使用移相器和开关的毫米波MIMO混合预编码设计

Qiang Liu, Chenhao Qi, Xianghao Yu, Geoffrey Y. Li
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引用次数: 1

摘要

为了减少毫米波大规模多输入多输出通信中模拟预编码的移相器数量,我们研究了昂贵移相器和低成本开关的混合使用。与现有的相位固定且不受信道状态信息影响的固定移相器结构不同,我们考虑了相位可变且受硬件约束的可变移相器结构。在VPS体系结构的基础上,提出了一种混合预编码设计方案VPS-HPD,根据信道状态信息对相位进行优化。具体地说,我们交替优化模拟预编码器和数字预编码器,其中前者被转换成几个子问题,每个子问题进一步包括相位矩阵和开关矩阵的交替优化。仿真结果表明,VPS-HPD方案的频谱效率非常接近全数字预编码的频谱效率,在移相器数量少的全连接架构下高于现有的MO-AltMin方案,在移相器数量相同的FPS架构下显著高于现有的FPS- altmin方案。
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MmWave MIMO Hybrid Precoding Design Using Phase Shifters and Switches
To reduce the number of phase shifters for analog precoding in millimeter wave massive multiple-input multiple-output communications, we investigate the hybrid use of expensive phase shifters and low-cost switches. Different from the existing fixed phase shifter (FPS) architecture where the phases are fixed and independent of the channel state information, we consider variable phase shifter (VPS) whose phases are variable and subject to the hardware constraint. Based on the VPS architecture, a hybrid precoding design (HPD) scheme named VPS-HPD is proposed to optimize the phases according to the channel state information. Specifically, we alternately optimize the analog precoder and the digital precoder, where the former is converted into several subproblems and each subproblem further includes the alternating optimization of the phase matrix and switch matrix. Simulation results show that the spectral efficiency of the VPS-HPD scheme is very close to that of the fully digital precoding, higher than that of the existing MO-AltMin scheme for the fully-connected architecture with much fewer phase shifters, and substantially higher than that of the existing FPS-AltMin scheme for the FPS architecture with the same number of phase shifters.
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