Hybrid Beamforming for Multiuser Millimeter Wave MIMO-OFDM Systems

Xingyu Zhao, Tian Lin, Tongtong Hui, Yu Zhu
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引用次数: 1

Abstract

Hybrid analog and digital beamforming (HBF) for large-scale antenna arrays with limited radio frequency chains has been regarded as one of the promising candidates for future wireless communications. Due to the limitation of hardware, this problem becomes more challenging compared with the design of conventional digital beamforming schemes. In this paper, we investigate the HBF design for broadband multiuser millimeter wave multiple-input multiple-output systems. By utilizing the alternating minimization method and taking the weighted sum mean square error minimization criterion, a strictly convergent algorithm based on the manifold optimization method is proposed to efficiently tackle the non-convex problem. The algorithm is applicable to the analog beamforming design in both the fully-connected architecture and the partially-connected architecture. Simulation results demonstrate the fast convergence and excellent performance of the proposed scheme.
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多用户毫米波MIMO-OFDM系统的混合波束形成
用于有限射频链的大规模天线阵列的模拟和数字混合波束形成(HBF)被认为是未来无线通信的一个有前途的候选方案。由于硬件的限制,与传统数字波束形成方案的设计相比,这一问题更具挑战性。本文研究了宽带多用户毫米波多输入多输出系统的HBF设计。利用交替最小化法和加权和均方误差最小化准则,提出了一种基于流形优化方法的严格收敛算法,有效地解决了非凸问题。该算法适用于全连接结构和部分连接结构下的模拟波束形成设计。仿真结果表明,该算法具有较快的收敛速度和良好的性能。
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