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Digital Linearization of Multiple Power Amplifiers in Phased Arrays for 5G Wireless Communications

机译:用于5G无线通信的相控阵中多功率放大器的数字线性化

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摘要

A novel digital predistortion (DPD) architecture is proposed to linearize power amplifiers (PAs) in a phased array applicable to the wireless communication systems. First, the composite signal of the array outputs over the air is captured by an extra observation chain deployed in this architecture. Although the observed signal may differ from the composite signal of the array pointing to an arbitrary target, it contains all the nonlinearities of the PAs inside the array. Thus, the nonlinearities of the PAs in the array can be simply characterized from the observed signal by using a single nonlinear model. Based on this nonlinear model, an indirect learning method is then adopted to estimate the reverse nonlinear model coefficients, i.e., the DPD model coefficients, for linearization of the PA array. Moreover, a testbed is designed with a PA array composed of four identical PAs and experiments are performed on a 256-QAM waveform of 100-MHz bandwidth to evaluate the effectiveness of the proposed method. Experimental results have validated that the adjacent channel power ratio is improved from -31 dBc to -48 dBc and the error vector magnitude is improved from 5% to 0.8%.
机译:提出了一种新颖的数字预失真(DPD)架构以在适用于无线通信系统的分阶段阵列中线性化功率放大器(PAS)。首先,通过在该架构中部署的额外观察链捕获空气中的阵列输出的复合信号。尽管观察到的信号可以与指向任意目标的阵列的复合信号不同,但它包含阵列内的PA的所有非线性。因此,通过使用单个非线性模型,阵列中PA的非线性可以简单地用观察到的信号表征。基于该非线性模型,然后采用间接学习方法来估计PA阵列的线性化的反向非线性模型系数,即DPD模型系数。此外,测试平台设计有由四个相同的PAS组成的PA阵列,并且在100-MHz带宽的256-QAM波形上执行实验,以评估所提出的方法的有效性。实验结果已经验证,相邻的信道功率比从-31dBc到-48 dBc提高,误差矢量幅度从5 %提高到0.8 %。

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