Distributed power control in multiuser MIMO networks with optimal linear precoding

Peyman Siyari, H. Aghaeinia
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引用次数: 1

Abstract

Contractive interference functions introduced by Feyzmahdavian et al. is the newest approach in the analysis and design of distributed power control laws. This approach can be extended to several cases of distributed power control. One of the distributed power control scenarios wherein the contractive interference functions have not been employed is the power control in MIMO systems. In this paper, this scenario will be analyzed. In addition, the optimal linear precoder is employed in each user to achieve maximum point-to-point information rate. In our approach, we use the same amount of signaling as the previous methods did. However, we show that the uniqueness of Nash equilibria is more probable in our approach, suggesting that our proposed method improves the convergence performance of distributed power control in MIMO systems. We also show that the proposed power control algorithm can be implemented asynchronously, which gives a noticeable flexibility to our algorithm given the practical communication limitations.
基于最优线性预编码的多用户MIMO网络分布式功率控制
Feyzmahdavian等人提出的收缩干涉函数是分析和设计分布式功率控制律的最新方法。这种方法可以推广到分布式电源控制的几种情况。MIMO系统中的功率控制是目前尚未采用收缩干扰函数的分布式功率控制方案之一。本文将对这一场景进行分析。此外,在每个用户中采用最优线性预编码器,以实现最大的点对点信息速率。在我们的方法中,我们使用与前面方法相同数量的信令。然而,我们证明了在我们的方法中纳什均衡的唯一性更有可能,这表明我们提出的方法提高了MIMO系统中分布式功率控制的收敛性能。我们还证明了所提出的功率控制算法可以异步实现,这使得我们的算法在实际通信限制下具有明显的灵活性。
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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