大规模MIMO中饱和功率放大器的带外干扰分析

Steve Blandino, C. Desset, A. Bourdoux, L. Perre, S. Pollin
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引用次数: 17

摘要

非线性功率放大器使传输信号失真,带外辐射成为相邻信道用户操作的干扰源。本文研究了大规模多输入多输出(MIMO)系统对OOB干扰的影响。大规模MIMO依赖于基于信道的预编码,以确保信号在接收用户设备上被建设性地添加。然而,预编码对OOB辐射的影响应该进行研究,因为随机用户可能会经历增加的干扰。假设一个三阶多项式模型来描述功率放大器的行为,我们建立了接收功率谱密度的模型。数学分析和系统级仿真证实了OOB不进行构造重组,避免了较大的干扰。大规模MIMO允许在不增加相邻频段干扰的情况下增加目标用户的带内接收功率。换句话说,对功率放大器设计的要求不那么严格,这证实了相对于传统的传输方案,更简单的硬件就足够了。结果表明,在大规模MIMO中,即使效率为65.4%的功率放大器也能满足3GPP OOB约束。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of out-of-band interference from saturated power amplifiers in Massive MIMO
Nonlinear power amplifiers distort the transmitted signal and out-of-band (OOB) radiation becomes a source of interference for users operating in adjacent channels. This paper studies the effect of Massive Multiple Input Multiple Output (MIMO) system on the OOB interference. Massive MIMO relies on channel based precoding which ensures the signal is added constructively at the receiver user equipment. However, the effect of the precoding on the OOB radiation should be investigated given that a random user could experience an increased interference. Assuming a third order polynomial model to describe the behavior of the power amplifier, we model the received power spectrum density. Mathematical analysis and system level simulation confirm that OOB does not recombine constructively avoiding large interference. Massive MIMO allows to increase the in-band received power for the target users without increasing the interference in adjacent bands. In other words, less stringent requirements are demanded for power amplifier design, confirming that simpler hardware with respect to conventional transmission scheme is sufficient. We show that in Massive MIMO, even power amplifiers with efficiency of 65.4% satisfy 3GPP OOB constraints.
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