基于单天线功率分配的多址多输入多输出系统的最佳ZF预编码器

J. K. Nyarko, Christian Ango Mbom
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引用次数: 1

摘要

多用户大规模多输入多输出系统具有提高数据速率的潜力。然而,对于大型基站(BS)天线,非平方信道矩阵限制了零强迫(ZF)预编码器旋转,以获得每个天线功率分配的最优解。在本文中,我们提出了波束形成和晶格约简(LR)方法来抑制信道矩阵,并将信道向量的晶格变换为接近正交的。数值结果表明,基于lr的ZF预编码器优于波束形成矩阵范数逼近等其他ZF预编码器方案。特别是,所提出的最优ZF预编码器的和速率需要少量的BS天线。随后,在强视距信道中,子信道的最佳功率分配取决于用户的支配地位,以获得可观的多路复用和分集增益。具体而言,在高信噪比下充水分配的赖斯海峡增益是不可忽略的。2018年4月28日收到;2018年11月27日接受;发布于2018年12月14日
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal ZF Precoder for MU massive MIMO Systems over Ricean Channel with per Antenna Power Allocation
Multiuser massive multiple-input multiple-output systems have the potential to increase the data rate. However, with a large base station (BS) antenna, the non-square channel matrix restricts the zero-forcing (ZF) precoder rotations to obtain the best optimal solution with the per-antenna power allocation. In this paper, we propose the beamforming and lattice reduction (LR) approach to restrain the channel matrix and transform the lattice of the channel vectors to be near orthogonal. Numerical results show that the LR-based ZF precoder outperforms other ZF precoder schemes, such as, the norm approximation of the beamforming matrix. In particular, the sum rate of the proposed optimal ZF precoder requires a small number of BS antenna. Subsequently, with the strong line of sight (LoS) channel, the optimal power allocations in the subchannels depend on the dominance of the users in order to achieve substantial multiplexing and diversity gains. Specifically, the Ricean channel gain with the water-filling allocation at high SNR is non-negligible. Received on 28 April 2018; accepted on 27 November 2018; published on 14 December 2018
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