基于分段多项式的功率放大器非线性自适应仿真

Zhe Zheng, Lili Song, Yang Zhou
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引用次数: 0

摘要

在无线通信系统中,功率放大器的非线性会对传输信号产生不良影响,改变信道特性。为了准确地估计通信系统的性能,信道模拟器需要模拟功率放大器的非线性。提出了一种基于分段多项式的自适应仿真器。该方法借鉴了功率放大器的数字预失真技术,采用自适应学习结构。在信道模拟器的射频功率放大器前增加非线性预处理模块,并采用自适应算法使其级联特性逐渐逼近仿真功率放大器的非线性。为了解决传统多项式和查找表技术的不足,该方法采用多个低奇次多项式对非线性进行分段拟合,提高了仿真精度。并使用查找表存储多项式系数,以减少计算量。仿真结果表明,该方法具有较高的仿真精度和较快的收敛速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive Simulator of Power Amplifier Nonlinearity Based on Piecewise Polynomial
In the wireless communication system, power amplifier nonlinearity has bad effects on transmitting signals and changes channel characteristics. In order to exactly estimate communication system performance, a channel simulator needs to simulate power amplifier nonlinearity. This paper proposes a novel adaptive simulator based on piecewise polynomial. Learning from the digital predistortion technique of power amplifier, the proposed method uses adaptive study structure. It adds a nonlinear preprocessing module before the radio power amplifier of channel simulator, and uses adaptive algorithm to make their cascading characteristics gradually approach to the simulated power amplifier nonlinearity. In order to solve the disadvantages in traditional polynomial and look-up table techniques, the proposed method uses multiple lower-odd-order polynomials to piecewise fit nonlinearity for improving simulation precision. And the look-up table is used to store polynomial coefficients for reducing the computational load. The simulation results indicate that the proposed method provides high simulation precision and fast convergence speed.
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