WO2017041355A1 - 一种控制v2x业务传输的方法及装置 - Google Patents

一种控制v2x业务传输的方法及装置 Download PDF

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Publication number
WO2017041355A1
WO2017041355A1 PCT/CN2015/093534 CN2015093534W WO2017041355A1 WO 2017041355 A1 WO2017041355 A1 WO 2017041355A1 CN 2015093534 W CN2015093534 W CN 2015093534W WO 2017041355 A1 WO2017041355 A1 WO 2017041355A1
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Prior art keywords
transmission
terminal
service
scheduling mode
resource scheduling
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PCT/CN2015/093534
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English (en)
French (fr)
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雷艺学
郑倩
张云飞
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宇龙计算机通信科技(深圳)有限公司
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Publication of WO2017041355A1 publication Critical patent/WO2017041355A1/zh

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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]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/16Central resource management; Negotiation of resources or communication parameters, e.g. negotiating bandwidth or QoS [Quality of Service]

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a method and apparatus for controlling V2X service transmission.
  • V2X Vehicle and X
  • V2X The information exchange between Vehicle and X
  • V2X is the key technology of future intelligent transportation system. It enables communication between cars and cars, cars and base stations, and between cars and mobile devices. Thereby obtaining a series of traffic information such as real-time road conditions, road information, pedestrian information, etc., thereby improving driving safety, reducing congestion, and improving traffic efficiency. It may include information exchange between vehicles and vehicles, information exchange between vehicles and infrastructure (V2I), and information exchange between vehicles and nomadic devices (V2N).
  • V2I information exchange between vehicles and infrastructure
  • V2N information exchange between vehicles and nomadic devices
  • V2X applications will improve safety, vehicle traffic and energy consumption. V2X is also conducive to future cruise-assisted roads and autonomous driving.
  • the vehicle status warning application can broadcast information such as faults/out of control inside the vehicle to the outside in time, and vehicles such as ambulances can broadcast messages of type, driving route and the like to pass quickly; and traffic accident warning applications can be used as vehicles. Broadcasting in time after an accident, and notifying nearby vehicles when a dangerous situation is found on the road; automatic/unmanned driving, you can obtain dynamic information of vehicles and roads ahead by communication between the vehicle and the vehicle to enhance the current automatic Cruise control performance. These applications can significantly reduce traffic accidents while reducing accident-related costs.
  • DSRC Dedicated Short Range Communications
  • the technical problem to be solved by the embodiments of the present invention is to provide a method and an apparatus for transmitting a V2X service. To solve the problem that the transmission requirements of different V2X services cannot be met and the transmission of service information is unreasonable.
  • a first aspect of the embodiments of the present invention provides a method for controlling transmission of a V2X service, including:
  • the transmission protocol includes a transmission protocol based on D2D discovery technology and a transmission protocol based on D2D communication technology;
  • the resource scheduling mode includes a base station scheduling mode and a resource pool mode.
  • the method further includes:
  • the transmitted V2X service message is a D2D discovery message, determining a V2X transmission mode according to the transmission protocol, a resource scheduling mode, and an object type of the V2X service transmission, where the object type of the V2X service transmission includes a specified object and an unspecified object. ;
  • the obtaining, by the terminal, the transmission indicator parameters of the V2X service including:
  • the latest transmission indicator parameter is saved in the preset parameter list of the terminal, the latest transmission indicator parameter is directly obtained from the terminal;
  • the terminal and the V2X application server perform information interaction to obtain the latest transmission indicator parameter, and then obtain the latest transmission from the terminal. index parameter.
  • the method further includes:
  • the device sends an acquisition request to the home subscription server and the policy and charging rule function unit to obtain the service authorization information of the terminal.
  • the selecting a transmission protocol according to the transmission indicator parameter includes:
  • the V2X application server notifies the terminal to the V2X application server.
  • the method further includes:
  • the transmission indicator parameter includes at least one of the following:
  • the transmission protocol is selected according to the transmission indicator parameter, if the transmission data amount reaches the preset data amount threshold, the transmission protocol based on the D2D communication technology is selected, and if the transmission data amount does not reach the preset number threshold, the selection is performed. Transmission protocol based on D2D discovery technology.
  • the resource scheduling mode is determined according to the transmission indicator parameter and the transmission protocol, if the transmission delay reaches a preset delay threshold, the resource scheduling mode is determined to be a resource pool mode, and if the transmission delay does not reach the preset time, After the threshold is extended, the resource scheduling mode is determined to be a base station scheduling mode.
  • the resource scheduling mode is determined to be a resource pool mode.
  • a second aspect of the embodiments of the present invention provides an apparatus for controlling transmission of a V2X service, including:
  • An obtaining unit configured to acquire a transmission indicator parameter of the terminal transmitting the V2X service
  • a selecting unit configured to select a transmission protocol according to the transmission indicator parameter, where the transmission protocol includes a transmission protocol based on D2D discovery technology and a transmission protocol based on D2D communication technology;
  • a determining unit configured to determine a resource scheduling mode according to the transmission indicator parameter and the transmission protocol, or receive a resource scheduling mode configured by a base station, so that the terminal completes V2X service transmission according to the transmission protocol and the resource scheduling mode;
  • the resource scheduling mode includes a base station scheduling mode and a resource pool mode.
  • the determining unit is further configured to:
  • the transmitted V2X service message is a D2D discovery message, determining a V2X transmission mode according to the transmission protocol, a resource scheduling mode, and an object type of the V2X service transmission, where the object type of the V2X service transmission includes a specified object and an unspecified object. ;
  • the obtaining unit is specifically configured to:
  • the terminal and the V2X application server perform information interaction to obtain the latest transmission indicator parameter, and then obtain the latest transmission from the terminal. index parameter.
  • the device further comprises:
  • An authentication and authorization unit configured to perform authentication and authorization on the terminal according to the transmission indicator parameter
  • the device sends an acquisition request to the home subscription server and the policy and charging rule function unit to obtain the service authorization information of the terminal.
  • the selection unit is specifically configured to:
  • the determining unit is further configured to:
  • the transmission indicator parameter includes at least one of the following:
  • the selection unit is specifically configured to:
  • the transmission protocol is selected according to the transmission indicator parameter, if the transmission data amount reaches the preset data amount threshold, the transmission protocol based on the D2D communication technology is selected, and if the transmission data amount does not reach the preset number threshold, the selection is based on the D2D. Discover the transmission protocol of the technology.
  • the determining unit is specifically configured to:
  • the resource scheduling mode is determined according to the transmission indicator parameter and the transmission protocol, if the transmission delay reaches a preset delay threshold, the resource scheduling mode is determined to be a resource pool mode, and if the transmission delay does not reach the preset delay threshold Then, the resource scheduling mode is determined to be a base station scheduling mode.
  • the determining unit is further configured to:
  • the resource scheduling mode is determined to be a resource pool mode.
  • the transmission protocol parameters of the V2X service are transmitted by the terminal to select a transmission protocol, and the transmission protocol is based on the D2D technology, which can fully satisfy the requirements of different V2X services for the transmission indicator; and then the resource scheduling mode is determined according to the transmission indicator parameter and the transmission protocol, which may further Improve the targeted communication of different V2X service transmission requirements; combine the appropriate transmission protocol and resource scheduling mode to control and manage different V2X service transmissions, and enable service information transmission under the premise of fully satisfying the transmission requirements of different V2X services.
  • the configuration is more reasonable, which is conducive to the full use of system resources, to provide users with higher speed, more stable and more scientific V2X service transmission, thereby improving traffic safety.
  • FIG. 1 is a schematic flow chart of a first embodiment of a method for controlling transmission of a V2X service according to the present invention
  • FIG. 2 is a schematic flow chart of a second embodiment of a method for controlling transmission of a V2X service according to the present invention
  • FIG. 3 is a schematic flow chart of a third embodiment of a method for controlling transmission of a V2X service according to the present invention.
  • FIG. 4 is a schematic diagram showing the composition of a first embodiment of an apparatus for controlling V2X service transmission according to the present invention
  • FIG. 5 is a schematic diagram showing the composition of a second embodiment of an apparatus for controlling V2X service transmission according to the present invention.
  • a transmission protocol based on the Device-to-Device (D2D) discovery technology in the embodiment of the present invention in which the application layer message of the V2X can be used as the payload of the D2D discovery message through the physical layer.
  • the Physical Layer Sidelink Discovery Channel (PSDCH) is broadcasted; and the D2D communication technology based transport protocol, in which V2X application layer messages can be controlled as D2D communication data at the physical layer.
  • the base station scheduling mode in the embodiment of the present invention is that the base station actively performs resource scheduling according to the resources that the base station can actively schedule according to the resources that can be scheduled by the base station; and the resource pool mode, the resource pool is composed of some resources, and the different terminals pass the resources.
  • the resource pool manager requests to use the resource in the resource pool. When it is used, the resource pool manager attaches the occupied identifier to the used resource. When it is used, the resource is recycled to the resource pool and the occupied identifier is released.
  • the entity that controls the V2X special service transmission on the network side in the embodiment of the present invention may be implemented based on a D2D functional entity, that is, a Proximity Based Services Function (ProSe Function).
  • ProSe Function Proximity Based Services Function
  • This method is mainly suitable for V2X service transmission using D2D technology.
  • the V2X related control can be deployed independently of the D2D functional entity or integrated, but from the perspective of protocol simplification and reuse, the PC3 interface between the terminal and the ProSe Function can be reused.
  • the functional entity or device that controls the V2X service transmission can also be set independently, which is not limited in the embodiment of the present invention.
  • the Road Side Unit can be implemented by a stationary terminal or by a small base station.
  • V2X service transmission including V2V and V2I, can be transmitted through the PC5 interface based on the D2D protocol.
  • the terminal described in the present invention may be a mobile terminal held by a user supporting the D2D protocol, or may be an in-vehicle terminal integrated in the vehicle.
  • FIG. 1 is a schematic flowchart of a first embodiment of a method for controlling transmission of a V2X service according to the present invention.
  • the method includes the following steps:
  • the transmission indicator parameter includes at least one of the following:
  • the corresponding transmission indicator parameters may be the same or different.
  • the transmission reliability of vehicle status alarms and traffic accident alarms is 99%, while the transmission delay of vehicle status alarms is not 100ms, and the transmission delay of traffic accident alarms is shorter, 20ms.
  • the acquiring the transmission indicator parameter of the terminal includes:
  • the latest transmission indicator parameter is saved in the preset parameter list of the terminal, the latest transmission indicator parameter is directly obtained from the terminal;
  • the terminal and the V2X application server perform information interaction to obtain the latest transmission indicator parameter, and then from the terminal. Obtain the latest transmission indicator parameter.
  • the signaling interactions involved here can be done through the PC1 interface.
  • the preset parameter list can be updated in real time, and the updated information can be sorted and saved in chronological order.
  • the transmission indicator parameter may be generated by the terminal, or may be generated by the V2X application server and sent to the terminal, which is not limited in the embodiment of the present invention.
  • the transmission protocol includes a transmission protocol based on D2D discovery technology and a transmission protocol based on D2D communication technology.
  • selecting a transmission protocol according to the transmission indicator parameter including:
  • the terminal selects a transmission protocol and notifies the terminal of the selected transmission protocol, and may specifically notify through the PC3 interface, or select a transmission protocol for the terminal according to the comparison result, and notify the V2X of the selected transmission protocol.
  • the application server is configured to notify the terminal by the V2X application server, and specifically communicates with the V2X application server through the PC1 interface.
  • the preset threshold value may be set by the device manufacturer at the time of leaving the device, or a plurality of setting options may be provided for the user to select, or may be customized by the user, which is not limited by the embodiment of the present invention.
  • transmission indicator parameter includes at least one of the following:
  • the transmission protocol when the transmission protocol is selected according to the transmission indicator parameter, if the transmission data amount reaches the preset data amount threshold, the transmission protocol based on the D2D communication technology is selected, and if the transmission data amount does not reach the preset number threshold, the selection is performed. Transmission protocol based on D2D discovery technology.
  • V2X application layer messages can be transmitted as D2D communication data in PSCCH and PSSCH, with larger bandwidth, longer delay, higher power consumption, and faster transmission speed.
  • the application layer message of the V2X can be used as the payload of the D2D discovery message, and is broadcasted through the PSDCH. , small bandwidth, short delay, low power consumption, suitable for small data transmission.
  • S103 Determine a resource scheduling mode according to the transmission indicator parameter and the transmission protocol, or receive a resource scheduling mode configured by the base station, so that the terminal completes V2X service transmission according to the transmission protocol and the resource scheduling mode.
  • the resource scheduling mode includes a base station scheduling mode and a resource pool mode.
  • the resource scheduling mode may be determined by the device that controls the V2X service transmission according to the determined transmission indicator parameter and the transmission protocol, and the scheduling mode may be determined by the base station and notified to the device.
  • the resource scheduling mode is determined according to the transmission indicator parameter and the transmission protocol, if the transmission delay reaches a preset delay threshold, the resource scheduling mode is determined to be a resource pool mode, and if the transmission delay does not reach the preset delay The threshold determines that the resource scheduling mode is the base station scheduling mode.
  • the base station scheduling mode can be used to implement fast resource configuration and fast service transmission.
  • the resource pool mode can be adopted, and the terminal requests resources to enable the user to perform service transmission again.
  • determining that the resource scheduling mode is a resource pool mode is a resource pool mode.
  • the resource pool mode can alleviate the overhead of scheduling signaling to the base station in the base station scheduling mode; and considering the service load of the device that controls the V2X service transmission, the number of terminals increases, and the proxy device can also be introduced into the network. To achieve load sharing, increase the number of terminals that the system can support.
  • the device that can control the V2X service transmission can notify the terminal through the PC3 interface, and the base station can notify the terminal by using the existing Radio Resource Control (RRC) message through the Uu interface.
  • RRC Radio Resource Control
  • the embodiment is not limited at all.
  • the transmission protocol parameters of the V2X service are transmitted by the terminal to select a transmission protocol, and the transmission protocol is based on the D2D technology, which can fully satisfy the requirements of different V2X services for the transmission indicator; and then the resource scheduling mode is determined according to the transmission indicator parameter and the transmission protocol, which may further Improve the targeted communication of different V2X service transmission requirements; combine the appropriate transmission protocol and resource scheduling mode to control and manage different V2X service transmissions, and enable service information transmission under the premise of fully satisfying the transmission requirements of different V2X services.
  • the configuration is more reasonable, which is conducive to the full use of system resources, to provide users with higher speed, more stable and more scientific V2X service transmission, thereby improving traffic safety.
  • FIG. 2 is a schematic flowchart of a second embodiment of a method for controlling transmission of a V2X service according to the present invention.
  • the method includes the following steps:
  • the transmission indicator parameter includes at least one of the following:
  • the transmission protocol includes a transmission protocol based on D2D discovery technology and a transmission protocol based on D2D communication technology.
  • the transmission protocol based on the D2D communication technology may also include a special case in the specific application, that is, the D2D discovery message is transmitted by using the channel of the D2D communication, hereinafter referred to as the D2D discovery message. "D2D discovery with D2D communication".
  • S203 Determine a resource scheduling mode or a resource scheduling mode configured by the receiving base station according to the transmission indicator parameter and the transmission protocol.
  • V2X service message is a D2D discovery message
  • the object type of the V2X service transmission includes a specified object and an unspecified object.
  • the specified object is an object that indicates that the V2X service transmission to be performed by the terminal has an explicit target.
  • the object to be sent by the message may be specified, and the object here may be a single object. It can be a type of object, such as sending a photo of a wanted criminal to a police car with a police car logo, which can also be regarded as a designated object; and no designated object is generally a broadcast message, such as a broadcast road hazard warning, to inform all vehicle roads within the signal coverage. Dangerous situation.
  • the transmitted V2X service message is a D2D discovery message
  • the D2D discovery message is transmitted through the D2D discovery channel, and the other is based on the D2D communication technology.
  • the transmission protocol transmits D2D discovery messages through the channel of D2D communication.
  • the efficiency of V2X service transmission can be further improved by limiting the object type.
  • whether the object type is specified is meaningless, so its object type is not applicable (Not Applicable, N/A for short).
  • the V2X transmission mode can be determined, and three kinds of information can be freely combined, and 10 combinations in the following list are the more common 10 transmission modes.
  • the information carried therein includes the resource scheduling mode, object type, and transmission protocol described in the above table.
  • the object type of the V2X service transmission is introduced, and the division of the object type can further subdivide the service, and also facilitate more precise control when controlling the service transmission.
  • FIG. 3 it is a schematic flowchart of a third embodiment of a method for controlling transmission of a V2X service according to the present invention.
  • the method includes the following steps:
  • the transmission indicator parameter includes at least one of the following:
  • the authentication can ensure the sender of the transmission indicator parameters to ensure the necessity and security of the subsequent process execution, and the authorization can meet the requirements of each terminal when the resources are sufficient based on the resource availability, and the resources are tight or insufficient.
  • the authorization is stopped, the normal service transmission of the authorized terminal is ensured.
  • the involved signaling interaction may be transmitted through the PC2 interface or the PC3 interface, and if the device that controls the V2X service transmission does not have the service authorization information of the terminal, The device sends an acquisition request to the home subscriber server (HSS) and the policy and charging rule function (PCRF) through the interface of the PC4 to obtain the service authorization information of the terminal.
  • HSS home subscriber server
  • PCRF policy and charging rule function
  • the transmission protocol includes a transmission protocol based on D2D discovery technology and a transmission protocol based on D2D communication technology.
  • S305 Determine, according to the transmission indicator parameter and the transmission protocol, a resource scheduling mode or a resource scheduling mode configured by the receiving base station, so that the terminal completes V2X service transmission according to the transmission protocol and the resource scheduling mode.
  • the V2X service transmission can be completed according to the transmission protocol and the resource scheduling mode.
  • the terminal includes:
  • the obtaining unit 100 is configured to acquire a transmission indicator parameter of the terminal transmitting the V2X service.
  • the selecting unit 200 is configured to select a transmission protocol according to the transmission indicator parameter, where the transmission protocol includes a transmission protocol based on the D2D discovery technology and a transmission protocol based on the D2D communication technology;
  • a determining unit 300 configured to determine a resource scheduling mode according to the transmission indicator parameter and the transmission protocol, or receive a resource scheduling mode configured by a base station, so that the terminal completes V2X service transmission according to the transmission protocol and the resource scheduling mode;
  • the resource scheduling mode includes a base station scheduling mode and a resource pool mode.
  • the determining unit 300 is further configured to:
  • the transmitted V2X service message is a D2D discovery message, determining a V2X transmission mode according to the transmission protocol, a resource scheduling mode, and an object type of the V2X service transmission, where the object type of the V2X service transmission includes a specified object and an unspecified object. ;
  • the obtaining unit 200 is specifically configured to:
  • the terminal and the V2X application server perform information interaction to obtain the latest transmission indicator parameter, and then obtain the latest transmission from the terminal. index parameter.
  • the selecting unit 200 is specifically configured to:
  • the determining unit 300 is further configured to:
  • the transmission indicator parameter includes at least one of the following:
  • the selecting unit 200 is specifically configured to:
  • the transmission protocol is selected according to the transmission indicator parameter, if the transmission data amount reaches the preset data amount threshold, the transmission protocol based on the D2D communication technology is selected, and if the transmission data amount does not reach the preset number threshold, the selection is based on the D2D. Discover the transmission protocol of the technology.
  • the determining unit 300 is specifically configured to:
  • the resource scheduling mode is determined according to the transmission indicator parameter and the transmission protocol, if the transmission delay reaches a preset delay threshold, the resource scheduling mode is determined to be a resource pool mode, and if the transmission delay does not reach the preset delay threshold Then, the resource scheduling mode is determined to be a base station scheduling mode.
  • the determining unit 300 is further configured to:
  • the resource scheduling mode is determined to be a resource pool mode.
  • FIG. 5 is a schematic diagram of a second embodiment of an apparatus for controlling transmission of a V2X service according to the present invention.
  • the apparatus according to the embodiment of the present invention further includes :
  • the authentication and authorization unit 400 is configured to perform authentication and authorization on the terminal according to the transmission indicator parameter
  • the rule function unit sends an acquisition request to obtain the service authorization information of the terminal.
  • the obtaining unit 100, the selecting unit 200, the determining unit 300, and the authentication and authorization unit 400 may exist independently or may be integrated, and the obtaining unit 100, the selecting unit 200, the determining unit 300 or the authentication and authorization unit 400 may be independent of the device in the form of hardware.
  • the processor is separately provided and can be in the form of a microprocessor; it can also be embedded in the processor of the device in hardware, or can be stored in the memory of the device in software to facilitate the device.
  • the processor invokes an operation corresponding to the above obtaining unit 100, selecting unit 200, determining unit 300, and authentication authority unit 400.
  • the determining unit 300 may be a processor of the apparatus, and the obtaining unit 100, the selecting unit 200, and the authentication authority unit
  • the function of the 400 can be embedded in the processor, or can be set separately from the processor, or can be stored in the memory in the form of software, and the function is called by the processor.
  • the embodiment of the invention does not impose any limitation.
  • the above processor may be a central processing unit (CPU), a microprocessor, a single chip microcomputer, or the like.
  • the present invention has the following advantages:
  • the transmission protocol parameters of the V2X service are transmitted by the terminal to select a transmission protocol, and the transmission protocol is based on the D2D technology, which can fully satisfy the requirements of different V2X services for the transmission indicator; and then the resource scheduling mode is determined according to the transmission indicator parameter and the transmission protocol, which may further Improve the targeted communication of different V2X service transmission requirements; combine the appropriate transmission protocol and resource scheduling mode to control and manage different V2X service transmissions, and enable service information transmission under the premise of fully satisfying the transmission requirements of different V2X services.
  • the configuration is more reasonable, which is conducive to the full use of system resources, to provide users with higher speed, more stable and more scientific V2X service transmission, thereby improving traffic safety.
  • the storage medium may be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).

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Abstract

本发明实施例公开了一种控制V2X业务传输的方法,包括:获取终端传输V2X业务的传输指标参数;根据所述传输指标参数选择传输协议,所述传输协议包括基于D2D发现技术的传输协议和基于D2D通信技术的传输协议;根据所述传输指标参数以及所述传输协议确定资源调度模式或者接收基站配置的资源调度模式,以便所述终端根据所述传输协议和所述资源调度模式完成V2X业务传输;其中,所述资源调度模式包括基站调度模式和资源池模式。本发明实施例还公开了一种控制V2X业务传输的装置。采用本发明,可合理配置不同V2X业务信息的传输方式,可满足不同V2X业务的传输需求。

Description

一种控制V2X业务传输的方法及装置 技术领域
本发明涉及通信技术领域,尤其涉及一种控制V2X业务传输的方法及装置。
背景技术
车与外界(Vehicle to X,简称V2X)的信息交换,是未来智能交通运输系统的关键技术。它使得车与车、车与基站、车与移动设备之间能够通信。从而获得实时路况、道路信息、行人信息等一系列交通信息,从而提高驾驶安全性,减少拥堵,提高交通效率等。其可以包括车辆与车辆(Vehicle to Vehicle)的信息交换,车辆与基础设施(Vehicle to Infrastructure,简称V2I)的信息交换以及车辆与移动设备(Vehicle to nomadic devices,简称V2N)的信息交换。
许多V2X应用将改善安全性、车辆通行和能耗情况。V2X也有利于实现未来的巡航辅助公路和自动驾驶。例如,车辆状态警告应用,可以将车辆内部的故障/失控等信息及时对外广播,而诸如救护车等车辆可以将类型、行车路线等消息对外广播以快速通过;而交通事故警告应用,可以当车辆发生事故后及时对外广播,而当发现道路存在危险状况时通知附近车辆;自动/无人驾驶应用,则可以通过车与车之间的通信,获取前方车辆和道路的动态信息,以增强当前自动巡航的控制性能。这些应用可以大量减少交通事故,同时降低事故相关成本。在现有技术中,通常采用专用短程通信技术(Dedicated Short Range Communications,简称DSRC)来传输V2X业务,但是其传输指标无法满足V2X业务对传输指标如信息发送频率、广播周期、通信距离等的需求,且对于不同V2X业务采用相同的方式进行传输,也不利于业务信息传输的合理配置。
发明内容
本发明实施例所要解决的技术问题在于,提供一种传输V2X业务的方法及装置。以解决不同V2X业务传输需求无法满足,业务信息传输配置不合理的问题。
为了解决上述技术问题,本发明实施例第一方面提供了一种控制V2X业务传输的方法,包括:
获取终端传输V2X业务的传输指标参数;
根据所述传输指标参数选择传输协议,所述传输协议包括基于D2D发现技术的传输协议和基于D2D通信技术的传输协议;
根据所述传输指标参数以及所述传输协议确定资源调度模式或者接收基站配置的资源调度模式,以便所述终端根据所述传输协议和所述资源调度模式完成V2X业务传输;
其中,所述资源调度模式包括基站调度模式和资源池模式。
其中,在根据所述传输指标参数以及所述传输协议确定资源调度类型之后,还包括:
若传输的V2X业务消息为D2D发现消息,则根据所述传输协议、资源调度模式以及V2X业务传输的对象类型确定V2X传输模式,其中,所述V2X业务传输的对象类型包括指定对象和无指定对象;
将所述V2X传输模式发送给所述终端,以便所述终端根据所述V2X传输模式中的携带的信息完成V2X业务传输。
其中,所述获取终端传输V2X业务的传输指标参数,包括:
若所述终端的预设参数列表中保存了最新的传输指标参数,则直接从所述终端获取所述最新的传输指标参数;
若所述终端的预设参数列表中未保存最新的传输指标参数,则由所述终端与V2X应用服务器进行信息交互获取到最新的传输指标参数后,再从所述终端获取所述最新的传输指标参数。
其中,在获取终端传输V2X业务的传输指标参数之后,还包括:
根据所述传输指标参数对所述终端进行认证和授权;
若没有所述终端的业务授权信息,则向归属签约用户服务器和策略与计费规则功能单元发送获取请求,获取所述终端的业务授权信息。
其中,根据所述传输指标参数选择传输协议,包括:
将所述传输指标参数与预设阈值比较;
根据比较的结果为所述终端选择传输协议并将选择的传输协议通知所述终端,或者根据比较的结果为所述终端选择传输协议并将选择的传输协议通知 V2X应用服务器以便所述V2X应用服务器通知所述终端。
其中,在根据所述传输指标参数以及所述传输协议确定资源调度模式或者接收基站配置的资源调度模式之前,还包括:
获取所述基站的资源池和两种资源调度模式的配置信息。
其中,所述传输指标参数包括以下至少一种:
传输时延、传输带宽、传输数据量及传输可靠度。
其中,在根据所述传输指标参数选择传输协议时,若传输数据量达到预设数据量阈值,则选择基于D2D通信技术的传输协议,若传输数据量未达到所述预设数量阈值,则选择基于D2D发现技术的传输协议。
其中,在根据所述传输指标参数以及所述传输协议确定资源调度模式时,若传输时延达到预设时延阈值,则确定资源调度模式为资源池模式,若传输时延未达到预设时延阈值,则确定资源调度模式为基站调度模式。
其中,若终端数量达到预设数量阈值时,则确定资源调度模式为资源池模式。
本发明实施例第二方面提供了一种控制V2X业务传输的装置,包括:
获取单元,用于获取终端传输V2X业务的传输指标参数;
选择单元,用于根据所述传输指标参数选择传输协议,所述传输协议包括基于D2D发现技术的传输协议和基于D2D通信技术的传输协议;
确定单元,用于根据所述传输指标参数以及所述传输协议确定资源调度模式或者接收基站配置的资源调度模式,以便所述终端根据所述传输协议和所述资源调度模式完成V2X业务传输;
其中,所述资源调度模式包括基站调度模式和资源池模式。
其中,所述确定单元还用于:
若传输的V2X业务消息为D2D发现消息,则根据所述传输协议、资源调度模式以及V2X业务传输的对象类型确定V2X传输模式,其中,所述V2X业务传输的对象类型包括指定对象和无指定对象;
将所述V2X传输模式发送给所述终端,以便所述终端根据所述V2X传输模式中的携带的信息完成V2X业务传输。
其中,所述获取单元具体用于:
若所述终端的预设参数列表中保存了最新的传输指标参数,则直接从所述 终端获取所述最新的传输指标参数;
若所述终端的预设参数列表中未保存最新的传输指标参数,则由所述终端与V2X应用服务器进行信息交互获取到最新的传输指标参数后,再从所述终端获取所述最新的传输指标参数。
其中,所述装置还包括:
认证授权单元,用于根据所述传输指标参数对所述终端进行认证和授权;
若没有所述终端的业务授权信息,则向归属签约用户服务器和策略与计费规则功能单元发送获取请求,获取所述终端的业务授权信息。
其中,所述选择单元具体用于:
将所述传输指标参数与预设阈值比较;
根据比较的结果为所述终端选择传输协议并将选择的传输协议通知所述终端,或者根据比较的结果为所述终端选择传输协议并将选择的传输协议通知V2X应用服务器以便所述V2X应用服务器通知所述终端。
其中,所述确定单元还用于:
在根据所述传输指标参数以及所述传输协议确定资源调度模式或者接收基站配置的资源调度模式之前,获取所述基站的资源池和两种资源调度模式的配置信息。
其中,所述传输指标参数包括以下至少一种:
传输时延、传输带宽、传输数据量及传输可靠度。
其中,所述选择单元具体用于:
在根据所述传输指标参数选择传输协议时,若传输数据量达到预设数据量阈值,则选择基于D2D通信技术的传输协议,若传输数据量未达到所述预设数量阈值,则选择基于D2D发现技术的传输协议。
其中,所述确定单元具体用于:
在根据所述传输指标参数以及所述传输协议确定资源调度模式时,若传输时延达到预设时延阈值,则确定资源调度模式为资源池模式,若传输时延未达到预设时延阈值,则确定资源调度模式为基站调度模式。
其中,所述确定单元还用于:
若终端数量达到预设数量阈值时,则确定资源调度模式为资源池模式。
实施本发明实施例,具有如下有益效果:
通过获取终端传输V2X业务的传输指标参数以选择传输协议,且传输协议均基于D2D技术,可以充分满足不同V2X业务对传输指标的需求;然后根据传输指标参数和传输协议确定资源调度模式,可进一步提升对不同V2X业务传输需求的针对性满足;结合合适的传输协议和资源调度模式,可以实现对不同V2X业务传输的控制和管理,在充分满足不同V2X业务传输需求的前提下,使得业务信息传输的配置更加合理,利于充分使用系统资源,为用户提供更高速更稳定更科学的V2X业务传输,从而提高了交通安全度。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本发明控制V2X业务传输的方法的第一实施例的流程示意图;
图2是本发明控制V2X业务传输的方法的第二实施例的流程示意图;
图3是本发明控制V2X业务传输的方法的第三实施例的流程示意图;
图4是本发明控制V2X业务传输的装置的第一实施例的组成示意图;
图5是本发明控制V2X业务传输的装置的第二实施例的组成示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明实施例中所述的基于设备与设备(Device-to-Device,简称D2D)发现技术的传输协议,在此协议下可以将V2X的应用层消息作为D2D发现消息的净荷,通过物理层侧向发现通道(Physical layer Sidelink Discovery Channel,简称PSDCH)以广播的方式发出;而基于D2D通信技术的传输协议,在此协议下可以将V2X的应用层消息作为D2D通信数据在物理层侧向控制信道(Physical layer Sidelink Control Channel,简称PSCCH)和物理层侧向共享信道(Physical  layer Sidelink Shared Channel,简称PSSCH)传输。
本发明实施例中所述的基站调度模式即由基站根据其所能调度的资源主动为其覆盖的终端进行资源调度;而资源池模式,则是由部分资源组成资源池,不同的终端通过资源请求来使用资源池中的资源,在使用时,资源池管理器为已使用的资源附上占用的标识,当使用完后,将该资源回收至资源池并解除占用的标识。
在V2X业务传输的场景下,本发明实施例中网络侧的控制V2X特业务传输的实体可以基于D2D功能实体即临近服务功能实体(Proximity Based Services Function,简称ProSe Function)实现,对其进行增强后可用作车联网控制的实体。这种方式主要适合于用D2D技术来进行V2X业务传输。V2X的相关控制可以与D2D功能实体独立部署,也可以集成设置,但从协议简化和重用的角度出发,可以重用终端与ProSe Function之间的PC3接口。当然,控制V2X业务传输的功能实体或装置也可以独立设置,本发明实施例不作任何限定。路侧单元(Road Side Unit,简称RSU)可以由静止的终端来实现,也可以由小型的基站来实现。V2X业务传输包括V2V和V2I都可以采用基于D2D协议即通过PC5接口来进行传输。在本发明中所述的终端可以是支持D2D协议的用户手持的移动终端,也可以是集成在车辆内的车载终端。
请参照图1,为本发明控制V2X业务传输的方法的第一实施例的流程示意图,在本实施例中,所述方法包括以下步骤:
S101,获取终端传输V2X业务的传输指标参数。
其中,所述传输指标参数包括以下至少一种:
传输时延、传输带宽、传输数据量及传输可靠度。
针对不同的V2X业务,其对应的传输指标参数可能相同也可能不同。例如,车辆状态告警和交通事故告警的传输可靠度均为99%,而车辆状态告警的传输时延未100ms,而交通事故告警的传输时延更短,为20ms。
可选地,所述获取终端的传输指标参数,包括:
若所述终端的预设参数列表中保存了最新的传输指标参数,则直接从所述终端获取所述最新的传输指标参数;
若所述终端的预设参数列表中未保存最新的传输指标参数,则由所述终端与V2X应用服务器进行信息交互获取到最新的传输指标参数后,再从所述终端 获取所述最新的传输指标参数。此处涉及的信令交互可通过PC1接口完成。
其中,预设参数列表可以实时更新,且更新的信息可以按照时间先后顺序进行排序保存。此处的传输指标参数可以由终端生成,也可以由V2X应用服务器生成并发送给终端,本发明实施例不作任何限定。
S102,根据所述传输指标参数选择传输协议。
其中,所述传输协议包括基于D2D发现技术的传输协议和基于D2D通信技术的传输协议。
可选地,根据所述传输指标参数选择传输协议,包括:
将所述传输指标参数与预设阈值比较;
根据比较的结果为所述终端选择传输协议并将选择的传输协议通知所述终端,具体可通过PC3接口进行通知,或者根据比较的结果为所述终端选择传输协议并将选择的传输协议通知V2X应用服务器以便所述V2X应用服务器通知所述终端,具体可通过PC1接口与V2X应用服务器进行通信。
需要说明的是,此处的预设阈值可以由设备生产厂商在设备出厂时设置或者提供若干设置选项供用户选择,也可以由用户自定义,本发明实施例不作任何限定。
而所述传输指标参数包括以下至少一种:
传输时延、传输带宽、传输数据量及传输可靠度。
例如,在根据所述传输指标参数选择传输协议时,若传输数据量达到预设数据量阈值,则选择基于D2D通信技术的传输协议,若传输数据量未达到所述预设数量阈值,则选择基于D2D发现技术的传输协议。
这是因为,基于D2D通信技术的传输协议下,可以将V2X的应用层消息作为D2D通信数据在PSCCH和PSSCH传输,带宽更大,时延更长,功耗更高,传输速度更快,适用于大型数据的传输;而传输数据量较小时,则可以基于D2D发现技术的传输协议进行传输,此时,可以将V2X的应用层消息作为D2D发现消息的净荷,通过PSDCH以广播的方式发出,带宽小,时延短,功耗低,适用于小型数据的传输。
S103,根据所述传输指标参数以及所述传输协议确定资源调度模式或者接收基站配置的资源调度模式,以便所述终端根据所述传输协议和所述资源调度模式完成V2X业务传输。
其中,所述资源调度模式包括基站调度模式和资源池模式。
可选地,此处可以由控制V2X业务传输的装置根据确定的传输指标参数和传输协议来确定资源调度模式,也可以由基站决定调度模式并告知该装置。
而在根据所述传输指标参数以及所述传输协议确定资源调度模式时,若传输时延达到预设时延阈值,则确定资源调度模式为资源池模式,若传输时延未达到预设时延阈值,则确定资源调度模式为基站调度模式。
这是因为,时延短的业务一般需要快速传输,其信息重要性较高,因此可采用基站调度模式以实现资源的快速配置,业务传输的快速完成;而对于时延较长的业务,则可以采用资源池模式,由终端请求资源使用户再进行业务传输。
可选地,若终端数量达到预设数量阈值时,则确定资源调度模式为资源池模式。
当终端数量很多的时候,采用资源池模式可减轻基站调度模式下对基站调度信令的开销;且考虑到控制V2X业务传输的装置的业务负荷随着终端数量上升,还可以网络中引入代理设备来实现负荷的分担,提高系统可支持的终端数量。
且资源调度模式确定后,可以由控制V2X业务传输的装置通过PC3接口通知终端,还可以由基站通过Uu口使用现有的无线资源控制协议(Radio Resource Control,简称RRC)消息通知终端,本发明实施例不作任何限定。
通过获取终端传输V2X业务的传输指标参数以选择传输协议,且传输协议均基于D2D技术,可以充分满足不同V2X业务对传输指标的需求;然后根据传输指标参数和传输协议确定资源调度模式,可进一步提升对不同V2X业务传输需求的针对性满足;结合合适的传输协议和资源调度模式,可以实现对不同V2X业务传输的控制和管理,在充分满足不同V2X业务传输需求的前提下,使得业务信息传输的配置更加合理,利于充分使用系统资源,为用户提供更高速更稳定更科学的V2X业务传输,从而提高了交通安全度。
请参照图2,为本发明控制V2X业务传输的方法的第二实施例的流程示意图,在本实施例中,所述方法包括以下步骤:
S201,获取终端传输V2X业务的传输指标参数。
其中,所述传输指标参数包括以下至少一种:
传输时延、传输带宽、传输数据量及传输可靠度。
S202,根据所述传输指标参数选择传输协议。
其中,所述传输协议包括基于D2D发现技术的传输协议和基于D2D通信技术的传输协议。而出于通道数量或占用情况等因素的考虑,此处基于D2D通信技术的传输协议在具体应用时还可以包含一种比较特殊的情况,即借助D2D通信的信道来传输D2D发现消息,以下简称“借助D2D通信的D2D发现”。
S203,根据所述传输指标参数以及所述传输协议确定资源调度模式或者接收基站配置的资源调度模式。
S204,若传输的V2X业务消息为D2D发现消息,则根据所述传输协议、资源调度模式以及V2X业务传输的对象类型确定V2X传输模式。
其中,所述V2X业务传输的对象类型包括指定对象和无指定对象。
具体地,指定对象即说明终端将要进行的V2X业务传输的对象具备明确的目标,例如,终端A想要发送一个视频给车辆B,则可以指定消息发送的对象,此处的对象可以是单个也可以是一类对象,如发送通缉罪犯的照片给具备警车标识的警车,同样可视为指定对象;而无指定对象一般为广播消息,如广播道路危险警告,告知信号覆盖范围内的所有车辆道路的危险状况。
其中,若传输的V2X业务消息为D2D发现消息,此处包括两种情况,一种为基于D2D发现技术的传输协议,通过D2D发现的信道来传输D2D发现消息,另一种为基于D2D通信技术的传输协议,通过D2D通信的信道来传输D2D发现消息,在这两种情况下,通过对对象类型的限定可进一步提升V2X业务传输的效率。而在D2D通信模式下,对象类型是否指定无意义,因此其对象类型为不适用(Not Applicable,简称N/A)。根据上述三种信息可确定V2X传输模式,其中的三种信息可自由组合,以下列表中的10种组合为较常见的10种传输模式。
Figure PCTCN2015093534-appb-000001
Figure PCTCN2015093534-appb-000002
S205,将所述V2X传输模式发送给所述终端,以便所述终端根据所述V2X传输模式中的携带的信息完成V2X业务传输。
其中携带的信息便包括上表中所述的资源调度模式、对象类型和传输协议。
在本发明实施例中,引入了V2X业务传输的对象类型,通过对象类型的区分,可进一步对业务进行细分,也便于在控制业务传输时,进行更精确的控制。
请参照图3,为本发明控制V2X业务传输的方法的第三实施例的流程示意图,在本实施例中,所述方法包括以下步骤:
S301,获取终端传输V2X业务的传输指标参数。
其中,所述传输指标参数包括以下至少一种:
传输时延、传输带宽、传输数据量及传输可靠度。
S302,根据所述传输指标参数对所述终端进行认证和授权。
其中,认证可确保传输指标参数的发送方,确保后续流程执行的必要性和安全性,而授权基于资源可用度的角度考虑,可以在资源充裕时满足各个终端的需求,而在资源紧张或不足时,停止授权,以确保已授权终端的正常业务传输。
可选地,在认证时,涉及的信令交互可通过PC2接口或PC3接接口传输,且在认证时,若控制V2X业务传输的装置没有所述终端的业务授权信息,则可 以通过PC4等接口向归属签约用户服务器(Home Subscriber Server,简称HSS)和策略与计费规则功能单元(Policy and Charging Rules Function,简称PCRF)发送获取请求,获取所述终端的业务授权信息。
S303,根据所述传输指标参数选择传输协议。
其中,所述传输协议包括基于D2D发现技术的传输协议和基于D2D通信技术的传输协议。
S304,获取所述基站的资源池和两种资源调度模式的配置信息。
S305,根据所述传输指标参数以及所述传输协议确定资源调度模式或者接收基站配置的资源调度模式,以便所述终端根据所述传输协议和所述资源调度模式完成V2X业务传输。
当获取到了所述基站的资源池和两种资源调度模式的配置信息之后,再结合确定的资源调度模式,便可以根据传输协议和资源调度模式,完成V2X业务传输。
请参照图4,为本发明控制V2X业务传输的装置的第一实施例的组成示意图;在本实施例中,所述终端包括:
获取单元100,用于获取终端传输V2X业务的传输指标参数;
选择单元200,用于根据所述传输指标参数选择传输协议,所述传输协议包括基于D2D发现技术的传输协议和基于D2D通信技术的传输协议;
确定单元300,用于根据所述传输指标参数以及所述传输协议确定资源调度模式或者接收基站配置的资源调度模式,以便所述终端根据所述传输协议和所述资源调度模式完成V2X业务传输;
其中,所述资源调度模式包括基站调度模式和资源池模式。
可选地,所述确定单元300还用于:
若传输的V2X业务消息为D2D发现消息,则根据所述传输协议、资源调度模式以及V2X业务传输的对象类型确定V2X传输模式,其中,所述V2X业务传输的对象类型包括指定对象和无指定对象;
将所述V2X传输模式发送给所述终端,以便所述终端根据所述V2X传输模式中的携带的信息完成V2X业务传输。
可选地,所述获取单元200具体用于:
若所述终端的预设参数列表中保存了最新的传输指标参数,则直接从所述 终端获取所述最新的传输指标参数;
若所述终端的预设参数列表中未保存最新的传输指标参数,则由所述终端与V2X应用服务器进行信息交互获取到最新的传输指标参数后,再从所述终端获取所述最新的传输指标参数。
可选地,所述选择单元200具体用于:
将所述传输指标参数与预设阈值比较;
根据比较的结果为所述终端选择传输协议并将选择的传输协议通知所述终端,或者根据比较的结果为所述终端选择传输协议并将选择的传输协议通知V2X应用服务器以便所述V2X应用服务器通知所述终端。
可选地,所述确定单元300还用于:
在根据所述传输指标参数以及所述传输协议确定资源调度模式或者接收基站配置的资源调度模式之前,获取所述基站的资源池和两种资源调度模式的配置信息。
可选地,所述传输指标参数包括以下至少一种:
传输时延、传输带宽、传输数据量及传输可靠度。
所述选择单元200具体用于:
在根据所述传输指标参数选择传输协议时,若传输数据量达到预设数据量阈值,则选择基于D2D通信技术的传输协议,若传输数据量未达到所述预设数量阈值,则选择基于D2D发现技术的传输协议。
所述确定单元300具体用于:
在根据所述传输指标参数以及所述传输协议确定资源调度模式时,若传输时延达到预设时延阈值,则确定资源调度模式为资源池模式,若传输时延未达到预设时延阈值,则确定资源调度模式为基站调度模式。
所述确定单元300还用于:
若终端数量达到预设数量阈值时,则确定资源调度模式为资源池模式。
请参照图5,为本发明控制V2X业务传输的装置的第二实施例的组成示意图,在本实施例中,与图4所示实施例相比,本发明实施例中所述的装置还包括:
认证授权单元400,用于根据所述传输指标参数对所述终端进行认证和授权;
若没有所述终端的业务授权信息,则向归属签约用户服务器和策略与计费 规则功能单元发送获取请求,获取所述终端的业务授权信息。
以上获取单元100、选择单元200、确定单元300和认证授权单元400可以独立存在,也可以集成设置,获取单元100、选择单元200、确定单元300或认证授权单元400可以以硬件的形式独立于装置的处理器单独设置,且设置形式可以是微处理器的形式;也可以以硬件形式内嵌于该装置的处理器中,还可以以软件形式存储于该装置的存储器中,以便于该装置的处理器调用执行以上获取单元100、选择单元200、确定单元300和认证授权单元400对应的操作。
例如,在本发明控制V2X业务传输的装置的第二实施例(图5所示的实施例)中,确定单元300可以为该装置的处理器,而获取单元100、选择单元200和认证授权单元400的功能可以内嵌于该处理器中,也可以独立于处理器单独设置,也可以以软件的形式存储于存储器中,由处理器调用实现其功能。本发明实施例不做任何限制。以上处理器可以为中央处理单元(CPU)、微处理器、单片机等。
需要说明的是,本说明书中的各个实施例均采用递进的方式描述,每个实施例重点说明的都是与其它实施例的不同之处,各个实施例之间相同相似的部分互相参见即可。对于装置实施例而言,由于其与方法实施例基本相似,所以描述的比较简单,相关之处参见方法实施例的部分说明即可。
通过上述实施例的描述,本发明具有以下优点:
通过获取终端传输V2X业务的传输指标参数以选择传输协议,且传输协议均基于D2D技术,可以充分满足不同V2X业务对传输指标的需求;然后根据传输指标参数和传输协议确定资源调度模式,可进一步提升对不同V2X业务传输需求的针对性满足;结合合适的传输协议和资源调度模式,可以实现对不同V2X业务传输的控制和管理,在充分满足不同V2X业务传输需求的前提下,使得业务信息传输的配置更加合理,利于充分使用系统资源,为用户提供更高速更稳定更科学的V2X业务传输,从而提高了交通安全度。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于一计算机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。其中,所述的存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory,简称ROM)或随机存储记忆体(Random Access Memory,简称RAM)等。
以上所揭露的仅为本发明较佳实施例而已,当然不能以此来限定本发明之权利范围,因此依本发明权利要求所作的等同变化,仍属本发明所涵盖的范围。

Claims (20)

  1. 一种控制V2X业务传输的方法,其特征在于,包括:
    获取终端传输V2X业务的传输指标参数;
    根据所述传输指标参数选择传输协议,所述传输协议包括基于D2D发现技术的传输协议和基于D2D通信技术的传输协议;
    根据所述传输指标参数以及所述传输协议确定资源调度模式或者接收基站配置的资源调度模式,以便所述终端根据所述传输协议和所述资源调度模式完成V2X业务传输;
    其中,所述资源调度模式包括基站调度模式和资源池模式。
  2. 如权利要求所述1的方法,其特征在于,在根据所述传输指标参数以及所述传输协议确定资源调度模式或者接收基站配置的资源调度模式之后,还包括:
    若传输的V2X业务消息为D2D发现消息,则根据所述传输协议、资源调度模式以及V2X业务传输的对象类型确定V2X传输模式,其中,所述V2X业务传输的对象类型包括指定对象和无指定对象;
    将所述V2X传输模式发送给所述终端,以便所述终端根据所述V2X传输模式中的携带的信息完成V2X业务传输。
  3. 如权利要求1所述的方法,其特征在于,所述获取终端传输V2X业务的传输指标参数,包括:
    若所述终端的预设参数列表中保存了最新的传输指标参数,则直接从所述终端获取所述最新的传输指标参数;
    若所述终端的预设参数列表中未保存最新的传输指标参数,则由所述终端与V2X应用服务器进行信息交互获取到最新的传输指标参数后,再从所述终端获取所述最新的传输指标参数。
  4. 如权利要求3所述的方法,其特征在于,在获取终端传输V2X业务的传输指标参数之后,还包括:
    根据所述传输指标参数对所述终端进行认证和授权;
    若没有所述终端的业务授权信息,则向归属签约用户服务器和策略与计费规则功能单元发送获取请求,获取所述终端的业务授权信息。
  5. 如权利要求1所述的方法,其特征在于,根据所述传输指标参数选择传输协议,包括:
    将所述传输指标参数与预设阈值比较;
    根据比较的结果为所述终端选择传输协议并将选择的传输协议通知所述终端,或者根据比较的结果为所述终端选择传输协议并将选择的传输协议通知V2X应用服务器以便所述V2X应用服务器通知所述终端。
  6. 如权利要求1所述的方法,其特征在于,在根据所述传输指标参数以及所述传输协议确定资源调度模式或者接收基站配置的资源调度模式之前,还包括:
    获取所述基站的资源池和两种资源调度模式的配置信息。
  7. 如权利要求1-6任一项所述的方法,其特征在于,所述传输指标参数包括以下至少一种:
    传输时延、传输带宽、传输数据量及传输可靠度。
  8. 如权利要求7所述的方法,其特征在于,在根据所述传输指标参数选择传输协议时,若传输数据量达到预设数据量阈值,则选择基于D2D通信技术的传输协议,若传输数据量未达到所述预设数量阈值,则选择基于D2D发现技术的传输协议。
  9. 如权利要求7所述的方法,其特征在于,在根据所述传输指标参数以及所述传输协议确定资源调度模式时,若传输时延达到预设时延阈值,则确定资源调度模式为资源池模式,若传输时延未达到预设时延阈值,则确定资源调度模式为基站调度模式。
  10. 如权利要求9所述的方法,其特征在于,若终端数量达到预设数量阈值时,则确定资源调度模式为资源池模式。
  11. 一种控制V2X业务传输的装置,其特征在于,包括:
    获取单元,用于获取终端传输V2X业务的传输指标参数;
    选择单元,用于根据所述传输指标参数选择传输协议,所述传输协议包括基于D2D发现技术的传输协议和基于D2D通信技术的传输协议;
    确定单元,用于根据所述传输指标参数以及所述传输协议确定资源调度模式或者接收基站配置的资源调度模式,以便所述终端根据所述传输协议和所述资源调度模式完成V2X业务传输;
    其中,所述资源调度模式包括基站调度模式和资源池模式。
  12. 如权利要求11所述的装置,其特征在于,所述确定单元还用于:
    若传输的V2X业务消息为D2D发现消息,则根据所述传输协议、资源调度模式以及V2X业务传输的对象类型确定V2X传输模式,其中,所述V2X业务传输的对象类型包括指定对象和无指定对象;
    将所述V2X传输模式发送给所述终端,以便所述终端根据所述V2X传输模式中的携带的信息完成V2X业务传输。
  13. 如权利要求11所述的装置,其特征在于,所述获取单元具体用于:
    若所述终端的预设参数列表中保存了最新的传输指标参数,则直接从所述终端获取所述最新的传输指标参数;
    若所述终端的预设参数列表中未保存最新的传输指标参数,则由所述终端与V2X应用服务器进行信息交互获取到最新的传输指标参数后,再从所述终端获取所述最新的传输指标参数。
  14. 如权利要求13所述的装置,其特征在于,所述装置还包括:
    认证授权单元,用于根据所述传输指标参数对所述终端进行认证和授权;
    若没有所述终端的业务授权信息,则向归属签约用户服务器和策略与计费规则功能单元发送获取请求,获取所述终端的业务授权信息。
  15. 如权利要求11所述的装置,其特征在于,所述选择单元具体用于:
    将所述传输指标参数与预设阈值比较;
    根据比较的结果为所述终端选择传输协议并将选择的传输协议通知所述终端,或者根据比较的结果为所述终端选择传输协议并将选择的传输协议通知V2X应用服务器以便所述V2X应用服务器通知所述终端。
  16. 如权利要求11所述的装置,其特征在于,所述确定单元还用于:
    在根据所述传输指标参数以及所述传输协议确定资源调度模式或者接收基站配置的资源调度模式之前,获取所述基站的资源池和两种资源调度模式的配置信息。
  17. 如权利要求11-16任一项所述的装置,其特征在于,所述传输指标参数包括以下至少一种:
    传输时延、传输带宽、传输数据量及传输可靠度。
  18. 如权利要求17所述的装置,其特征在于,所述选择单元具体用于:
    在根据所述传输指标参数选择传输协议时,若传输数据量达到预设数据量阈值,则选择基于D2D通信技术的传输协议,若传输数据量未达到所述预设数量阈值,则选择基于D2D发现技术的传输协议。
  19. 如权利要求17所述的装置,其特征在于,所述确定单元具体用于:
    在根据所述传输指标参数以及所述传输协议确定资源调度模式时,若传输时延达到预设时延阈值,则确定资源调度模式为资源池模式,若传输时延未达到预设时延阈值,则确定资源调度模式为基站调度模式。
  20. 如权利要求19所述的装置,其特征在于,所述确定单元还用于:
    若终端数量达到预设数量阈值时,则确定资源调度模式为资源池模式。
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