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Efficient Analog Beamforming with Dynamic Subarrays for mmWave MU-MISO Systems

机译:具有MMWAVE MU-MISO系统的动态子阵列的高效模拟波束形成

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Analog beamformer with large-scale antenna arrays has been widely considered in millimeter wave (mmWave) communication systems because of its superiority in hardware cost and energy consumption compared with traditional fully digital beamforming schemes. In this paper, we introduce an efficient dynamic subarray analog beamforming architecture with lowresolution phase shifters (PSs) for mmWave multiuser multipleinput single-output (MU-MISO) systems. In an effort to mitigate the performance loss due to the use of low- resolution PSs, each user can dynamically select a non-overlap subarray from total transmit antennas and use corresponding subarray analog beamformer to transmit signals. This dynamic subarray analog beamforming architecture can utilize the multi- antenna/multiuser diversities by dynamically adapting to channel state information (CSI) of users. An efficient dynamic subarray analog beamformer design algorithm is also presented, which aims at maximizing the sum-rate of the MU-MISO system. Simulation results demonstrate that the proposed dynamic analog beamforming solution can significantly outperform the conventional fixed-subarray schemes.
机译:由于与传统的完全数字波束成形方案相比,具有大规模天线阵列的模拟波束形成器已被广泛考虑在毫米波(MMWAVE)通信系统中,其硬件成本和能耗的优势。在本文中,我们用Lowresolution相移器(PSS)引入了一种高效的动态子阵列模拟波束形成架构,用于MMWAVE多用户多个输出单输出(MU-MISO)系统。为了减轻由于使用低分辨率PSS而减轻性能损失,每个用户可以动态地从总发射天线动态地选择非重叠子阵列,并使用相应的子阵列模拟波束形成器来发送信号。这种动态子阵列模拟波束成形架构可以通过动态适应用户的信道状态信息(CSI)来利用多天线/多个多个分集。还提出了一种有效的动态子阵列模拟波束形成器设计算法,旨在最大化MU-MISO系统的总和率。仿真结果表明,所提出的动态模拟波束形成解决方案可以显着优于传统的固定子阵列方案。

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