A non-stationary geometry-based stochastic model for MIMO high-speed train channels

A. Ghazal, Chengxiang Wang, H. Haas, M. Beach, R. Mesleh, D. Yuan, Xiaohu Ge, M. Chahine
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引用次数: 13

Abstract

In this paper, a non-stationary wideband geometry-based stochastic model (GBSM) is proposed for multiple-input multiple-output (MIMO) high-speed train (HST) channels. The proposed model employs multiple confocal ellipses model, where the received signal is a superposition of the line-of-sight (LoS) and single-bounced rays. Because of the time-varying feature of angles of arrival (AoAs), angles of departure (AoDs), and LoS angle, the proposed GBSM has the ability to investigate the non-stationarity of HST environment caused by the high speed movement of the receiver. From the proposed model, the local spatial cross-correlation function (CCF) and the local temporal autocorrelation (ACF) are derived for different taps. Numerical results and analysis show that the proposed channel model is capable of characterizing the time-variant HST wireless channel.
基于非平稳几何的MIMO高速列车通道随机模型
针对多输入多输出(MIMO)高速列车信道,提出了一种基于几何的非平稳宽带随机模型(GBSM)。该模型采用多共焦椭圆模型,接收到的信号是视距和单次反射光线的叠加。由于到达角(AoAs)、离开角(AoDs)和LoS角的时变特性,所提出的GBSM能够研究由接收机高速运动引起的HST环境的非平稳性。在该模型的基础上,推导了不同水龙头的局部空间互关函数(CCF)和局部时间自相关函数(ACF)。数值结果和分析表明,该信道模型能够很好地表征时变HST无线信道。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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