Decentralization Issues in Cell-free Massive MIMO Networks with Zero-Forcing Precoding

F. Riera-Palou, G. Femenias
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引用次数: 13

Abstract

Cell-free massive MIMO (CF-M-MIMO) systems represent an evolution of the classical cellular architecture that has dominated the mobile landscape for decades. In CF-M-MIMO, a central processing unit (CPU) controls a multitude of access points (APs) that are irregularly scattered throughout the coverage area effectively becoming a fully distributed implementation of the MMIMO technology. As such, it inherits many of the key properties that have made M-MIMO one of the physical layer pillars of 5G systems while opening the door to new features not available in M-MIMO. Among the latest is the possibility of performing the precoding at the CPU (centralized) or at the APs (distributed) with the former known to offer much better performance at the cost of having to collect all the relevant channel state information (CSI) at the CPU. Realistic deployments of cell-free systems are likely to require more than one CPU when the area to be covered is large, thus a critical issue that needs to be solved is how these multiple CPUs should be interconnected. This paper analyzes and proposes designs for different degrees of interconnectivity among the CPUs for the specific case of centralized zero-forcing precoding. Results show that a modest form of CPU interconnection can boost very significantly the max-min rate performance so prevalent in CF-M-MIMO architectures.
基于零强制预编码的无小区大规模MIMO网络中的去中心化问题
无蜂窝大规模MIMO (CF-M-MIMO)系统代表了几十年来主导移动领域的经典蜂窝架构的一种演变。在CF-M-MIMO中,一个中央处理单元(CPU)控制大量的接入点(ap),这些接入点不规则地分散在整个覆盖区域,有效地成为MMIMO技术的完全分布式实现。因此,它继承了使M-MIMO成为5G系统物理层支柱之一的许多关键属性,同时为M-MIMO无法提供的新功能打开了大门。最新的一种方法是在CPU(集中式)或ap(分布式)上执行预编码,前者可以提供更好的性能,但代价是必须在CPU上收集所有相关的通道状态信息(CSI)。当要覆盖的区域很大时,无小区系统的实际部署可能需要多个CPU,因此需要解决的一个关键问题是如何将这些多个CPU互连起来。针对集中式强制零预编码的具体情况,分析并提出了不同程度的cpu互连设计方案。结果表明,适度形式的CPU互连可以非常显著地提高CF-M-MIMO架构中普遍存在的最大最小速率性能。
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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