多用户毫米波MIMO系统的混合单反信道预编码

Prabhat Raj Gautam, Li Zhang
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引用次数: 2

摘要

由于射频(RF)链的巨大成本和功耗,在毫米波(mmWave)大规模多输入多输出(MIMO)系统中实现全数字预编码非常困难。混合预编码将模拟波束形成与数字预编码相结合,为该问题提供了可行的解决方案,其中使用的射频链数量远少于天线数量。我们考虑了下行链路多用户大规模MIMO场景,并提出了一种最大信噪比(SLNR)的混合预编码方案。每个移动站(MS)首先确定其模拟组合器,然后基站(BS)分两个阶段构建模拟波束形成器和混合预编码器的数字预编码器,以最大限度地提高每个用户的单波比。我们通过仿真表明,尽管仅使用少量RF链,但所提出的基于混合slnr的预编码器显示出接近基于全数字slnr的预编码器的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid SLNR Precoding for Multi-user Millimeter Wave MIMO Systems
It is difficult to implement a fully digital precoding in millimeter wave (mmWave) massive multiple-input multiple-output (MIMO) systems, owing to the huge cost and power consumption of radio frequency (RF) chains. Hybrid precoding that uses the combination of analog beamforming, together with digital precoding, offers a feasible solution to this problem where far lesser number of RF chains are employed compared to the number of antennas. We consider a downlink multi-user massive MIMO scenario and propose a hybrid precoding scheme that maximizes signal-to-leakage-and-noise ratio (SLNR). Each mobile station (MS) determines its analog combiner first and then the base station (BS) constructs the analog beamformer and the digital precoder of the hybrid precoder in two separate stages to maximize the SLNR for each user. We show, through simulations, that the proposed hybrid SLNR-based precoder exhibits a performance close to the fully digital SLNR-based precoder despite using only a few number of RF chains.
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