Statistical Analysis Of Uplink Massive MIMO Systems For MRC Linear Receivers Over Weibull Fading Channels

Toufik Chaayra, Youness El Ansari, Faissal El Bouanani, H. Ben-Azza
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Abstract

This paper investigates the performance of maximum-ratio combining (MRC) linear receivers in a massive multiple-input multiple-output (mMIMO) uplink communication system, that in terms of their signal-to-interference-plus-noise ratio (SINR) operating under independent flat Weibull multipath fading channels (WFCs). Based on a tight approximate probability density function (PDF) expression of the signal-to-noise ratio at the considered receiver output, we derive new accurate closed-form expressions of PDF, outage probability (OP) for mMIMO employing MRC technique. The results show high accuracy for significant values of K×Nr mMIMO system at high/low transmission power and severity fading parameters as well. Indeed, the greater K×Nr, the better the PDF’s accuracy, therefore, the better is the OP. Numerical outcomes have been assessed by using Mathematica Software to show up our results.
威布尔衰落信道下MRC线性接收机上行海量MIMO系统的统计分析
本文研究了大规模多输入多输出(mMIMO)上行通信系统中最大比组合(MRC)线性接收机在独立平坦威布尔多径衰落信道(wfc)下的信噪比(SINR)性能。在考虑接收机输出信噪比的近似概率密度函数(PDF)表达式的基础上,利用MRC技术导出了mMIMO的精确的概率密度函数、中断概率(OP)的新的封闭表达式。结果表明,在高/低传输功率和严重衰落参数下,K×Nr mMIMO系统的显著值具有较高的精度。的确,K×Nr越大,PDF的准确性越好,因此,op越好。数值结果已经通过使用Mathematica软件来评估,以显示我们的结果。
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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