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Eigenvalue Dynamics of a Central Wishart Matrix With Application to MIMO Systems

机译:中央Wishart矩阵的特征值动力学及其在MIMO系统中的应用。

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We investigate the dynamic behavior of the stationary random process defined by a central complex Wishart matrix as it varies along a certain dimension . We characterize the second-order joint cumulative distribution function (cdf) of the largest eigenvalue, and the second-order joint cdf of the smallest eigenvalue of this matrix. We show that both cdfs can be expressed in exact closed-form in terms of a finite number of well-known special functions in the context of communication theory. As a direct application, we investigate the dynamic behavior of the parallel channels associated with multiple-input multiple-output (MIMO) systems in the presence of Rayleigh fading. Studying the complex random matrix that defines the MIMO channel, we characterize the second-order joint cdf of the signal-to-noise ratio (SNR) for the best and worst channels. We use these results to study the rate of change of MIMO parallel channels, using different performance metrics. For a given value of the MIMO channel correlation coefficient, we observe how the SNR associated with the best parallel channel changes slower than the SNR of the worst channel. This different dynamic behavior is much more appreciable when the number of transmit () and receive () antennas is similar. However, as is increased while keeping fixed, we see how the best and worst channels tend to have a similar rate of change.
机译:我们研究了由中心复杂的Wishart矩阵定义的平稳随机过程的动力学行为,因为它沿着一定的方向变化。我们表征了该特征值最大的二阶联合累积分布函数(cdf)和最小特征值的二阶联合cdf。我们表明,在通信理论的背景下,根据有限数量的众所周知的特殊函数,两个cdf都可以精确封闭的形式表示。作为直接的应用,我们研究在存在瑞利衰落的情况下与多输入多输出(MIMO)系统相关的并行信道的动态行为。通过研究定义MIMO通道的复杂随机矩阵,我们表征了最佳和最差通道的信噪比(SNR)的二阶联合cdf。我们使用这些结果,使用不同的性能指标来研究MIMO并行信道的变化率。对于MIMO信道相关系数的给定值,我们观察到与最佳并行信道相关的SNR如何比最差信道的SNR变慢。当发射()和接收()天线的数量相似时,这种不同的动态行为会更加明显。但是,随着固定不变的增加,我们看到了最佳和最差渠道趋向于具有相似的变化率。

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