • the tunnel end identifier of the GTP-U tunnel of the wireless service tunneling protocol identifies the C-TEID, the multicast address of the application layer network element device, the temporary mobility group identifier TMGI, and the service area.
  • the fifth establishing unit 742 is configured to: when the application layer network element device is started, receive one of the following parameters of the MBMS GW configured by the MBMS GW. Or multiple: C-TEID of the GTP-U tunnel, multicast address of the application layer network element device, temporary mobility group identifier TMGI, and service area.
  • the foregoing sixth establishing unit 743 is configured to: when the session starts, receive one or more of the following parameters of the MBMS GW configured by the MBMS GW: The C-TEID of the GTP-U tunnel, the multicast address of the application layer NE device, the temporary mobility group identifier TMGI, and the service area.
  • FIG. 16 is a schematic structural diagram of another second establishing module in a car network service data packet transmission apparatus according to an embodiment of the present invention. As shown in FIG. 16, the structure of the sixth establishing unit 743 is shown in this embodiment.
  • the sixth establishing unit 743 may include: a receiving subunit 7431, an assigning submodule 7432, and a sending submodule 7433. The sixth establishing unit 743 will be described.
  • the receiving sub-unit 7431 is configured to: receive a session start request message sent by the MBMS GW, where the session start request message carries one or more of the following information: a C-TEID of the GTP-U tunnel, and a temporary mobility group Identifying a TMGI, a service area (Service Area), and a corresponding V2X service type; an allocation sub-module 7432, configured to: allocate a multicast address of the application layer network element device; and a sending sub-module 7433, configured to: allocate the allocation sub-module 7432 The source address of the multicast address and the application layer network element device when transmitting the multicast data packet is sent to the MBMS GW through the session start response message.
  • the third receiving module 710 is further configured to: when the application layer network element device receives the V2X service data packet to be transmitted sent by the source base station, receive the UE identifier sent by the source base station, and a cell identity, where the UE identity is used to indicate a UE that sends a V2X service data packet.
  • the application layer network element device is on the determined MBMS bearer.
  • the target base station may further broadcast the V2X service data packet to one or more UEs that access the target base station.
  • the application layer network element device is disposed outside the core network, for example, the application layer network element device may be integrated in the source base station, or the application layer network element device may be the source base station. Connected NE devices.
  • the modules in the foregoing apparatus may be implemented by software or hardware.
  • the foregoing may be implemented by, but not limited to, the foregoing modules are all located in the same processor; or, the modules are located respectively. Among multiple processors.
  • Embodiments of the present invention also provide a storage medium.
  • the foregoing storage medium may be configured to store program code for performing the following steps:
  • the application layer network element device receives the V2X service data packet to be transmitted sent by the source base station, where the application layer network element device is set outside the core network.
  • the application layer network element device determines an MBMS bearer corresponding to the V2X service type to which the V2X service data packet belongs, where the MBMS bearer is pre-established between the application layer network element device and the target base station;
  • the application layer network element device sends the V2X service data packet to the target base station on the determined MBMS bearer.
  • the target base station is a source base station; or the target base station includes a source base station and one or more related base stations different from the source base station; or the target base station includes one or more different from the source base station.
  • Related base stations are also included in this embodiment.
  • the storage medium is further arranged to store program code for performing the following steps:
  • the application layer network element device may perform an MBMS bearer with one or more predetermined base stations including the target base station.
  • Each MBMS bearer established corresponds to a V2X service type.
  • the storage medium is further arranged to store program code for performing the following steps:
  • the application layer network element device establishes an MBMS bearer with one or more predetermined base stations including the target base station, and includes one of the following: the system pre-configures the application layer network element device and the one including the target base station.
  • the MBMS bearer between one or more predetermined base stations; when the application layer network element device is started, the application layer network element device establishes an MBMS bearer with one or more predetermined base stations including the target base station; at the beginning of the session, the application layer The network element device establishes an MBMS bearer with one or more predetermined base stations including the target base station.
  • the storage medium is further arranged to store program code for performing the following steps:
  • the system pre-configuring the MBMS bearer between the application layer network element device and one or more predetermined base stations including the target base station includes: configuring one or more of the following parameters for the application layer network element device by the system in advance: user level The tunnel end identifier of the GTP-U tunnel of the general packet radio service tunneling protocol C-TEID, the multicast address of the application layer network element device, the temporary mobile group identifier TMGI, and the service area Service Area.
  • the storage medium is further arranged to store program code for performing the following steps:
  • the application layer network element device When the application layer network element device is started, the application layer network element device establishes an MBMS bearer with one or more predetermined base stations including the target base station, and includes: when the application layer network element device is started, the application layer network element device receives the MBMS GW configuration.
  • One or more of the following parameters of the MBMS bearer the C-TEID of the GTP-U tunnel, the multicast address of the application layer network element device, the temporary mobility group identifier TMGI, and the service area Service Area.
  • the storage medium is further arranged to store program code for performing the following steps:
  • the application layer network element device and the one or more predetermined base stations including the target base station establish an MBMS bearer, including: at the beginning of the session, the application layer network element device receives the following parameters of the MBMS bearer configured by the MBMS GW.
  • the application layer network element device receives the following parameters of the MBMS bearer configured by the MBMS GW.
  • the storage medium is further arranged to store program code for performing the following steps:
  • the parameter that the application layer network element device receives the MBMS bearer configured by the MBMS GW includes: the application layer network element device receives the session start request message sent by the MBMS GW, where the session start request message includes one of the following information. Or multiple: the C-TEID of the GTP-U tunnel, the temporary mobility group identifier TMGI, the service area (Service Area), and the corresponding V2X service type; the application layer network element device allocates a multicast address; the application layer network element device will allocate The source address of the multicast address and the application layer NE device when sending the multicast packet is sent to the MBMS through the session start response message. GW.
  • the storage medium is further arranged to store program code for performing the following steps:
  • the application layer network element device may receive the UE identifier and the cell identifier sent by the source base station, where the UE identifier is used to indicate that the V2X service is sent.
  • the UE of the packet may be received.
  • the storage medium is further arranged to store program code for performing the following steps:
  • the method may further include: the target base station broadcasts the V2X service data packet to the one or more UEs that access the target base station.
  • the application layer network element device is disposed outside the core network, and may include: the application layer network element device is integrated in the source base station, or the application layer network element device is a network connected to the source base station. Meta device.
  • Embodiments of the present invention also provide a storage medium.
  • the foregoing storage medium may be configured to store program code for performing the following steps:
  • the source base station receives the V2X service data packet sent by the UE.
  • the source base station determines, according to the received V2X service data packet, a V2X service data packet to be transmitted.
  • the source base station sends the V2X service data packet to be transmitted to the application layer network element device, to indicate that the application layer network element device is to be transmitted on the MBMS bearer corresponding to the V2X service type to which the V2X service data packet to be transmitted belongs.
  • the V2X service data packet is sent to the target base station, where the application layer network element device is set outside the core network, and the MBMS bearer is pre-established between the application layer network element device and the target base station.
  • the storage medium is further arranged to store program code for performing the following steps:
  • the source base station determines the V2X service data packet to be transmitted from the received V2X service data packet, including: the source base station determines the V2X service data packet to be transmitted from the received V2X service data packet according to the received V2X service data packet parameter.
  • the parameter of the received V2X service data packet includes one or more of the following: a destination IP address in the V2X service data packet; an identifier of the PDCP header in the V2X service data packet; and a bearer in which the V2X service data packet is located Identification; a predetermined field in the V2X service packet.
  • the storage medium is further arranged to store program code for performing the following steps:
  • the source base station determines the V2X service data packet to be transmitted from the received V2X service data packet according to the received parameter of the V2X service data packet, including: the destination IP address of the source base station in the received V2X service data packet is a predetermined IP address. At the address, the received V2X service data packet is determined to be a V2X service data packet to be transmitted; and the source base station determines the received information when the identifier of the PDCP header in the received V2X service data packet is the first predetermined identifier.
  • the V2X service data packet is a V2X service data packet to be transmitted.
  • the source base station determines that the received V2X service data packet is the V2X service to be transmitted when the identifier of the bearer in which the received V2X service data packet is located is the second predetermined identifier.
  • the data packet is determined by the source base station when the predetermined field in the received V2X service data packet is a predetermined value, and the received V2X service data packet is the V2X service data packet to be transmitted.
  • the storage medium is further arranged to store program code for performing the following steps:
  • the method further includes: establishing, by the one or more predetermined base stations, the target base station, the MBMS bearer, and the established Each MBMS bearer corresponds to one V2X service type.
  • the storage medium is further arranged to store program code for performing the following steps:
  • Establishing an MBMS bearer by the one or more predetermined base stations including the target base station and the application layer network element device includes one of the following: the system pre-configures between the one or more predetermined base stations including the target base station and the application layer network element device MBMS bearer; when the application layer network element device is started, one or more predetermined base stations including the target base station establish an MBMS bearer with the application layer network element device; at the beginning of the session, one or more reservations including the target base station The base station establishes an MBMS bearer with the application layer network element device.
  • the storage medium is further arranged to store program code for performing the following steps:
  • the system pre-configuring the MBMS bearer between the one or more predetermined base stations including the target base station and the application layer network element device comprises: one or more of the following parameters configured by the predetermined base station receiving system for the predetermined base station: user level The tunnel end identifier of the GTP-U tunnel of the general packet radio service tunneling protocol C-TEID, the multicast address of the application layer network element device, the temporary mobility group identifier TMGI, and the service area.
  • the storage medium is further arranged to store program code for performing the following steps:
  • the one or more predetermined base stations including the target base station establish an MBMS bearer with the application layer network element device, and when the application layer network element device is started, the predetermined base station receives the MBMS configured by the MBMS GW.
  • the storage medium is further arranged to store program code for performing the following steps:
  • the establishment of the MBMS bearer by the one or more predetermined base stations including the target base station and the application layer network element device includes: at the beginning of the session, the predetermined base station receives one of the following parameters of the MBMS bearer configured by the MBMS GW. Or multiple: the multicast address assigned by the application layer network element device and the source address of the application layer network element device when sending the multicast data packet.
  • the storage medium is further arranged to store program code for performing the following steps:
  • the method further includes: the source base station sends the UE identifier and the cell identifier to the application layer network element device, where the UE identifier is used to indicate that the V2X service data packet is sent. UE.
  • the target base station is a source base station; or the target base station includes a source base station and one or more related base stations different from the source base station; or the target base station includes one or more related base stations different from the source base station. .
  • one or more predetermined base stations including the target base station are source base stations.
  • the storage medium is further arranged to store program code for performing the following steps:
  • the source base station After the source base station is the source base station or the target base station includes the source base station, after the source base station sends the V2X service data packet to be transmitted to the application layer network element device, the source base station receives the to-be-transmitted transmission sent by the application layer network element device.
  • the V2X service data packet; the source base station broadcasts the V2X service data packet to be transmitted to one or more UEs accessing the source base station.
  • the application layer network element device is disposed outside the core network, and may include: the application layer network element device is integrated in the source base station, or the application layer network element device is a network connected to the source base station. Meta device.
  • the foregoing storage medium may include, but is not limited to: a USB flash drive, read only.
  • a memory Read-Only Memory, ROM for short
  • RAM Random Access Memory
  • a removable hard disk a magnetic disk, or an optical disk.
  • the application layer network element device receives the V2X service data packet to be transmitted sent by the source base station, where the application layer network element device is disposed outside the core network; and, the processor is configured according to the storage medium.
  • the application layer network element device determines the MBMS bearer corresponding to the V2X service type to which the V2X service data packet belongs, where the MBMS bearer is pre-established between the application layer network element device and the target base station; and the application layer network element device is on the determined MBMS bearer.
  • the V2X service data packet is sent to the target base station.
  • the target base station is a source base station; or the target base station includes a source base station and one or more related base stations different from the source base station; or the target base station includes one or more different from the source base station.
  • Related base stations are also included in this embodiment.
  • the processor executes according to the stored program code in the storage medium:
  • the application layer network element device Before the application layer network element device receives the V2X service data packet to be transmitted sent by the source base station, the application layer network element device establishes an MBMS bearer with one or more predetermined base stations including the target base station, where each MBMS is established.
  • the bearer corresponds to a V2X service type.
  • the processor executes according to the stored program code in the storage medium:
  • the application layer network element device establishes an MBMS bearer with one or more predetermined base stations including the target base station, and includes one of the following: a system pre-configuring between the application layer network element device and one or more predetermined base stations including the target base station.
  • MBMS bearer when the application layer network element device is started, the application layer network element device establishes an MBMS bearer with one or more predetermined base stations including the target base station; at the beginning of the session, the application layer network element device includes the target base station
  • One or more predetermined base stations establish an MBMS bearer.
  • the processor executes according to the stored program code in the storage medium:
  • the system pre-configuring the MBMS bearer between the application layer network element device and one or more predetermined base stations including the target base station includes: the system pre-configuring one or more of the following parameters for the application layer network element device: user level Tunnel Endpoint Identifier C-TEID of the General Packet Radio Service Tunneling Protocol GTP-U Tunnel, Multicast Address of the Application Layer NE Device, Temporary Mobile Group Identity TMGI, and Service Area Service Area.
  • the processor executes according to the stored program code in the storage medium:
  • the application layer network element device When the application layer network element device is started, the application layer network element device establishes an MBMS bearer with one or more predetermined base stations including the target base station, and includes: when the application layer network element device is started, the application layer network element device receives the MBMS GW configuration.
  • One or more of the following parameters of the MBMS bearer the C-TEID of the GTP-U tunnel, the multicast address of the application layer network element device, the temporary mobility group identifier TMGI, and the service area Service Area.
  • the processor executes according to the stored program code in the storage medium:
  • the application layer network element device and the one or more predetermined base stations including the target base station establish an MBMS bearer, including: at the beginning of the session, the application layer network element device receives the following parameters of the MBMS bearer configured by the MBMS GW.
  • the processor executes according to the stored program code in the storage medium:
  • the following parameters of the MBMS bearer configured by the application layer network element device include: the application layer network element device receives the session start request message sent by the MBMS GW, where the session start request message carries the following information.
  • the application layer network element device allocates the multicast address; the application layer network element device will allocate The source address of the multicast address and the application layer network element device when transmitting the multicast data packet is sent to the MBMS GW through the session start response message.
  • the processor executes according to the stored program code in the storage medium:
  • the application layer network element device When the application layer network element device receives the V2X service data packet to be transmitted by the source base station, the application layer network element device receives the UE identifier and the cell identifier sent by the source base station, where the UE identifier is used to indicate that the V2X service data is sent. Packet UE.
  • the processor executes according to the stored program code in the storage medium:
  • the method further includes: the target base station broadcasts the V2X service data packet to one or more UEs that access the target base station.
  • the application layer network element device is disposed outside the core network, and may include: the application layer network element device is integrated in the source base station, or the application layer network element device is a network connected to the source base station. Meta device.
  • the processor executes according to the stored program code in the storage medium:
  • the source base station receives the V2X service data packet sent by the UE.
  • the source base station determines, according to the received V2X service data packet, a V2X service data packet to be transmitted.
  • the source base station sends the V2X service data packet to be transmitted to the application layer network element device, to indicate that the application layer network element device is in the MBMS bearer of the multimedia broadcast multicast service corresponding to the V2X service type to which the V2X service data packet to be transmitted belongs.
  • the V2X service data packet to be transmitted is sent to the target base station, where the application layer network element device is set outside the core network, and the MBMS bearer is pre-established between the application layer network element device and the target base station.
  • the processor executes according to the stored program code in the storage medium:
  • the parameter of the received V2X service data packet includes one or more of the following: a destination IP address in the V2X service data packet; an identifier of a PDCP header in the V2X service data packet; and a bearer of the V2X service data packet Identification; a predetermined field in the V2X service packet.
  • the processor executes according to the stored program code in the storage medium:
  • the source base station determines the V2X service data packet to be transmitted from the received V2X service data packet according to the received parameter of the V2X service data packet, including: the destination IP address of the source base station in the received V2X service data packet is a predetermined IP address. At the address, the received V2X service data packet is determined to be a V2X service data packet to be transmitted; and the source base station determines the received information when the identifier of the PDCP header in the received V2X service data packet is the first predetermined identifier.
  • the V2X service data packet is a V2X service data packet to be transmitted.
  • the source base station determines that the received V2X service data packet is the V2X service to be transmitted when the identifier of the bearer in which the received V2X service data packet is located is the second predetermined identifier.
  • the data packet is determined by the source base station when the predetermined field in the received V2X service data packet is a predetermined value, and the received V2X service data packet is the V2X service data packet to be transmitted.
  • the processor executes according to the stored program code in the storage medium:
  • the method further includes: establishing, by the one or more predetermined base stations, the target base station, the MBMS bearer, and the established Each MBMS bearer corresponds to one V2X service type.
  • the processor executes according to the stored program code in the storage medium:
  • Establishing an MBMS bearer by the one or more predetermined base stations including the target base station and the application layer network element device includes one of the following: the system pre-configures between the one or more predetermined base stations including the target base station and the application layer network element device MBMS bearer; when the application layer network element device is started, one or more predetermined base stations including the target base station establish an MBMS bearer with the application layer network element device; at the beginning of the session, one or more reservations including the target base station The base station establishes an MBMS bearer with the application layer network element device.
  • the processor executes according to the stored program code in the storage medium:
  • the system pre-configuring the MBMS bearer between the one or more predetermined base stations including the target base station and the application layer network element device comprises: the predetermined base station receiving system pre-configuring one or more of the following parameters for the predetermined base station: user level
  • the tunnel end identifier of the general packet radio service tunneling protocol GTP-U tunnel is C-TEID, the multicast address of the application layer network element device, the temporary mobility group identifier TMGI, and the service area.
  • the processor executes according to the stored program code in the storage medium:
  • the one or more predetermined base stations including the target base station establish an MBMS bearer with the application layer network element device, and when the application layer network element device is started, the predetermined base station receives the MBMS configured by the MBMS GW.
  • the processor executes according to the stored program code in the storage medium:
  • the establishment of the MBMS bearer by the one or more predetermined base stations including the target base station and the application layer network element device includes: at the beginning of the session, the predetermined base station receives one of the following parameters of the MBMS bearer configured by the MBMS GW. Or multiple: the multicast address assigned by the application layer network element device and the source address of the application layer network element device when sending the multicast data packet.
  • the processor executes according to the stored program code in the storage medium:
  • the method further includes: the source base station sends the UE identifier and the cell identifier to the application layer network element device, where the UE identifier is used to indicate that the V2X service data packet is sent. UE.
  • the target base station is a source base station; or the target base station includes a source base station and one or more related base stations different from the source base station; or the target base station includes one or more related base stations different from the source base station. .
  • one or more predetermined base stations including the target base station are source base stations.
  • the processor executes according to the stored program code in the storage medium:
  • the source base station After the source base station is the source base station or the target base station includes the source base station, after the source base station sends the V2X service data packet to be transmitted to the application layer network element device, the source base station receives the to-be-transmitted transmission sent by the application layer network element device.
  • the V2X service data packet; the source base station broadcasts the V2X service data packet to be transmitted to one or more UEs accessing the source base station.
  • the application layer network element device is disposed outside the core network, and may include: the application layer network element device is integrated in the source base station, or the application layer network element device is a network connected to the source base station. Meta device.
  • all or part of the steps of the above embodiments may also be implemented by using an integrated circuit. These steps may be separately fabricated into individual integrated circuit modules, or multiple modules or steps may be fabricated into a single integrated circuit module. achieve.
  • the device/function module/functional unit in the above embodiments may be implemented by using a general-purpose computing device, which may be concentrated on a single computing device or distributed in multiple computing devices. On the network.
  • the device/function module/functional unit in the above embodiment When the device/function module/functional unit in the above embodiment is implemented in the form of a software function module and sold or used as a stand-alone product, it can be stored in a computer readable storage medium.
  • the above mentioned computer readable storage medium may be a read only memory, a magnetic disk or an optical disk or the like.
  • the embodiment of the present invention receives the V2X service data packet to be transmitted sent by the source base station by using the application layer network element device, where the application layer network element device is set outside the core network; the application layer network element device determines and the V2X service data packet belongs to The MBMS bearer corresponding to the V2X service type, where the MBMS bearer is pre-established between the application layer network element device and the target base station; the application layer network element device sends the V2X service data packet to the target base station on the determined MBMS bearer;
  • the embodiment of the present invention solves the problem that the core network of the V2X service data passes through in the related art, which causes the eNB to broadcast and transmit the V2X service data with a large delay, and the V2X service data does not need to pass through the core network element and the V2X.
  • the AS forwards locally, thereby reducing the resources of the core network and shortening the delay of forwarding V2X service data.

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Abstract

La présente invention porte sur un procédé permettant de transmettre un paquet de données de service de l'internet des véhicules ainsi que sur un dispositif correspondant, le procédé consistant à : utiliser un dispositif d'élément de réseau de couche d'application destiné à recevoir un paquet de données de service V2X qui doit être transmis, qui est envoyé depuis une station de base source, le dispositif d'élément de réseau de couche d'application étant configuré à l'extérieur d'un réseau central ; le dispositif d'élément de réseau de couche d'application déterminant le support de services de diffusion/multidiffusion multimédia (MBMS pour Multimedia Broadcast Multicast Service) correspondant au type de service V2X auquel appartient le paquet de données de service V2X, le support de service MBMS ayant été préétabli entre le dispositif d'élément de réseau de couche d'application et une station de base cible ; le dispositif d'élément de réseau de couche d'application envoyant le paquet de données de service V2X au moyen du support de service MBMS déterminé à la station de base cible.
PCT/CN2016/089233 2015-11-02 2016-07-07 Procédé permettant de transmettre un paquet de données de service de l'internet des véhicules et dispositif correspondant WO2017076055A1 (fr)

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CN112152761A (zh) * 2019-06-28 2020-12-29 华为技术有限公司 一种通信方法、装置及存储介质

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