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Channel Characteristics of Rail Traffic Tunnel Scenarios Based on Ray-Tracing Simulator

机译:基于光线跟踪模拟器的轨道交通隧道情景信道特征

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The tunnel scenario is a major rail communication scenario. In this paper, the radio channel characteristics of tunnel scenarios with different carrier frequencies, different distances between the transmitter (Tx) and receiver (Rx), and cross sections are simulated with a ray-tracing tool. Key parameters such as path loss, Rician K-factor, root mean square (RMS) delay spread, and angular spread are studied. According to the results, higher frequencies introduce larger path loss and the presence of the vehicle body increases the path loss by about 35 dB in the scenario; at the same time it will also cause the fluctuation and instability of the path loss. Besides, the influence of reflections from the side walls is significant on radio propagation. The channel experiences more severe fading in a narrow tunnel compared with others.
机译:隧道方案是主要的铁路通信方案。在本文中,使用射线追踪工具模拟了具有不同载波频率,发射器(Tx)和接收器(Rx)之间不同距离以及横截面的隧道方案的无线电信道特性。研究了诸如路径损耗,Rician K因子,均方根(RMS)延迟扩展和角度扩展之类的关键参数。根据结果​​,较高的频率会导致更大的路径损耗,并且在这种情况下,车身的存在会使路径损耗增加约35 dB。同时也会引起路径损耗的波动和不稳定性。此外,来自侧壁的反射的影响对于无线电传播是显着的。与其他通道相比,该通道在狭窄的隧道中经历更严重的衰落。

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