Achievable rate of full-duplex massive MIMO relaying with hardware impairments

Kui Xu, Yuanyuan Gao, Wei Xie, Xiaochen Xia, Youyun Xu
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引用次数: 7

Abstract

This paper studies the massive MIMO full-duplex relaying (FDR), where multiple source-destination pairs communicate simultaneously with the help of a common full-duplex relay equipped with very large antenna arrays. In contrast to the conventional MIMO system, massive MIMO must be built with low-cost components which are prone to hardware impairments. In this paper, the effect of hardware impairments is taken into consideration, and is modeled using transmit and receive distortion noises. The end-to-end achievable rates of the massive MIMO full-duplex relaying are analyzed. The scaling behaviors of echo interference, multi-user interference (MUI) and effective distortions caused by hardware impairments are obtained. The results show that the achievable rate of massive MIMO FDR is limited by the hardware impairments at the sources and destinations, instead of that at the relay or other interferences, as the number of relay antenna grows very large.
具有硬件缺陷的全双工大规模MIMO中继的可实现速率
本文研究了大规模MIMO全双工中继(FDR),其中多个源-目的对通过配备超大天线阵列的普通全双工中继同时通信。与传统的MIMO系统相比,大规模MIMO系统必须采用低成本的组件,而这些组件容易受到硬件的损害。本文考虑了硬件损伤的影响,并采用发射和接收畸变噪声进行建模。分析了大规模MIMO全双工中继的端到端可实现速率。得到了回波干扰、多用户干扰(MUI)和硬件损伤引起的有效失真的标度行为。结果表明,随着中继天线数量的增加,大规模MIMO FDR的实现速率不受中继或其他干扰的限制,而是受源端和目标端硬件缺陷的限制。
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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