Performance evaluation of low complexity double-sided massive MIMO transceivers

Stefan Schwarz, M. Rupp
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引用次数: 7

Abstract

In this paper, we consider downlink multi-user MIMO transmission in massive MIMO systems, assuming massive amount of antennas at transmitter- as well as receiver-side. We investigate the performance of several linear MIMO transceiver architectures of comparatively low complexity, since non-linear schemes of high complexity (e.g., maximum likelihood detection) appear infeasible with large numbers of transmit and/or receive antennas. The focus of our investigation lies on the impact of spatial antenna correlation on the achievable rate of the considered schemes. We derive achievable rate upper bounds that facilitate interpretation and explanation of performance losses observed with increasing antenna correlation and with growing number of antennas and spatially multiplexed users. We identify favourable combinations of low complexity transmitter/receiver filters and show that the impact of antenna correlation strongly depends on the applied transceiver architecture.
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低复杂度双面大规模MIMO收发器性能评估
在本文中,我们考虑了大规模MIMO系统中的下行多用户MIMO传输,假设在发射端和接收端都有大量的天线。我们研究了几种相对较低复杂性的线性MIMO收发器架构的性能,因为高复杂性的非线性方案(例如,最大似然检测)对于大量发射和/或接收天线来说是不可行的。我们的研究重点在于空间天线相关对所考虑的方案的可实现率的影响。我们推导出可实现的速率上限,有助于解释和解释随着天线相关性增加以及天线数量和空间复用用户数量增加而观察到的性能损失。我们确定了低复杂性发送/接收滤波器的有利组合,并表明天线相关性的影响强烈依赖于应用的收发器架构。
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