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Low Complexity Hybrid Beamforming for Uplink Multiuser mmWave MIMO Systems

机译:用于上行链路多用户mmWave MIMO系统的低复杂度混合波束成形

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This paper considers a low-complexity hybrid beamforming (HBF) for uplink multiuser mmWave MIMO systems. The proposed scheme employs a two-stage beamforming design. In the first stage, the base station (BS) analog beamforming is designed to maximize the kth user's signal-to-interference-plus-noise-ratio (SINR) in single-carrier systems and to maximize the sum rate's upper bound of uplink virtual cooperative users in orthogonal frequency division multiplexing (OFDM) based systems (also called multi-carrier systems), respectively. Furthermore, we perform phases extraction and quantize phase control on the obtained BS analog beamforming. In the second stage, the BS digital beamforming is designed by performing minimum mean square error (MMSE) with the low-dimensional effective channel. The proposed schemes are simulated in both ideal Rayleigh fading channels and sparsely scattered mmWave channels, approaching the sum rate performance of the full digital solution in single-carrier case and of the virtual uplink user cooperation scheme in multi-carrier case, respectively. The simulation results demonstrate that the proposed schemes outperform the existing HBF designs for uplink multiuser mmWave MIMO systems.
机译:本文考虑了用于上行链路多用户mmWave MIMO系统的低复杂度混合波束成形(HBF)。所提出的方案采用了两阶段的波束成形设计。在第一阶段,基站(BS)模拟波束成形旨在最大程度地提高单载波系统中第k个用户的信号与干扰加噪声比(SINR),并最大程度地提高上行链路虚拟信号的总和率上限基于正交频分复用(OFDM)的系统(也称为多载波系统)中的合作用户。此外,我们对获得的BS模拟波束成形执行相位提取和量化相位控制。在第二阶段,通过对低维有效信道执行最小均方误差(MMSE)来设计BS数字波束成形。分别在理想的瑞利衰落信道和稀疏的毫米波信道上对提出的方案进行了仿真,分别接近单载波情况下的全数字解决方案和多载波情况下的虚拟上行用户协作方案的总速率性能。仿真结果表明,所提出的方案优于现有的用于上行链路多用户mmWave MIMO系统的HBF设计。

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