Path Loss Analysis and Modeling for Vehicle-to-Vehicle Communications with Vehicle Obstructions

Mi Yang, B. Ai, R. He, Liang Chen, Xue Li, Zefang Huang, Jianzhi Li, Chen Huang
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引用次数: 14

Abstract

In this paper, we focus on the analysis and modeling of path loss characteristics for vehicle-to-vehicle (V2V) communications with vehicle obstructions. A series of channel measurements were performed at 5.9 GHz in a typical urban scenario for V2V communications. In these measurements we subdivided into three types of test cases: non-obstruction, smallvehicle obstruction, and large-vehicle obstruction. Then the path loss and shadow fading components of the three cases are extracted, compared and analyzed. Based on the measurements, we show the influence of different types of vehicle obstruction on path loss and shadow fading characteristics. It is found that small-vehicle obstruction does not significantly affect the mean of path loss, and it leads to additional shadow fading of 3 dB. Large vehicle obstruction brings about 10 dB of additional path loss. Finally, a path loss model is proposed, which includes the influence of vehicle occlusion on path loss and employs the classical log-distance path loss formula. The results in the paper could be used for the performance analysis and system design of V2V communication.
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具有车辆障碍物的车对车通信路径损耗分析与建模
在本文中,我们重点分析和建模车辆对车辆(V2V)通信的路径损耗特性与车辆障碍物。在典型的V2V通信城市场景中,在5.9 GHz下进行了一系列信道测量。在这些测量中,我们将测试用例细分为三种类型:非阻塞、小型车辆阻塞和大型车辆阻塞。然后对三种情况下的路径损失和阴影衰落分量进行提取、比较和分析。在此基础上,研究了不同类型的车辆障碍物对路径损失和阴影衰落特性的影响。研究发现,小型车辆障碍物对路径损耗均值影响不显著,但会导致3 dB的额外阴影衰落。较大的车辆障碍物带来约10db的额外路径损耗。最后,采用经典的对数距离路径损失公式,建立了考虑车辆遮挡对路径损失影响的路径损失模型。本文的研究结果可用于V2V通信的性能分析和系统设计。
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