大规模MIMO系统的两级混合预编码

Yuwei Ren, Yingmin Wang, Guixian Xu
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引用次数: 9

摘要

大规模多输入多输出(MIMO)系统有望显著提高能源效率(EE)和频谱效率(SE)。然而,随着天线的增加,射频收发器带来了巨大的硬件成本和高复杂性。本文针对低复杂度的混合结构,提出了一种混合预编码方案,以接近传统全复杂度基带数字强制零(FD-ZF)预编码的性能。所提出的方案称为两级混合预编码,本质上是在射频域进行纯相位控制,然后根据基带看到的有效信道进行低维基带数字ZF预编码。同时考虑了量化射频相位(不大于3bits)。在理想瑞利衰落信道中进行了仿真,结果与FD-ZF近似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two-stage hybrid precoding for massive MIMO systems
Massive multiple-input multiple-output (MIMO) systems are expected to significantly enhance the energy efficiency (EE) and spectrum efficiency (SE). However, RF transceivers introduce huge cost of high complexity of the hardware with the antennas increasing. In this paper, considering the low-complexity hybrid structure, we propose a hybrid precoding scheme to approach the performance of the traditional full-complexity baseband digital zero-forcing (FD-ZF) precoding. The proposed scheme, named two-stage hybrid precoding, essentially applies phase-only control at the RF domain and then performs a low-dimensional baseband digital ZF precoding based on the effective channels seen from baseband. Meanwhile, quantized RF phase (no more than 3bits) is considered. The proposed scheme is simulated in ideal Rayleigh fading channels and the results are nearly equal to FD-ZF.
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