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NR Sidelink Design Overview for Advanced V2X Service

机译:NR Sidelink设计概述高级V2X服务

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摘要

3GPP standardization is currently studying the support of advanced vehicle-to-everything (V2X) services in Release 16. The NR sidelink (SL) being designed in 3GPP Release 16 to support advanced V2X services directly between vehicles and other road users is expected to finish early in 2020. Advanced V2X services primarily focus on platooning, cooperative driving, extended sensor, and remote driving use cases. A new QoS parameter of minimum communication range (MCR) introduced for 5G V2X means fulfillment of ultra-low latency and very high reliability requirements within a given MCR. Design for ultra-low latency and very high reliability enhancement is required to meet an end-to-end latency of 3 ms and high reliability up-to 99.999 percent. NR SL design studies V2X message delivery for periodic/aperiodic traffic type and different cast types such as unicast, groupcast, and broadcast traffic requiring substantial changes in network architecture, physical, and protocol layers. This article provides insights on the current 3GPP Release 16 NR SL design for NR V2X, the network architecture, security, and protocol enhancement. The PC5-QoS model for NR SL includes the newly introduced range parameter and connection establishment for both groupcast and unicast V2X communication using NR-PC5 RRC. In addition, the design of the NR SL physical layer addresses the necessary improvements needed in the SL physical layer structures, and procedures for reliable packet transmissions considering minimum communication range.
机译:3GPP标准化目前正在研究第16段中的先进车辆到一切(V2X)服务的支持。在3GPP版16中设计的NR SIDELINK(SL)直接在车辆和其他道路用户之间支持先进的V2X服务2020年初。高级V2X服务主要专注于排,合作驾驶,扩展传感器和远程驱动用例。为5G V2X引入的最小通信范围(MCR)的新QoS参数意味着满足给定MCR内的超低延迟和非常高的可靠性要求。需要进行超低延迟和非常高的可靠性增强,以满足3毫秒的端到端延迟,高可靠性高达99.999%。 NR SL设计为周期性/非周期性交通类型和不同的演员类型等v2x消息传递,如单播,集团广播和广播流量,需要在网络架构,物理和协议层中进行大量变化。本文为NR V2X,网络架构,安全性和协议增强提供了关于当前3GPP版本16 NR SL设计的见解。 NR SL的PC5-QoS模型包括使用NR-PC5 RRC进行Groupcast和Unicast V2X通信的新引入的范围参数和连接建立。另外,NR SL物理层的设计解决了SL物理层结构中所需的必要改进,以及考虑最小通信范围的可靠分组传输的过程。

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