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Vehicle-to-Vehicle Radio Channel Characteristics for Congestion Scenario in Dense Urban Region at 5.9 GHz

机译:5.9 GHz密集城市地区拥挤场景的车对车无线电信道特性

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This paper reports the results of a car-following measurement of the wireless propagation channel at 5.9 GHz on a seriously congested urban road in Wuhan, China. The small-scale amplitude-fading distribution was determined to be a Ricean distribution using the Akaike information criterion. This result shows that this car-following scenario can be regarded as a line-of-sight radio channel. Moreover, the statistical K-factor features follow a Gaussian distribution. According to the power delay profile and average power delay profile, we found that street buildings in this dense urban environment contributed to very strong reflection phenomena. The impact of a powerful reflection is analyzed through path loss, delay, and Doppler spreads in the channel statistical properties. In the frequency domain, we observe a U-shape delay-Doppler spectrum that proved that the dense urban scenario consists of scattering channels. All these results are summarized in tabular form that will be useful in the modeling of vehicle-to-vehicle wireless communication systems.
机译:本文报告了在武汉市严重拥挤的城市道路上对5.9 GHz无线传播信道进行的汽车跟踪测量的结果。使用Akaike信息准则将小规模幅度衰减分布确定为Ricean分布。该结果表明,这种跟车情况可以视为视线无线电信道。此外,统计K因子特征遵循高斯分布。根据功率延迟曲线和平均功率延迟曲线,我们发现在这种密集的城市环境中的街道建筑物造成了非常强烈的反射现象。通过路径损耗,延迟和信道统计属性中的多普勒扩展分析强大反射的影响。在频域中,我们观察到一个U型延迟多普勒频谱,该频谱证明了密集的城市场景由散射通道组成。所有这些结果都以表格形式汇总,这将在车辆到车辆无线通信系统的建模中很有用。

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