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Hybrid Precoding for mmWave Massive MIMO With One-Bit DAC

机译:MMWAVE大规模MIMO的杂交预编码用一位DAC

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Hybrid beamforming is key to achieving energy-efficient 5G wireless networks equipped with massive amount of antennas. Low-resolution data converters bring yet another degree of freedom to energy efficiency for the state-of-the-art 5G transceivers. In this work, we consider the design of hybrid precoders for massive multiple-input multiple-output (MIMO) channels in millimeter-wave (mmWave) spectrum along with one-bit digital-to-analog converters (DACs) and finite-quantized phase shifters. In particular, we propose an alternating-optimization-based precoder design which recursively computes the covariance of the quantization distortion, and updates the precoders accordingly. Numerical results verify that the achievable rate improves quickly through iterations that involve updates to the weight matrix, distortion covariance of the quantization, and the respective precoders.
机译:混合波束形成是实现配备有大量天线的节能5G无线网络的关键。低分辨率数据转换器为最先进的5G收发器带来了另一种程度的能源效率。在这项工作中,我们考虑用于毫米波(MMWAVE)频谱中的大规模多输入多输出(MIMO)通道的混合预编码器以及一位数模转换器(DAC)和有限量化相位转换器。特别地,我们提出了一种交替优化的预编码器设计,其递归地计算量化失真的协方差,并相应地更新预编码器。数值结果验证可实现的速率通过涉及对权重矩阵的更新,量化的失真协方差和相应的预编码器来快速通过迭代来提高。

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