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Digital Beamforming with PAPR Reduction: An Approach for Energy Efficient Massive MIMO

机译:降低PAPR的数字波束成形:一种高效节能的大规模MIMO方法

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In this work, we present a novel strategy aiming at obtaining higher energy efficiency in mm-wave digital massive MIMO systems. The proposed approach consists in a joint optimization of time-domain digital beamforming and Tone-Reservation based Peak-to-average Power Ratio (TR-PAPR) reduction. The main idea is to perform broadband beam-steering by adding progressive time delays to the reduced PAPR signals fed to the antennas. These time delays are implemented in digital baseband through time-domain fractional delay filter banks (TDFDFBs). Simulation results show that the increment in MER due to PAPR reduction is maintained for the progressively delayed signals for beam-steering generated by interpolation at the output of the filter bank. As a result, the required power amplifiers (PAs) can all be biased with a lower input back-off (IBO) operation point, leading to significant energy savings while keeping low levels of in-band distortion.
机译:在这项工作中,我们提出了一种新颖的策略,旨在在毫米波数字大规模MIMO系统中获得更高的能源效率。所提出的方法包括时域数字波束成形和基于音调​​保留的峰均功率比(TR-PAPR)降低的联合优化。主要思想是通过向累加到天线的减少的PAPR信号增加渐进的时间延迟来执行宽带波束控制。这些时间延迟是通过时域分数延迟滤波器组(TDFDFB)在数字基带中实现的。仿真结果表明,对于通过滤波器组输出处的插值生成的波束转向逐渐延迟的信号,由于PAPR减小而导致的MER增量得以保持。结果,所需的功率放大器(PA)都可以以较低的输入回退(IBO)工作点偏置,从而在节省大量能量的同时保持了低水平的带内失真。

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