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Spectral-Efficiency Analysis of Massive MIMO Systems in Centralized and Distributed Schemes

机译:集中式和分布式方案中大规模MIMO系统的频谱效率分析

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This paper analyzes the spectral efficiency of massive multiple-input multiple-output (MIMO) systems in both centralized and distributed configurations, referred to as C-MIMO and D-MIMO, respectively. By accounting for real environmental parameters and antenna characteristics, namely, path loss, shadowing effect, multipath fading, and antenna correlation, a novel comprehensive channel model is first proposed in closed-form, which is applicable to both types of MIMO schemes. Then, based on the proposed model, the asymptotic behavior of the spectral efficiency of the MIMO channel, under both the centralized and distributed configurations is analyzed and compared in exact forms, by exploiting the theory of very long random vectors. Afterwards, a case study is performed by applying the obtained results into MIMO networks with circular coverage. In such a case, it is attested that for the D-MIMO of cell radius and circular antenna array of radius , the optimal value of that maximizes the average spectral efficiency is accurately established by . Monte Carlo simulation results corroborate the developed spectral-efficiency analysis.
机译:本文分析了集中式和分布式配置下的大规模多输入多输出(MIMO)系统的频谱效率,分别称为C-MIMO和D-MIMO。通过考虑实际的环境参数和天线特性,即路径损耗,阴影效应,多径衰落和天线相关性,首先以封闭形式提出了一种新颖的综合信道模型,该模型适用于两种类型的MIMO方案。然后,在此模型的基础上,利用超长随机矢量的理论,以集中形式和分布式形式对MIMO信道频谱效率的渐近行为进行了分析和比较。然后,通过将获得的结果应用于具有圆形覆盖范围的MIMO网络中进行案例研究。在这种情况下,可以证明,对于小区半径和半径为圆形的天线阵列的D-MIMO,可通过准确确定最大化平均频谱效率的最佳值。蒙特卡洛模拟结果证实了已开发的光谱效率分析。

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