Asymptotically optimal simple user scheduling for massive MIMO downlink with two-stage beamforming

Gilwon Lee, Y. Sung
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引用次数: 16

Abstract

In this paper, a simple user-scheduling-and-beamforming method is proposed for massive multi-user multiple-input multiple-output (MU-MIMO) downlink adopting two-stage beamforming. The key ideas of the proposed scheduling-and-beamforming method are to divide users into several candidate subsets according to the level of alignment of user channels to the dominant directions of the channel covariance matrix and select the user in each candidate subset based on a certain channel quality indicator (CQI) and to apply post-selection zero-forcing beamforming (ZFBF) to the selected users based on their channel state information (CSI). It is proved that the proposed scheduling-and-beamforming method is asymptotically optimal as the number of users increases. Furthermore, the proposed method significantly reduces the feedback overhead and shows superior sum rate performance compared to existing scheduling methods for MU-MIMO downlink.
具有两级波束形成的大规模MIMO下行链路渐近最优简单用户调度
针对大规模多用户多输入多输出(MU-MIMO)下行链路采用两级波束形成,提出了一种简单的用户调度波束形成方法。该调度波束形成方法的核心思想是,根据用户信道与信道协方差矩阵主导方向的对齐程度,将用户划分为多个候选子集,并根据一定的信道质量指标(CQI)在每个候选子集中选择用户,然后根据所选用户的信道状态信息(CSI)对所选用户进行选后零强制波束形成(ZFBF)。结果表明,随着用户数量的增加,所提出的调度波束形成方法是渐近最优的。此外,与现有的MU-MIMO下行链路调度方法相比,该方法显著降低了反馈开销,并表现出更好的和速率性能。
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