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Largest eigenvalue of complex Wishart matrices and performance analysis of MIMO MRC systems

机译:复杂不愿意矩阵最大的特征值和MIMO MRC系统的性能分析

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摘要

This paper extends Khatri (1964, 1969) distribution of the largest eigenvalue of central complex Wishart matrices to the noncentral case. It then applies the resulting new statistical results to obtain closed-form expressions for the outage probability of multiple-input-multiple-output (MIMO) systems employing maximal ratio combining (known also as "beamforming" systems) and operating over Rician-fading channels. When applicable these expressions are compared with special cases previously reported in the literature dealing with the performance of (1) MIMO systems over Rayleigh-fading channels and (2) single-input-multiple-output (SIMO) systems over Rician-fading channels. As a double check these analytical results are validated by Monte Carlo simulations and as an illustration of the mathematical formalism some numerical examples for particular cases of interest are plotted and discussed. These results show that, given a fixed number of total antenna elements and under the same scattering condition (1) SIMO systems are equivalent to multiple-input-single-output systems and (2) it is preferable to distribute the number of antenna elements evenly between the transmitter and the receiver for a minimum outage probability performance.
机译:本文扩展了哈特里(1964,1969)将中央综合性氟色矩阵最大的特征值分布到非中心壳。然后,它应用产生的新统计结果以获得用于采用最大比率(也称为“波束成形”系统)的多输入多输出(MIMO)系统的中断概率的闭合表达式,并在瑞典衰落通道上运行。当适用时,这些表达式与先前在文献中报告的特殊案例进行了比较,处理(1)MIMO系统在瑞利衰落通道上的性能和(2)在RICian衰落通道上的单次多输出(SIMO)系统。作为双重检查,这些分析结果由蒙特卡罗模拟验证,作为数学形式主义的说明,绘制和讨论了一些兴趣病例的一些数值例子。给出了定量的总天线元件并且在相同的散射条件下(1)SIMO系统等同于多输入单输出系统和(2),优选均匀分配天线元件的数量在发射器和接收器之间进行最小停电概率性能。

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