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One-Bit Hybrid Precoding for Wideband Millimeter-Wave Massive MIMO Systems

机译:宽带毫米波大规模MIMO系统的一位混合预编码

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摘要

Hybrid precoding is an effective method for millimeter-wave (mmWave) massive multiple input multiple output (MIMO) system to reduce the number of radio frequency (RF) chains without an obvious sum-rate loss. However, the current literature on hybrid precoding considers either the high resolution (HR) phase shifters (PSs) with high power consumption or the impractical narrowband mmWave channel model. To this end, in this paper, we investigate an energy-efficient hybrid precoding scheme using one-bit PSs for the practical frequency-selective wideband mmWave massive MIMO systems. Specifically, we provide energy consumption analysis to reveal the fact that the energy consumed by the one-bit PSs is much less as compared to the HR-PSs and the array gain loss incurred by using one-bit PSs is also very small. In addition, motivated by the cross- entropy optimization (CEO) algorithm evolved for machine learning, we propose the CEO-based hybrid precoding scheme to maximize the achievable sum- rate of the considered system. The performance evaluation demonstrates that our proposed scheme can obtain the near-optimal sum-rate and considerably higher energy efficiency than some existing works.
机译:对于毫米波(mmWave)大规模多输入多输出(MIMO)系统,混合预编码是一种有效的方法,可以减少射频(RF)链的数量而不会造成明显的总速率损失。但是,当前有关混合预编码的文献考虑了具有高功耗的高分辨率(HR)移相器(PS)或不切实际的窄带mmWave信道模型。为此,在本文中,我们针对实际的频率选择性宽带mmWave大规模MIMO系统,研究了一种使用一位PS的节能混合预编码方案。具体而言,我们提供了能耗分析,以揭示一个事实,即与HR-PS相比,一位PS消耗的能量要少得多,而使用一位PS引起的阵列增益损失也很小。此外,受机器学习进化的交叉熵优化(CEO)算法的启发,我们提出了基于CEO的混合预编码方案,以最大程度地提高所考虑系统的可实现总和。性能评估表明,与某些现有工作相比,我们提出的方案可以获得接近最佳的总速率,并且能效明显更高。

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