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On the Feasibility of High Speed Railway mmWave Channels in Tunnel Scenario

机译:隧道情景下高速铁路毫米波通道的可行性研究

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Rail traffic is widely acknowledged as an efficient and green transportation pattern and its evolution attracts a lot of attention. However, the key point of the evolution is how to develop the railway services from traditional handling of the critical signaling applications only to high data rate applications, such as real-time videos for surveillance and entertainments. The promising method is trying to use millimeter wave which includes dozens of GHz bandwidths to bridge the high rate demand and frequency shortage. In this paper, the channel characteristics in an arched railway tunnel are investigated owing to their significance of designing reliable communication systems. Meantime, as millimeter wave suffers from higher propagation loss, directional antenna is widely accepted for designing the communication system. The specific changes that directional antenna brings to the radio channel are studied and compared to the performances of omnidirectional antenna. Note that the study is based on enhanced wide-band ray tracing tool where the electromagnetic and scattering parameters of the main materials of the tunnel are measured and fitted with predicting models.
机译:铁路交通被公认为一种高效,绿色的交通运输方式,其发展吸引了很多关注。但是,演进的关键点是如何将铁路服务从传统的关键信号应用处理发展到高数据速率应用,例如用于监视和娱乐的实时视频。有前途的方法正在尝试使用包括数十GHz带宽的毫米波来弥补高速率需求和频率不足。本文对拱形铁路隧道的信道特性进行了研究,原因是它们对设计可靠的通信系统具有重要意义。同时,由于毫米波遭受更高的传播损耗,定向天线被广泛用于设计通信系统。研究了定向天线给无线电信道带来的具体变化,并与全向天线的性能进行了比较。请注意,该研究基于增强型宽带射线追踪工具,该工具会测量隧道主要材料的电磁和散射参数,并与预测模型拟合。

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