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Singular Value Thresholding based Adaptive Approach for Hybrid Beamforming in MmWave Massive MIMO-OFDM Transmitters

机译:基于奇异值阈值的MMWAVE大型MIMO-OFDM发射机混合波束形成的基于自适应方法

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Thanks to the high spectral efficiency and the abundant bandwidths, millimeter-wave (mmWave) communication combined with massive multiple-input multiple-output (MIMO) technology have been considered as a promising candidate for next generation mobile communication systems. As a mmWave massive MIMO system requires a huge number of radio frequency (RF) chains, hybrid analog/digital (A/D) beamforming (BF) is addressed as the best solution to surpass digital BF limitations and reach lower cost and power consumption. Therefore, new specific A/D BF algorithms for mmWave massive MIMO systems are required. This paper considers the problem of BF design in a hybrid mmWave massive MIMO-OFDM system using the sub-array structure which reduces the number of phase shifters since each RF chain should be only connected to a specific sub-array. For this structure, we propose an adaptive hybrid Am BF design based on singular value thresholding algorithm. Then, our proposal is evaluated in terms of spectral efficiency, outperforming the semidefinite relaxation (SDR) based algorithm and providing an important reduction in terms of computational complexity.
机译:由于高光谱效率和丰富的带宽,毫米波(MMWAVE)通信与大规模多输入多输出(MIMO)技术相结合,被认为是下一代移动通信系统的有希望的候选者。由于MMWAVE大规模MIMO系统需要大量的射频(RF)链,混合模拟/数字(A / D)波束形成(BF)被寻址为最佳解决方案,以超越数字BF限制并达到更低的成本和功耗。因此,需要用于MMWave大规模MIMO系统的新的特定A / D BF算法。本文考虑了使用子阵列结构的混合MMWAVE MIMO-OFDM系统中的BF设计的问题,该子阵列结构减少了相移器的数量,因为每个RF链应该仅连接到特定子阵列。对于这种结构,我们提出了一种基于奇异值阈值算法的自适应混合AM设计。然后,我们的提案是在谱效率方面进行评估,优于基于Semidefinite弛豫(SDR)的算法,并在计算复杂性方面提供重要降低。

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