Multi-User Symbol-Level Precoding for Downlink Reconfigurable MIMO Communication Systems

Haonan Wang, Ang Li, Yuanjun Shen, B. Vucetic, Yonghui Li
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Abstract

Pattern reconfigurable multiple-input multiple-output (PR-MIMO) can improve the communication quality compared with the traditional MIMO via modifying the wireless propagation environment actively. In this paper, we discuss the design of the constructive interference (CI)-based symbol-level precoding (CI-SLP) in the multi-user pattern-reconfigurable multiple-input single-output (MU-PR-MISO) communication systems. Firstly, the joint design problem of SLP and the radiation pattern is formulated aimed at maximizing the worst user's service quality. Based on that, the optimization problem is further decoupled and an iterative alternating optimization algorithm is proposed to obtain the desired radiation pattern and the corresponding precoding matrix. After simplifying the joint design problem in the single-pattern case where all the antenna elements adopt the same radiation pattern, the convexity of the pattern design problem can be ensured, leading to an optimal pattern design. Numerical results demonstrate that the reconfigurable radiation pattern can manipulate the wireless channel purposefully so that the performance gains by exploiting CI can be further increased.
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下行可重构MIMO通信系统的多用户符号级预编码
与传统MIMO相比,模式可重构多输入多输出(PR-MIMO)通过主动改变无线传播环境来提高通信质量。本文讨论了多用户模式可重构多输入单输出(MU-PR-MISO)通信系统中基于建设性干扰(CI)的符号级预编码(CI- slp)设计。首先,提出了以最差用户服务质量最大化为目标的SLP和辐射方向图联合设计问题;在此基础上,进一步解耦了优化问题,提出了一种迭代交替优化算法来获得期望的辐射方向图和相应的预编码矩阵。对所有天线单元采用同一辐射方向图的单方向图情况下的联合设计问题进行简化后,可以保证方向图设计问题的凸性,从而实现最优方向图设计。数值结果表明,可重构辐射方向图可以有目的地操纵无线信道,从而进一步提高利用CI的性能增益。
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