Outage Analysis of Downlink URLLC in Massive MIMO systems with Power Allocation

Alexandru-Sabin Bana, L. Sanguinetti, E. Carvalho, P. Popovski
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引用次数: 2

Abstract

Massive MIMO is seen as a main enabler for low- latency communications, thanks to its high spatial degrees of freedom. The channel hardening and favorable propagation properties of Massive MIMO are particularly important for multiplexing several URLLC devices. However, the actual utility of channel hardening and spatial multiplexing is dependent critically on the accuracy of channel knowledge. When several low- latency devices are multiplexed, the cost for acquiring accurate knowledge becomes critical, and it is not evident how many devices can be served with a latency-reliability requirement and how many pilot symbols should be allocated. This paper investigates the trade-off between achieving high spectral efficiency and high reliability in the downlink, by employing various power allocation strategies, for maximum ratio and minimum mean square error precoders. The results show that using max-min SINR power allocation achieves the best reliability, at the expense of lower sum spectral efficiency.
具有功率分配的大规模MIMO系统下行链路URLLC中断分析
由于其高空间自由度,大规模MIMO被视为低延迟通信的主要推动者。大规模MIMO的信道硬化和良好的传播特性对于多路复用多个URLLC设备尤为重要。然而,信道硬化和空间复用的实际效用主要取决于信道知识的准确性。当多个低延迟设备进行多路复用时,获取准确信息的成本变得至关重要,并且不清楚有多少设备可以满足延迟可靠性要求,以及应该分配多少导频符号。本文通过采用各种功率分配策略,研究了最大比和最小均方误差预编码器在实现高频谱效率和高可靠性之间的权衡。结果表明,以较低的总频谱效率为代价,采用最大最小信噪比功率分配可获得最佳的可靠性。
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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