高架桥场景下高速列车通信非平稳信道统计特性研究

Kaien Zhang, Yan Zhang
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引用次数: 0

摘要

本文给出了基于高架桥场景中宽带高速列车(HST)信道测量的非平稳信道统计结果。由于列车的快速运动,列车的衰落特性和多普勒延迟统计量都随时间快速变化。该测量活动在广深客运专线上实施,中心频率为2.4 GHz。采用子空间交替广义期望最大化(SAGE)算法对多路径分量(MPCs)参数进行估计。大规模的衰落特性和小规模Doppler-delay统计数据,包括路径损耗、阴影衰落,Rician K因子,mpc,均方根(RMS)延迟传播,RMS角蔓延,power-delay概要(PDP), Doppler-power频谱进行了分析。根据实测结果,给出了上述参数的非平稳统计模型。相关性用相关矩阵距离(CMD)来表征。结果表明,高架桥场景下的高通量通道具有较强的非平稳性。这个工作为HST通信系统的设计提供参考,促进技术的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterizations on Non-stationary Channel Statistics for High-Speed Train Communications in Viaduct Scenario
In this paper, results for non-stationary channel statistics based on the wideband high-speed train (HST) channel measurement in the rich-scattering viaduct scenario are presented. Due to the fast movement of the train, both the fading characteristics and the Doppler-delay statistics change rapidly with time. The measurement campaign is implemented on the Guangzhou-Shenzhen passenger-dedicated railway at a central frequency of 2.4 GHz. The parameters of multi-path components (MPCs) are estimated by the Subspace-Alternating Generalized Expectation-maximization (SAGE) algorithm. The large-scale fading properties and the small-scale Doppler-delay statistics, including path loss, shadow fading, Rician K factor, number of MPCs, root-mean-square (RMS) delay spread, RMS angular spread, power-delay profile (PDP), and Doppler-power spectrum are analyzed. The non-stationary statistical models of the above parameters are given based on the measured results. The correlation property is characterized by the correlation matrix distance (CMD). It is shown that the HST channel in the rich-scattering viaduct scenario has strong non-stationarity characteristics. This work provides references for the design of HST communication systems and promotes technical developments.
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