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A Path Loss and Shadowing Model for Multilink Vehicle-to-Vehicle Channels in Urban Intersections

机译:城市交叉口多链路车辆到车辆通道的路径损耗和阴影模型

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摘要

The non line-of-sight (NLOS) scenario in urban intersections is critical in terms of traffic safety—a scenario where Vehicle-to-Vehicle (V2V) communication really can make a difference by enabling communication and detection of vehicles around building corners. A few NLOS V2V channel models exist in the literature but they all have some form of limitation, and therefore further research is need. In this paper, we present an alternative NLOS path loss model based on analysis from measured V2V communication channels at 5.9 GHz between six vehicles in two urban intersections. We analyze the auto-correlation of the large scale fading process and the influence of the path loss model on this. In cases where a proper model for the path loss and the antenna pattern is included, the de-correlation distance for the auto-correlation is as low as 2–4 m, and the cross-correlation for the large scale fading between different links can be neglected. Otherwise, the de-correlation distance has to be much longer and the cross-correlation between the different communication links needs to be considered separately, causing the computational complexity to be unnecessarily large. With these findings, we stress that vehicular ad-hoc network (VANET) simulations should be based on the current geometry, i.e., a proper path loss model should be applied depending on whether the V2V communication is blocked or not by other vehicles or buildings.
机译:就交通安全而言,非十字路口(NLOS)场景对于交通安全至关重要-这种场景下,车辆到车辆(V2V)的通信实际上可以通过在建筑物拐角处实现车辆的通信和检测来发挥作用。文献中存在一些NLOS V2V通道模型,但是它们都具有某种形式的局限性,因此需要进一步的研究。在本文中,我们基于在两个城市交叉口的六辆车之间在5.9 GHz处测得的V2V通信信道的分析结果,提出了一种替代的NLOS路径损耗模型。我们分析了大规模衰落过程的自相关以及路径损耗模型对此的影响。如果包括适当的路径损耗和天线方向图模型,则自相关的去相关距离可低至2–4 m,并且不同链路之间的大规模衰落的互相关可以被忽视。否则,去相关距离必须更长,并且需要分开考虑不同通信链路之间的互相关,从而导致计算复杂度不必要地大。有了这些发现,我们强调车辆自组织网络(VANET)模拟应基于当前的几何形状,即应根据V2V通信是否被其他车辆或建筑物阻塞来应用适当的路径损耗模型。

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