Near-Optimal Hybrid Precoding Analysis in 5G mmWave massive MIMO Systems with Large Antenna Arrays

Sawkat Osman, M. Mowla
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引用次数: 1

Abstract

Millimeter-wave (mmWave) communication is most likely to appear as a aspiring technology in the upcoming generation of cellular communication (5G). To confront several challenges (e.g., system complexity, energy consumption etc.), hybrid precoding is largely investigated in mmWave massive MIMO systems due to its low energy consuming nature and reduced system complexity. Most prior works have focused on two types of hybrid precoding structures: (i) fully-connected structure which requiring a massive amount of phase-shifters (PS), (ii) sub-connected structure where comparatively less number of PS is needed; both structures considering only mmWave channel. In this paper, the downlink communication of a mmWave massive MIMO system in considered and the achievable sum-rate of a hybrid precoding (sub-connected) based on successive interference cancellation (SIC) is analyzed in both mmWave channel as well as in different wireless channels. Results demonstrate that the SIC-based scheme achieves nearoptimum sum-rate in different wireless channels and mmWave channel as well regardless of the fact that it utilizes a small number of phase-shifters compared to other architectures and performs even better in the conventional wireless channels than in mmWave channel. Results also indicate that the sum-rate is even more near to optimal when the user antennas and RF chains are sufficiently increased.
大型天线阵列5G毫米波大规模MIMO系统的近最优混合预编码分析
毫米波(mmWave)通信最有可能成为下一代蜂窝通信(5G)的热门技术。为了应对一些挑战(例如,系统复杂性,能量消耗等),混合预编码由于其低能耗和降低系统复杂性的性质,在毫米波大规模MIMO系统中进行了大量研究。大多数先前的工作集中在两种类型的混合预编码结构上:(i)需要大量移相器(PS)的全连接结构,(ii)需要相对较少移相器的子连接结构;两种结构都只考虑毫米波通道。本文研究了毫米波大规模MIMO系统的下行通信,分析了基于连续干扰抵消(SIC)的混合预编码(子连接)在两种毫米波信道以及不同无线信道下的可实现和速率。结果表明,基于sic的方案在不同的无线信道和毫米波信道中也实现了接近最佳的和速率,而与其他架构相比,它使用了少量的移相器,并且在传统无线信道中比在毫米波信道中表现得更好。结果还表明,当用户天线和射频链充分增加时,求和速率更接近最佳。
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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