Channel Capacity in the Finite Blocklength Regime for Massive MIMO with Selected Multi-Streams (Invited Paper)

Zhicheng Xiao, Guodong Sun, Yulin Hu, Chao Shen, A. Schmeink
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引用次数: 1

Abstract

In this paper, we study the capacity of massive multiple-input multiple-output (MIMO) systems in the finite blocklength (FBL) regime. Due to the impact of FBL and joint coding among MIMO multiplexing, the multi-stream transmission enabled by the MIMO technique does not perform in the same manner as the one in the infinite blocklength (IBL) regime where transmissions are arbitrarily reliable at Shannon's capacity. Having more streams in a MIMO transmission exploits a longer (equivalent) blocklength, which is more preferred in the FBL regime. On the other hand, with a given total power budget/limit, having more streams with poor channel gains sharing the budget actually reduce the contributions from the strong streams on the FBL performance. This tradeoff is addressed in this work. In particular, we characterize the FBL capacity of massive MIMO under selected multi-stream transmission (SMST) scheme and investigate the optimal multi-stream configuration maximizing the effective channel capacity with a given target decoding error probability. For the scenarios with no channel state information (CSI), the FBL capacity with equal power allocation policy among the selected streams is studied. In addition, when CSI is available an instantaneous power allocation policy is provided.
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具有选定多流的大规模MIMO有限块长度条件下的信道容量(特邀论文)
本文研究了有限块长(FBL)条件下的海量多输入多输出(MIMO)系统的容量问题。由于FBL和MIMO多路复用中的联合编码的影响,MIMO技术支持的多流传输与无限块长度(IBL)体制中的传输方式不同,在无限块长度(IBL)体制中,传输在香农容量下是任意可靠的。在MIMO传输中有更多的流利用了更长的(等效的)块长度,这在FBL制度中更受欢迎。另一方面,在给定的总功率预算/限制下,拥有更多具有较差信道增益的流来共享预算实际上会减少强流对FBL性能的贡献。这项工作解决了这种权衡。特别地,我们描述了选择多流传输(SMST)方案下大规模MIMO的FBL容量,并研究了在给定目标解码错误概率的情况下,使有效信道容量最大化的最佳多流配置。在无信道状态信息(CSI)的情况下,研究了在所选流之间采用均等功率分配策略的FBL容量。此外,当CSI可用时,还提供了瞬时功率分配策略。
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