Automated Design and Implementation of Resonant Controllers for Current Control of Shunt Active Filters

W. Lenwari, M. Sumner, P. Zanchetta
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引用次数: 4

Abstract

This paper presents the automated design of resonant controllers for current control of three phase shunt active filters. The design methods employs a Genetic Algorithm (GA) based routine. The resonant control compensator is introduced in order to improve the control accuracy and performance for AC input signals. An accurate harmonic current control for shunt active filters can be achieved using resonant compensators. In this paper, the current control system is designed to operate with a single dq reference frame, synchronous with the 50 Hz supply voltage, for the compensation of all main harmonic currents, 5th, 7th, 11th and 13th. The design procedure and the principle of the proposed control method are presented. Experimental results confirm the accuracy and effectiveness of the GA-designed compensators, showing excellent harmonic current tracking performance.
并联有源滤波器电流控制谐振控制器的自动化设计与实现
本文介绍了用于三相并联有源滤波器电流控制的谐振控制器的自动化设计。设计方法采用基于遗传算法的程序。为了提高交流输入信号的控制精度和性能,引入了谐振控制补偿器。采用谐振补偿器可以实现对并联有源滤波器谐波电流的精确控制。本文设计的电流控制系统采用单dq参考系,与50hz电源电压同步运行,用于补偿5、7、11、13主谐波电流。介绍了该控制方法的设计过程和原理。实验结果证实了该补偿器的准确性和有效性,显示出良好的谐波电流跟踪性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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