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Joint Beamforming and PAPR Reduction in Massive MIMO: Analysis of Gain in Energy Efficiency

机译:大规模MIMO中的联合波束成形和PAPR降低:能效增益分析

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The main goal of this article is to accurately quantity the gain in energy efficiency that can be obtained by combining PAPR reduction techniques with beamforming in the context of massive MIMO communications. To this purpose, we first derive and analyze the expressions of sum capacity, power consumption, and energy efficiency for hybrid, digital and analog beamforming for massive MIMO systems in the millimeter wave frequency range. Then, we use these results to derive and quantity the gain in energy efficiency at system level that can be obtained by combining PAPR reduction for improved power amplifier efficiency with beamforming in massive MIMO systems. In addition, we derive the expressions allowing to determine the optimal amount of antennas M that should be connected to each RF chain in a partially connected hybrid beamforming scheme in order to maximize the systems energy efficiency. Evaluation of the derived expressions clearly show that a noticeable gain in the systems energy efficiency is obtained when PAPR reduction is added, and allows to analyze the advantages and disadvantages of each approach from an energy efficiency point of view.
机译:本文的主要目的是在大规模MIMO通信的情况下,准确地量化可通过将PAPR降低技术与波束赋形相结合而获得的能效增益。为此,我们首先导出并分析毫米波频率范围内大规模MIMO系统的混合,数字和模拟波束成形的总容量,功耗和能效的表达式。然后,我们使用这些结果来推导和量化系统级的能效增益,这可以通过结合使用PAPR降低以提高功率放大器效率和大规模MIMO系统中的波束成形来获得。另外,我们推导出允许确定在部分连接的混合波束成形方案中应连接到每个RF链的天线M的最佳数量的表达式,以使系统能效最大化。对派生表达式的评估清楚地表明,添加PAPR降低后,系统的能效显着提高,并且可以从能效角度分析每种方法的优缺点。

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