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A Novel Adaptive Digital Predistortion for RF Power Amplifier Linearization Based on Simplified Volterra Series

机译:基于简化Volterra系列的RF功率放大器线性化的新型自适应数字预失真

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Adaptive digital predistortion (ADPD) is an effective approach to compensate for nonlinear distortion introduced by RF power amplifiers (PAs). Volterra series is applicable for predistorter design to linearize memory PAs; however, the number of its kernels to be identified increases greatly with its degree and memory length. In this paper, a simplified Volterra series (SVS) predistorter model is proposed. By only preserving partial Volterra kernels in the region near the main diagonal, the structure is simplified and computational complexity is reduced dramatically. Through MATLAB simulations using a Wiener-Hammerstein PA model and a two-carrier WCDMA wideband signal, linearization performances of SVS-based predistorters are demonstrated in terms of suppressing spectral regrowth.
机译:自适应数字预失真(ADPD)是补偿RF功率放大器(PAS)引入的非线性失真的有效方法。 Volterra系列适用于预失真器设计,以线性化内存PAS;但是,要识别的内核的数量随着学位和记忆长度而大大增加。本文提出了一种简化的Volterra系列(SVS)预失真器模型。仅通过在主对角线附近的区域中保存部分Volterra核,简化结构并且计算复杂性大幅降低。通过使用Wiener-Hammerstein PA型号的Matlab模拟和双载波WCDMA宽带信号,基于SVS的预逆变的线性化性能在抑制光谱再生方面进行了说明。

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