基于正交多项式展开的OFDM系统非线性功率放大器自适应预失真线性化

O. Muta, Isamu Kaneko, Y. Akaiwa, H. Furukawa
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引用次数: 3

摘要

自适应预失真器是一种补偿功率放大器非线性失真的有效技术。为了提高预失真器的参数收敛速度,研究了一种正交多项式级数展开技术。针对OFDM系统中受记忆效应影响的非线性功率放大器,提出了一种基于正交多项式展开的自适应预失真线性化方法,该方法利用正交多项式的加权和构造有记忆预失真器和无记忆预失真器。此外,为了实现预失真器的参数优化速度提高,我们提出了一种递归计算中确定步长的方法。研究了预失真器在峰值平均功率比(PAPR)降低和未降低两种情况下的参数收敛性能,采用部分发射序列(PTS)技术降低峰值平均功率比。计算机仿真结果表明,在受记忆效应影响的非线性功率放大器OFDM系统中,尽管采用PTS降低了OFDM信号的PAPR,但所提出的自适应预失真器的参数收敛时间比非正交预失真器更快。将自适应预失真与PAPR降低技术相结合,进一步提高了功率附加效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive predistortion linearization based on orthogonal polynomial expansion for nonlinear power amplifiers in OFDM systems
Adaptive predistorter is an effective technique to compensate for nonlinear distortion in a power amplifier. As a method to improve the parameter convergence speed in the predistorter, a series expansion technique with an orthogonal polynomials has been investigated. In this paper, we present an adaptive predistortion linearization method based on orthogonal polynomial expansion for a nonlinear power amplifier affected by memory effect in OFDM systems, where both memory and memoryless predistorter are constructed by the weighted sum of orthogonal polynomials. In addition, to achieve the parameter optimization speed improvement of the predistorter, we propose a method to determine step-size in a recursive calculation. The parameter convergence performance of the predistorter is investigated in OFDM systems with and without peak-to-average power ratio (PAPR) reduction, where the partial transmit sequence (PTS) technique is employed to reduce PAPR. Computer simulation results show that the proposed adaptive predistorter achieves faster parameter convergence time than that of non-orthogonal one in OFDM systems with nonlinear power amplifier affected by memory effect, even though PAPR of OFDM signal is reduced by using PTS. It is also confirmed that power added efficiency is further improved by combining the adaptive predistortion with PAPR reduction technique.
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