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Improving multi-channel wave-based V2X communication to support advanced driver assistance system (ADAS)

机译:改善基于多通道波的V2X通信,以支持高级驾驶员辅助系统(ADAS)

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摘要

The advent of vehicle-to-everything (V2X) communication has opened the opportunity to design advanced driver assistance systems (ADAS) that collect information from sensors in neighboring vehicles and roadside infrastructure. IEEE and ETSI have designed network protocol standards for V2X communications. Despite the differences between the vehicular wireless communication architecture defined by ETSI and the IEEE protocol stack, the two standards have multichannel operations as a main commonality, with some channels dedicated to safety-critical applications and others to nonsafety services. Some recent studies have demonstrated that these standards might not provide sufficient channel utilization for reliable exchange of information in mid- and heavily congested scenarios. In this paper, we propose and evaluate the performance of a driver-assistance system to reduce the connectivity gaps between vehicles and roadside units (RSUs). This cooperative system of multi-service channel allocation will improve radio channel utilization. We also show that the required latency for this inter-vehicle communication can be obtained using the IEEE-WAVE standards and dedicated short-range communication (DSRC) proposed for vehicular environments. Simulation results show that the proposed scheme can improve the average throughput by up to 15 % in various traffic density conditions compared with the dynamic channel allocation method.
机译:车辆到一切(V2X)通信的出现为设计高级驾驶员辅助系统(ADAS)提供了机会,该系统可以从相邻车辆和路边基础设施中的传感器收集信息。 IEEE和ETSI设计了用于V2X通信的网络协议标准。尽管ETSI定义的车载无线通信体系结构与IEEE协议栈之间存在差异,但这两个标准仍将多通道操作作为主要的共性,其中一些通道​​专用于安全关键型应用程序,而另一些则专用于非安全性服务。最近的一些研究表明,在中度和高度拥塞的情况下,这些标准可能无法提供足够的信道利用来可靠地交换信息。在本文中,我们提出并评估了驾驶员辅助系统的性能,以减少车辆与路边单元(RSU)之间的连通性差距。这种多业务信道分配的协作系统将提高无线电信道的利用率。我们还显示,可以使用IEEE-WAVE标准和为车辆环境建议的专用短距离通信(DSRC)来获得此车辆间通信所需的等待时间。仿真结果表明,与动态信道分配方法相比,该方案在各种业务量密度条件下可以将平均吞吐量提高多达15%。

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