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Analysis of MIMO Receiver Using Generalized Least Squares Method in Colored Environments

机译:有色环境下的广义最小二乘法对MIMO接收机的分析

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The classical detection techniques for multiple-input multiple-output (MIMO) systems are usually designed with the assumption that the additive complex Gaussian noise is uncorrelated. However, for closely spaced antennas, the additive noise is correlated due to the mutual antenna coupling. This letter analyzes an improved zero-forcing (ZF) technique for MIMO channels in colored environments. The additive noise is assumed to be correlated and the Rayleigh MIMO channel is considered doubly correlated. The improved ZF detector, based on the generalized least squares estimator (GLS), takes into account the noise covariance matrix and provides an unbiased estimator of the transmitted symbol vectors. We introduce some novel bounds on the achievable sum rate, on the normalized mean square error at the receiver output, and on the outage probability. The derived expressions are compared to Monte Carlo simulations.
机译:通常在假设加性复数高斯噪声不相关的前提下设计用于多输入多输出(MIMO)系统的经典检测技术。但是,对于间隔很近的天线,由于相互的天线耦合,附加噪声是相关的。这封信分析了彩色环境中MIMO信道的一种改进的零强迫(ZF)技术。假定附加噪声是相关的,并且认为瑞利MIMO信道是双重相关的。改进的ZF检测器基于广义最小二乘估计器(GLS),考虑了噪声协方差矩阵,并提供了所传输符号向量的无偏估计器。我们介绍了一些可实现的总和率,接收器输出的标准化均方误差以及中断概率的新颖界限。将导出的表达式与蒙特卡洛模拟进行比较。

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