Low-complexity transmission mode selection in MU-MIMO systems

Haijing Liu, Hui Gao, Anzhong Hu, Tiejun Lv
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引用次数: 2

Abstract

We propose a low-complexity transmission strategy in multi-user multiple-input multiple-output downlink systems. The adaptive strategy adjusts the precoding methods, denoted as the transmission mode, to improve the system sum rates while maintaining the number of simultaneously served users. Three linear precoding transmission modes are discussed, i.e., the block diagonalization zero-forcing, the cooperative zero-forcing (CZF), and the cooperative matched-filter (CMF). Considering both the number of data streams and the multiple-antenna configuration of users, we modify the common CZF and CMF modes by allocating data streams. Then, the transmission mode is selected between the modified ones according to the asymptotic sum rate analyses. As instantaneous channel state information is not needed for the mode selection, the computational complexity is significantly reduced. Numerical simulations confirm our analyses and demonstrate that the proposed scheme achieves substantial performance gains with very low computational complexity.
MU-MIMO系统中低复杂度传输模式选择
提出了一种多用户多输入多输出下行系统的低复杂度传输策略。该自适应策略通过调整预编码方式(即传输方式)来提高系统和速率,同时保持同时服务的用户数。讨论了三种线性预编码传输模式,即块对角化零强制、合作零强制(CZF)和合作匹配滤波(CMF)。考虑到数据流的数量和用户的多天线配置,我们通过分配数据流来修改常用的CZF和CMF模式。然后,根据渐近和率分析,在修改后的传输模式中选择传输模式。由于模式选择不需要瞬时信道状态信息,因此大大降低了计算复杂度。数值模拟证实了我们的分析,并表明所提出的方案以非常低的计算复杂度实现了实质性的性能提升。
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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