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Multi-layer beamforming in uplink/downlink massive MIMO Systems with multi-antenna users

机译:具有多天线用户的上行/下行大规模MIMO系统中的多层波束成形

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摘要

In this paper, considering a hybrid architecture at the base station (BS) in an m-MIMO system, multi-antenna users transmit/receive multiple symbols to/from the BS in the uplink/downlink transmissions. In the uplink transmission, we propose a hybrid analog/digital beamformer at the BS and digital precoders at users. The BS designs the analog beamformer via signal-to-leakage-plus-noise ratio (SLNR) maximization criterion. Then, in the baseband, each user designs its precoder maximizing its effective signal power. Finally, the received signal at the BS is digitally combined with a regularized zero-forcing (RZF) filter. For the downlink transmission, we also design the hybrid beamformer at the BS and digital reception filters at users. In such a configuration, in order to design the hybrid beamformer, the digital precoders and the reception filters, we need much less channel knowledge compared to the large dimensional original channel matrices. Besides, as we show in the simulations, in spatially correlated channels, with smaller number of RF chains compared to the number of antennas, the performance of the proposed approaches would achieve the performance of the fully digital beamformer in terms of sum spectral efficiency (SE) and bit error rate (BER). Moreover, applying beamforming techniques at multi-antenna users further improves the overall network throughput. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本文中,考虑到m-MIMO系统中基站(BS)的混合架构,多天线用户在上行链路/下行链路传输中向BS发送/从BS接收多个符号。在上行链路传输中,我们建议在BS处使用混合模拟/数字波束成形器,并在用户处使用数字预编码器。 BS通过信噪比加噪声比(SLNR)最大化标准设计模拟波束形成器。然后,在基带中,每个用户设计其预编码器,以最大化其有效信号功率。最终,BS处的接收信号与正则化的强制零(RZF)滤波器进行数字组合。对于下行链路传输,我们还在BS设计混合波束成形器,并在用户设计数字接收滤波器。在这样的配置中,为了设计混合波束成形器,数字预编码器和接收滤波器,与大尺寸的原始信道矩阵相比,我们需要的信道知识要少得多。此外,正如我们在仿真中所示,在空间相关的信道中,与天线的数量相比,RF链的数量更少,所提出方法的性能将在总频谱效率(SE)方面达到全数字波束成形器的性能。 )和误码率(BER)。此外,将波束成形技术应用于多天线用户可进一步提高整体网络吞吐量。 (C)2019 Elsevier B.V.保留所有权利。

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  • 来源
    《Signal processing》 |2019年第11期|58-66|共9页
  • 作者单位

    Yazd Univ Dept Elect Engn Cell Lab Yazd Iran|IEEE Piscataway NJ 08854 USA;

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  • 正文语种 eng
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