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Measurement-based Evaluation of the Impact of Large Vehicle Shadowing on V2X Communications

机译:基于测量的大型车辆阴影对V2X通信的影响评估

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Upcoming applications, such as autonomous vehicles, will pose strict requirements on the vehicular networks. In order to provide these new services reliably, an accurate understanding of propagation in the vehicular scenarios is needed. In this context, this paper presents a measurementbased evaluation of large vehicle shadowing at 5.8 GHz in V2X scenarios. The receiver antenna height is fixed to average vehicular height (1.5 m), while the transmitter antennas are located at different heights (1.5, 5, and 7 m) in order to investigate both V2V and V2I scenarios. A truck was used to obstruct the LOS between transmitter and receiver, and a large number of geometrical combinations of the scenario were explored. The statistical analysis of the measurement shows how in the V2V case, the experienced shadow levels are approximately 5 dB higher than in the V2I scenarios, where the shadow levels depend on the transmitter antenna height, reaching maximum values of 21-23 dB. The statistical analysis also shows that the differences in shadow level due to the non-symmetries of the obstacle truck are in the order of approximately 2 dB. A simple 3D ray-tracing simulation is validated against the measurements, showing a good match with a RMSE of 4.1 dB. Based on both measurements and ray-tracing data, a simple deterministic shadowing model, useful for implementation in system level simulators, is presented, as a first step towards a more dynamic and scalable shadowing model.
机译:诸如自动驾驶汽车等即将出现的应用将对车载网络提出严格的要求。为了可靠地提供这些新服务,需要对车辆场景中的传播有准确的了解。在这种情况下,本文介绍了在V2X场景中基于测量的5.8 GHz大型车辆阴影的评估。接收器天线的高度固定为平均车高(1.5 m),而发送器天线位于不同的高度(1.5、5和7 m),以便研究V2V和V2I场景。用卡车挡住了发射器和接收器之间的视距,并探索了该场景的大量几何组合。测量的统计分析表明,在V2V情况下,所经历的阴影水平比在V2I情况下所经历的阴影水平大约高5 dB,在V2I情况下,阴影水平取决于发射机天线的高度,达到21-23 dB的最大值。统计分析还显示,由于障碍车的非对称性,阴影水平的差异约为2 dB。针对这些测量结果验证了简单的3D射线追踪仿真,显示出与4.1 dB的RMSE良好匹配。基于测量和光线跟踪数据,提出了一个简单的确定性阴影模型,可用于系统级模拟器,这是朝着更加动态和可扩展的阴影模型迈出的第一步。

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