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Channel Modeling for Overhead Line Equipment for Train Communication

机译:列车通信架空线设备的通道建模

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The demand for high-speed data access to railway infrastructure and internet broadband data in railway is increasing due to the high density of the trains and passengers. Currently, communication access in trains is based on radio frequency (RF) wireless access networks that are slow and insufficient for the demands of the high-speed railway (HSR) and its customers. However, performance, service attributes, frequency band, and industrial support should be considered for the selection of a suitable communication system that can fulfill the requirements of HSR operation. This paper investigates overhead line equipment (OLE) as access network connecting trains to the backbone communication networks. The ABCD transmission model is used to represent the transfer function of the OLE channel. It was shown that transmission over OLE is affected by the frequency and link distance. The simulation results also show that the channel gain of the OLE channel attenuated faster at higher speeds compared to train movement at lower speeds.
机译:由于火车和旅客的高密度,对铁路基础设施和互联网宽带数据的高速数据访问的需求正在增加。当前,火车中的通信访问基于慢速且不足以满足高速铁路(HSR)及其客户需求的射频(RF)无线访问网络。但是,在选择能够满足HSR操作要求的合适通信系统时,应考虑性能,服务属性,频段和工业支持。本文研究了架空线设备(OLE)作为将火车连接到骨干通信网络的接入网络。 ABCD传输模型用于表示OLE通道的传递函数。结果表明,OLE上的传输受频率和链接距离的影响。仿真结果还显示,与较低速度下的列车运动相比,OLE通道的通道增益在较高速度下衰减得更快。

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