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Broadband Wireless Channel in Composite High-Speed Railway Scenario: Measurements, Simulation, and Analysis

机译:复合高速铁路场景中的宽带无线信道:测量,仿真和分析

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The rapid development of high-speed railway (HSR) and train-ground communications with high reliability, safety, and capacity promotes the evolution of railway dedicated mobile communication systems from Global System for Mobile Communications-Railway (GSM-R) to Long Term Evolution-Railway (LTE-R). The main challenges for LTE-R network planning are the rapidly time-varying channel and high mobility, because HSR lines consist of a variety of complex terrains, especially the composite scenarios where tunnels, cuttings, and viaducts are connected together within a short distance. Existing researches mainly focus on the path loss and delay spread for the individual HSR scenarios. In this paper, the broadband measurements are performed using a channel sounder at 950 MHz and 2150 MHz in a typical HSR composite scenario. Based on the measurements, the pivotal characteristics are analyzed for path loss exponent, power delay profile, and tap delay line model. Then, the deterministic channel model in which the 3D ray-tracing algorithm is applied in the composite scenario is presented and validated by the measurement data. Based on the ray-tracing simulations, statistical analysis of channel characteristics in delay and Doppler domain is carried out for the HSR composite scenario. The research results can be useful for radio interface design and optimization of LTE-R system.
机译:高可靠性,安全性和高容量的高速铁路(HSR)和火车地面通信的迅速发展,促进了铁路专用移动通信系统从全球移动通信铁路系统(GSM-R)到长期演进的发展-铁路(LTE-R)。 LTE-R网络规划的主要挑战是快速时变的信道和高移动性,因为HSR线路由各种复杂的地形组成,尤其是隧道,路段和高架桥在短距离内连接在一起的复合场景。现有研究主要集中在各个高铁场景的路径损耗和时延扩展上。在本文中,宽带测量是在典型的HSR复合场景中使用950 MHz和2150 MHz的信道探测仪执行的。基于这些测量,分析了关键特性的路径损耗指数,功率延迟曲线和抽头延迟线模型。然后,提出并在测量场景中验证了在复合场景中应用3D射线跟踪算法的确定性信道模型。基于射线追踪模拟,对高铁复合场景的时延和多普勒域的信道特性进行了统计分析。研究结果可为无线接口设计和LTE-R系统的优化提供参考。

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