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Robust Analog Precoding Designs for Millimeter Wave MIMO Transceivers With Frequency and Time Division Duplexing

机译:具有频分和时分双工的毫米波MIMO收发器的鲁棒模拟预编码设计

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摘要

Millimeter wave (mmWave) communication provides high data rates thanks to large arrays at the transmitter and receiver, coupled with large bandwidth channels. Exploiting the arrays is challenging due to the need to configure precoding at the transmitter based on the large frequency selective channel. In this paper, we exploit the power iteration principle and propose a robust analog precoding training algorithm that can be applied in both frequency division duplex transmission systems and time division duplex transmission systems with or without RF calibration. We further analyze the convergence of the proposed algorithm and show how it converges to the singular value decomposition optimality exponentially. We propose null space projection on top of the power iteration to form multiple orthogonal beams at the transmitter and receiver. Strongest tap selection with proper energy pruning is used to collect as much precoding gain as possible from a frequency selective fading channel. The exponential effective SINR mapping performance is evaluated and demonstrates that the overall approach works smoothly. Numerical simulation results demonstrate algorithm robustness and the algorithm works not only for the simplified mmWave directional channels, but also for more general rich scattering channels.
机译:毫米波(mmWave)通信提供了高数据速率,这要归功于发射器和接收器处的大型阵列以及宽带宽的信道。由于需要在发射器上基于大频率选择性信道配置预编码,因此利用阵列具有挑战性。在本文中,我们利用功率迭代原理,提出了一种鲁棒的模拟预编码训练算法,该算法可用于频分双工传输系统和时分双工传输系统中,无论有无RF校准。我们进一步分析了所提出算法的收敛性,并证明了它如何以指数形式收敛到奇异值分解最优性。我们建议在功率迭代的顶部进行零空间投影,以在发射器和接收器处形成多个正交波束。具有适当能量修剪功能的最强抽头选择用于从频率选择性衰落信道中收集尽可能多的预编码增益。评估了指数有效SINR映射性能,并证明了整体方法可以顺利进行。数值模拟结果证明了算法的鲁棒性,该算法不仅适用于简化的毫米波定向信道,而且适用于更通用的丰富散射信道。

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