Information-theoretic performance analysis of LMS MIMO communications

G. Alfano, A. Maio, A. Tulino
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Abstract

Information-theoretic performance analysis of a MIMO communication over Land Mobile Satellite (LMS) channels, under ergodic and non-ergodic regimes, is performed. The capacity-achieving input covariance matrix, and the corresponding ergodic capacity, assuming perfect receive-side information but making different assumptions on the amount of channel knowledge at the transmitter, are derived. We obtain exact results, but for the case when perfect channel knowledge is assumed at both ends of the link, for which we provide an upper bound to the ergodic capacity. In the non-ergodic scenario, we compute the outage capacity in absence of power-control, and discuss the asymptotic Gaussianity of the mutual information, which strongly depends on the overall number of degrees of freedom available on the channel. Design guidelines for multiantenna LMS channels are gained studying the low Signal-to-Noise Ratio (SNR) behavior of the capacity, still under the assumption of absence of knowledge of the channel matrix (or its statistics) at the transmitter. The results are illustrated through several examples, aimed at assessing the impact on the performance of the diversity order and/or the Line-of-Sight (LOS) fluctuations.
LMS MIMO通信的信息论性能分析
对陆地移动卫星(LMS)信道上的MIMO通信进行了遍历和非遍历体制下的信息论性能分析。在假设接收端信息完备但对发送端信道知识量作不同假设的情况下,导出了实现容量的输入协方差矩阵和相应的遍历容量。我们得到了精确的结果,但对于假设链路两端都有完美的信道知识的情况,我们提供了遍历容量的上界。在非遍历情况下,我们计算了没有功率控制的中断容量,并讨论了互信息的渐近高斯性,该渐近高斯性强烈依赖于信道上可用自由度的总数。研究了低信噪比(SNR)容量的行为,获得了多天线LMS信道的设计准则,仍然假设发射机不知道信道矩阵(或其统计量)。结果通过几个例子加以说明,目的是评估对分集顺序和/或视距(LOS)波动性能的影响。
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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