首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Performance evaluation of max-d min precoding in impulsive noise for train-to-wayside communications in subway tunnels
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Performance evaluation of max-d min precoding in impulsive noise for train-to-wayside communications in subway tunnels

机译:地铁隧道中列车对路通信的脉冲噪声中max-d min预编码的性能评估

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This paper addresses the performance evaluation of the multiple input multiple output (MIMO) precoding technique, referred to as max- d min precoding, over fading channel with impulsive noise in a railway tunnel. Measurements showed that the received signal at the antenna on the moving train roof near the catenary suffers from electromagnetic noise interference (EMI). This implies that the traditional Gaussian noise model is no longer valid and an impulsive noise model has to be considered. Based on this observation, we investigate the performance of the max- d min MIMO precoding technique, based on the minimum distance criterion, in an impulsive noise modeled as an α -stable distribution. The main contributions are (i) a general approximation of the error probability of the max- d min precoder, in the presence of Cauchy noise for an n r × n t MIMO system, and (ii) the performance evaluation, in terms of bit error rate, of a complete communication system, considering a MIMO channel model in tunnel and impulsive noise, both obtained by measurements. Two soft detection techniques, providing the soft decisions to the channel decoder, are proposed based on the approximation of the probability density function of the impulsive noise by either a Gaussian or a Cauchy law.
机译:本文针对铁路隧道中具有脉冲噪声的衰落信道上的多输入多输出(MIMO)预编码技术(称为max-d min 预编码)的性能评估。测量表明,在悬链线附近的火车车顶上的天线处接收的信号受到电磁噪声干扰(EMI)的影响。这意味着传统的高斯噪声模型不再有效,必须考虑脉冲噪声模型。基于此观察,我们基于最小距离准则研究了以d为稳定分布的脉冲噪声中max-d min MIMO预编码技术的性能。主要贡献是:(i)在存在柯西噪声的情况下,对于n r ×n t MIMO系统,以及(ii)考虑到通过测量获得的隧道中的MIMO信道模型和脉冲噪声,对完整通信系统的性能(就误码率而言)。基于高斯或柯西定律对脉冲噪声的概率密度函数的近似,提出了两种向信道解码器提供软判决的软检测技术。

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