We develop an analytical framework to examine the line-of-sight (LOS) coverage area in vehicular networks with roadside units (RSU) and vehicle relays. In practical deployment scenarios, RSUs and vehicle relays are spatially correlated and we characterize this by employing Cox point processes to model the locations of RSUs and vehicle relays simultaneously. Leveraging the random blockage model, we model the LOS coverage area as Boolean models on these Cox point processes. The LOS coverage area is then evaluated by its area fraction. We show that relays can increase the area fraction of LOS coverage by nearly 50\% even when RSUs and relays are spatially correlated. By presenting a stochastic geometry model for a vehicular network with RSUs and relays and then by providing a tool to capture its LOS coverage, our work assesses the viability of vehicle relays for modern vehicular networks exploiting LOS coverage.
翻译:我们开发了一个分析框架,以检查路边装置和车辆中继器在车辆网络中的视线覆盖区。在实际部署设想中,路边装置和车辆中继器与空间相关,我们通过使用考克斯点程序同时模拟路边装置和车辆中继器的位置来描述这一点。我们利用随机阻隔模型,将远线覆盖区模拟成这些考克斯点过程的布利安模型。然后,对远线覆盖区进行区域分数评估。我们表明,即便在路边装置和中继器与空间相关的情况下,中继器也能将远线覆盖区部分增加近50 ⁇ 。我们的工作通过为使用路边装置和中继器的车辆网络提供一个随机几何测地模型,然后通过提供一种工具来捕捉其覆盖范围。我们的工作评估了车辆中继器对利用远线覆盖的现代车辆中继器网络的可行性。