In this letter, we consider linear precoding for downlink massive multi-user (MU) multiple-input multiple-output (MIMO) systems. We propose the novel successively-regularized zero forcing (SRZF) precoding, which exploits successive null spaces of the MIMO channels of the users, along with regularization, to control the inter-user interference and to enhance performance and robustness to imperfect channel state information (CSI) at the base station (BS). We compare the weighted sum rate of the proposed SRZF precoding with those of block diagonalization and conventional and regularized zero forcing precoding for fixed and locally-optimal power allocation strategies as well as for perfect and imperfect CSI via computer simulations. Our simulation results reveal that for both underloaded and critically-loaded systems and perfect and imperfect CSI at the BS, the proposed SRZF precoding significantly outperforms the considered baseline schemes, making it an attractive option for downlink massive MU-MIMO systems.
翻译:在这封信中,我们考虑对大型多用户(MU)多投入多产出(MIMO)系统进行下行连接线性预编码;我们建议采用新颖的连续常规零强制(SRZF)预编码,利用IMO各用户渠道的连续空隙,同时规范化,控制用户之间的干扰,提高功能和稳健性,使基站的不完善的频道国家信息(CSI)更加完善。我们比较了拟议的SRZF预编码的加权总和率,与区块二分化和常规及常规零强制预编码,以及通过计算机模拟对固定和当地最佳分配电力战略以及完美和不完善的 CSI进行预编码。我们的模拟结果表明,对于装载不足和载重装过重的系统以及BS的完美和不完善的CSI,拟议的SRZF预编码大大超过考虑的基线计划,从而成为下行链大型MU-MIMO系统的一个有吸引力的选择。