Impact of Hardware Impairments on the Performance of Millimeter-Wave Massive MU-MIMO Systems with Distributed Antennas

W. Belaoura, K. Ghanem, M. Z. Shakir, K. Qaraqe
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引用次数: 2

Abstract

The impact of hardware impairments play an crucial role in any practical communication systems, yet they are generally omitted when investigating the performance of distributed massive multiple input multiple output (MIMO) systems. In particularly, for millimeter-Wave (mm-Wave) bands, no study has been addressed yet. To overcome this limitation, in this paper a mm-Wave distributed massive multi-user (MU) MIMO system based-hybrid beamforming structure, in which the residual hardware impairments have been incorporated in the transmitter processing, is presented. At each base station (BS), a zero-forcing (ZF) baseband processing is designed over the effective channel to efficiently remove the multi-user (MU) interference. The results show that, relative to the co-located mm-Wave massive MIMO with the same antenna configurations, mm-Wave distributed MIMO achieves a significantly higher performance while reducing the impingement of hardware practical defects.
硬件损伤对分布式天线毫米波海量MU-MIMO系统性能的影响
硬件缺陷的影响在任何实际通信系统中都起着至关重要的作用,但在研究分布式大规模多输入多输出(MIMO)系统的性能时,通常会忽略硬件缺陷的影响。特别是对于毫米波(mm-Wave)波段,还没有研究解决。为了克服这一限制,本文提出了一种基于毫米波分布式大规模多用户(MU) MIMO系统的混合波束形成结构,该结构在发射机处理中考虑了残余硬件损伤。在每个基站(BS)上,在有效信道上设计了零强迫(ZF)基带处理,以有效地消除多用户(MU)干扰。结果表明,相对于相同天线配置的同址毫米波大规模MIMO,毫米波分布式MIMO在降低硬件实际缺陷影响的同时,获得了显著的性能提升。
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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