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Design of Iterative Hybrid Beamforming for Multi-User mmWave Massive MIMO Systems

机译:多用户mmWave大规模MIMO系统的迭代混合波束成形设计

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Hybrid beamforming that combines analog phase shift and digital processing is a promising solution to alleviate the implementation cost and power consumption in millimeter wave (mmWave) massive MIMO systems. To achieve sum rate optimization, an iterative scheme that considers both the analog and digital precoders in the optimization metric is proposed. The digital precoder is mainly used to remove multiple access interference for enhancing the multiplexing gain. Then, the coordinated beamforming procedure between the base station and mobile stations is performed to exploit the array gain. Although the iterative scheme is used, only few iterations are required. This scheme can also be extended to the systems using precoding and combining vectors from quantized codebooks. Furthermore, with the channel reciprocity property or the two-phase training strategy, the iterative scheme can obtain the required channel information. From the simulation results, the sum rate is improved, especially when quantized codebooks are used.
机译:结合了模拟相移和数字处理的混合波束成形是一种有希望的解决方案,可减轻毫米波(mmWave)大规模MIMO系统的实现成本和功耗。为了实现总速率优化,提出了一种在优化度量中同时考虑模拟和数字预编码器的迭代方案。数字预编码器主要用于消除多址干扰,以提高复用增益。然后,执行基站和移动站之间的协调波束成形过程以利用阵列增益。尽管使用了迭代方案,但只需要很少的迭代。该方案还可以扩展到使用预编码并组合来自量化码本的向量的系统。此外,利用信道互易性或两阶段训练策略,该迭代方案可以获得所需的信道信息。从仿真结果来看,总和率得到了改善,尤其是在使用量化码本的情况下。

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