This paper introduces multiuser multiple-input multiple-output (MU-MIMO) architectures based on non-linear precoding and stream combining techniques using rate-splitting (RS), where the transmitter often has only partial knowledge of the channel state information (CSI). In contrast to existing works, we consider deployments where the receivers may be equipped with multiple antennas. This allows us to employ linear combining techniques based on the Min-Max, the maximum ratio and the minimum mean-square error criteria along with Tomlinson-Harashima precoders (THP) for RS-based MU-MIMO systems to enhance the sum-rate performance. Moreover, we incorporate the Multi-Branch (MB) concept into the RS architecture to further improve the sum-rate performance. Closed-form expressions for the signal-to-interference-plus-noise ratio and the sum-rate at the receiver end are devised through statistical analysis. Simulation results show that the proposed RS-THP schemes achieve better performance than conventional linear and THP precoders.
翻译:本文介绍了基于非线性预编码和流式组合技术的多用户多输入多输出(MU-MIMO)结构,这些结构基于使用分率(RS)的非线性预编码和流式组合技术,在这种结构中,发射机通常只对频道状态信息(CSI)只有部分了解。与现有的工程不同,我们考虑在接收器可能配备多天线的部署情况。这使我们能够采用基于Min-Max、最大比率和最低平均差差错标准的线性组合技术,以及基于RS的MU-MIMO系统托姆林森-哈拉伊马先变码器(THP),以提高总和率性能。此外,我们将多环(MB)概念纳入RS结构,以进一步改进总和率性能。信号对干涉加音率比率的封闭式表达方式和接收器端的总率通过统计分析设计。模拟结果显示,拟议的RS-THP计划比常规线性和THP预译器取得更好的性能。