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Directional Analysis of Vehicle-to-Vehicle Propagation Channels

机译:车对车传播通道的定向分析

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摘要

This paper presents a double directional analysis of vehicle-to-vehicle channel measurements conducted in three different traffic scenarios. Using a high-resolution algorithm, we derive channel parameters like Angle-of-Arrival (AOA), Angle-of-Departure (AOD), propagation delay and Doppler shift and identify underlying propagation mechanisms by combining these estimates with maps of the measurement sites. The results show that first-order reflections from a small number of interacting objects can account for a large part of the received signal in the absence of line-of-sight (LOS). This effect is especially pronounced in the two traffic scenarios where the road is not lined with buildings. We also found that the direction spread is low (and conversely that the antenna correlation is high) in such scenarios, which suggests that beam forming rather than diversity-based methods should be used if multiple antenna elements are used. The situation is reversed, however, in the third scenario, a narrow urban intersection, where a larger number of higher-order reflections is found to result in a higher direction spread.
机译:本文介绍了在三种不同交通场景下进行的车辆到车辆通道测量的双向分析。使用高分辨率算法,我们得出诸如到达角(AOA),离开角(AOD),传播延迟和多普勒频移的信道参数,并通过将这些估计值与测量站点的地图相结合来识别潜在的传播机制。结果表明,在没有视线(LOS)的情况下,来自少量相互作用对象的一阶反射可以占接收信号的很大一部分。在道路未与建筑物成直线的两种交通情况下,这种影响尤其明显。我们还发现,在这种情况下,方向扩展较低(相反,天线相关性较高),这表明如果使用多个天线元件,则应使用波束成形而不是基于分集的方法。然而,情况则相反,但在第三种情况下,是狭窄的城市交叉路口,在该交叉路口发现大量高阶反射会导致较高的方向扩散。

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