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Probabilistic Delay Control and Road Side Unit Placement for Vehicular Ad Hoc Networks with Disrupted Connectivity

机译:连接中断的车载自组织网络的概率延迟控制和路边单元放置

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This paper studies the multihop packet delivery delay in a low density vehicular ad hoc network (VANET). We address a disrupted vehicle-to-infrastructure communication scenario, where an end-to-end path is unlikely to exist between a vehicle and the nearest road side unit (RSU). We present an analytical framework, which takes into account the randomness of vehicle data traffic and the statistical variation of the disrupted communication channel. Our framework employs the effective bandwidth theory and its dual, the effective capacity concept, in order to obtain the maximum distance between RSUs that stochastically limits the worst case packet delivery delay to a certain bound (i.e., allows only an arbitrarily small fraction of the packets received by the farthest vehicle from the RSU to exceed a required delay bound). Our study also investigates the effect of the vehicle density, transmission range, and speed difference between vehicles on the end-to-end packet delivery delay. Extensive simulation results validate our analytical framework.
机译:本文研究了低密度车载自组织网络(VANET)中的多跳数据包传递延迟。我们解决了车辆与基础设施之间通信中断的情况,在这种情况下,车辆与最近的路侧单元(RSU)之间不太可能存在端到端路径。我们提出了一个分析框架,该框架考虑了车辆数据流量的随机性和通信通道中断的统计变化。我们的框架采用有效带宽理论及其双重有效容量概念,以便获得RSU之间的最大距离,从而将最坏情况下的数据包传输延迟随机限制在一定范围内(即,仅允许数据包的任意小部分最远的车辆从RSU收到的信号超出了所需的延迟范围)。我们的研究还调查了车辆密度,传输范围和车辆之间的速度差异对端到端数据包传递延迟的影响。大量的仿真结果验证了我们的分析框架。

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