收发器I/Q不平衡下的预编码海量MU-MIMO上行传输

Aki Hakkarainen, J. Werner, K. Dandekar, M. Valkama
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引用次数: 11

摘要

在大规模多输入多输出(MIMO)系统中,结合数字阵列处理,相关射频前端的数量不可避免地很高。本文讨论了这些射频前端的缺陷如何影响预编码大规模多用户MIMO (MU-MIMO)上行传输的整体系统性能。我们特别关注收发器同相/正交(I/Q)不平衡及其通过rf感知空间处理的缓解。本文首先推导了基于ofdma的大规模MU-MIMO上行系统在I/Q不平衡情况下的基本失真和干扰模型,然后提出了在上行接收器(RX)中进行增强空间后处理以有效减轻有害影响。数值算例表明,增强空间RX处理明显优于传统的线性处理,从而在实际的低成本射频前端提供了显着的性能改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Precoded massive MU-MIMO uplink transmission under transceiver I/Q imbalance
In massive multiple-input multiple-output (MIMO) systems, combined with digital array processing, the amount of the associated radio frequency (RF) front-ends is inevitably high. This paper addresses how imperfections in these RF front-ends affect the overall system performance in precoded massive multiuser MIMO (MU-MIMO) uplink transmission. In particular, we focus on transceiver in-phase/quadrature (I/Q) imbalances and their mitigation with RF-aware spatial processing. We first derive the essential distortion and interference models for OFDMA-based massive MU-MIMO uplink system under I/Q imbalances, and then propose augmented spatial post-processing to be carried out in the uplink receiver (RX) for mitigating the harmful effects efficiently. Numerical examples show that the augmented spatial RX processing clearly outperforms the conventional linear processing, and thus provides significant performance improvements with practical low-cost RF front-ends.
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