论文标题

基于RSU的多层多硅烷车辆网络的性能分析

Performance Analysis of RSU-based Multihomed Multilane Vehicular Networks

论文作者

Kassir, Saadallah, Caballero, Pablo, de Veciana, Gustavo, Wang, Nannan, Wang, Xi, Palacharla, Paparao

论文摘要

由通勤者在未来的自动驾驶汽车中的潜在高线交通需求的激励,我们研究了一个网络建筑,其中车辆使用车辆对车辆(V2V)链接来形成继电器网络群集,然后依次使用车辆到基础设施(V2I)链接(V2I)链接以连接到一个或更多的道路侧单元(RSUS)。这种基于群集的多杂货可提供改进的性能,例如,覆盖范围和每个用户共享的速率,但取决于V2V-V2I有能力的V2V-V2I车辆的渗透以及遗留车辆,基于视力的V2V链接的可能阻塞,例如基于毫米 - 毫米波和可见光的光线技术。本文提供了自由流动制度中典型车辆的连通性和吞吐量的性能分析,探讨了其对车辆密度的依赖性,对堵塞的敏感性,车道数量和整个车道的异质性。结果表明,与基于V2i的网络相比,这些体系结构的连通连接性和降低率也可以大大改善连接性和降低,即使使用中等的车辆密度和渗透率和渗透率。与单车道相比,典型车辆的性能还显示在多行高速公路环境中可以大大改善。本文还阐明了网络性能在车辆可以控制其相对位置时如何通过表征车辆簇面临的连通性交易权衡来控制其相对位置。

Motivated by the potentially high downlink traffic demands of commuters in future autonomous vehicles, we study a network architecture where vehicles use Vehicle-to-Vehicle (V2V) links to form relay network clusters, which in turn use Vehicle-to-Infrastructure (V2I) links to connect to one or more Road Side Units (RSUs). Such cluster-based multihoming offers improved performance, e.g., in coverage and per user shared rate, but depends on the penetration of V2V-V2I capable vehicles and possible blockage, by legacy vehicles, of line of sight based V2V links, such as those based on millimeter-wave and visible light technologies. This paper provides a performance analysis of a typical vehicle's connectivity and throughput on a highway in the free-flow regime, exploring its dependence on vehicle density, sensitivity to blockages, number of lanes and heterogeneity across lanes. The results show that, even with moderate vehicle densities and penetration of V2V-V2I capable vehicles, such architectures can achieve substantial improvements in connectivity and reduction in per-user rate variability as compared to V2I based networks. The typical vehicle's performance is also shown to improve considerably in the multilane highway setting as compared to a single lane road. This paper also sheds light on how the network performance is affected when vehicles can control their relative positions, by characterizing the connectivity-throughput tradeoff faced by the clusters of vehicles.

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