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MIMO Gaussian Channels With Arbitrary Inputs: Optimal Precoding and Power Allocation

机译:具有任意输入的MIMO高斯信道:最佳预编码和功率分配

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摘要

In this paper, we investigate the linear precoding and power allocation policies that maximize the mutual information for general multiple-input-multiple-output (MIMO) Gaussian channels with arbitrary input distributions, by capitalizing on the relationship between mutual information and minimum mean-square error (MMSE). The optimal linear precoder satisfies a fixed-point equation as a function of the channel and the input constellation. For non-Gaussian inputs, a nondiagonal precoding matrix in general increases the information transmission rate, even for parallel noninteracting channels. Whenever precoding is precluded, the optimal power allocation policy also satisfies a fixed-point equation; we put forth a generalization of the mercury/waterfilling algorithm, previously proposed for parallel noninterfering channels, in which the mercury level accounts not only for the non-Gaussian input distributions, but also for the interference among inputs.
机译:在本文中,我们研究了线性预编码和功率分配策略,该策略通过利用互信息和最小均方之间的关系来最大化具有任意输入分布的通用多输入多输出(MIMO)高斯信道的互信息错误(MMSE)。最佳线性预编码器满足定点方程,该定点方程是信道和输入星座图的函数。对于非高斯输入,即使对于并行的非交互通道,非对角预编码矩阵通常也会提高信息传输速率。每当不进行预编码时,最佳功率分配策略也满足定点方程式。我们提出了以前针对并行无干扰通道提出的汞/注水算法的一般化方法,其中汞水平不仅考虑了非高斯输入分布,还考虑了输入之间的干扰。

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