Joint User Selection and GMD-Based Hybrid Beamforming for Generalized Spatial Modulation Aided Millimeter-wave Massive MIMO Systems

Taissir Y. Elganimi, Amani A. Aturki
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引用次数: 4

Abstract

Multiple Input Multiple Output (MIMO) systems with limited Radio Frequency (RF) chains play a pivotal role in the Fifth Generation (5G) of wireless networks. However, the transmitter of Generalized Spatial Modulation MIMO (GSM-MIMO) systems that characterized by a single RF chain and multiple active antennas is capable of reducing both the energy consumption and the transmitter cost. In this paper, combining GSM-MIMO systems with the fully digital Geometric Mean Decomposition (GMD)-based precoding scheme and Analog Beamforming (ABF) into Hybrid Beamforming (HBF) regime is presented for Millimeter-wave (mmWave) massive MIMO systems which is a key enabler for 5G networks. In addition, applying the norm-based user selection algorithm in GSM-MIMO scheme with GMD-based hybrid precoding is proposed, and referred to as Multiuser Steered GSM-MIMO (MUS-GSM-MIMO) scheme. Simulation results demonstrate that the proposed schemes are capable of achieving considerable performance gains over the conventional GSM-MIMO schemes, while avoiding the overwhelming costs of multiple RF chains. Therefore, the proposed schemes are very efficient and highly suitable for large-scale and 5G wireless networks.
广义空间调制辅助毫米波大规模MIMO系统的联合用户选择和基于gmd的混合波束形成
具有有限射频(RF)链的多输入多输出(MIMO)系统在第五代(5G)无线网络中发挥着关键作用。然而,采用单射频链和多有源天线的广义空间调制MIMO (GSM-MIMO)系统的发射机能够降低能量消耗和发射机成本。本文提出了将GSM-MIMO系统与基于全数字几何平均分解(GMD)的预编码方案和模拟波束形成(ABF)结合到混合波束形成(HBF)体制中的毫米波(mmWave)大规模MIMO系统,这是5G网络的关键使能器。此外,提出了将基于规范的用户选择算法应用于GSM-MIMO方案和基于gmd的混合预编码,称为多用户导向GSM-MIMO (mu -GSM-MIMO)方案。仿真结果表明,与传统的GSM-MIMO方案相比,所提出的方案能够实现相当大的性能提升,同时避免了多个射频链的压倒性成本。因此,所提出的方案非常高效,非常适合大规模和5G无线网络。
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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