Performance Evaluation of Multi-user Massive MIMO Systems with Hybrid Precoding

Neeraj Sharma, B. Gupta
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Abstract

Unlike conventional multiple-input multiple-output (MIMO), massive MIMO communication is a scalable technology offering benefits corresponding to the deployed base station (BS) antennas. It implies equipping BS with huge number of antennas compared to user terminals. It offers sizable boost in spectral and energy efficiencies along with linear signal processing techniques. Among the various design problems related to massive MIMO, effective precoding is one of the most important signal processing tasks at the BS to enable successful downlink transmission. Digital precoding techniques are employed in conventional MIMO systems, where each antenna is preceded by a dedicated RF chain. These techniques are unsuitable for massive MIMO due to excessive number of power hungry and expensive RF chains. In this paper, we discuss advantages, fundamental properties and design challenges of massive MIMO technology. We also present an energy-efficient, low-cost and low-hardware complexity hybrid precoding technique for massive multi-user MIMO systems under Rayleigh fading and millimeter wave channels. Compared with fully digital zero-forcing precoding, the hybrid precoding technique exhibits very high energy and near-optimal spectral efficiency.
混合预编码的多用户海量MIMO系统性能评估
与传统的多输入多输出(MIMO)不同,大规模MIMO通信是一种可扩展的技术,提供与部署的基站(BS)天线相对应的优势。这意味着与用户终端相比,为BS配备了大量的天线。它提供了相当大的提高频谱和能源效率以及线性信号处理技术。在与大规模MIMO相关的各种设计问题中,有效的预编码是BS中最重要的信号处理任务之一,以实现成功的下行传输。传统的MIMO系统采用数字预编码技术,其中每个天线之前都有一个专用的射频链。由于大量的功耗和昂贵的射频链,这些技术不适合大规模的MIMO。本文讨论了大规模MIMO技术的优点、基本特性和设计挑战。在瑞利衰落和毫米波信道下,提出了一种节能、低成本、低硬件复杂度的混合预编码技术。与全数字强制零预编码相比,混合预编码技术具有非常高的能量和接近最佳的频谱效率。
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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