Selective harmonic compensation scheme for active power filters using generalized predictive control

Geng Tao, Wang Menglu, Sun Jianyan
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引用次数: 1

Abstract

This study proposes a high precision selective harmonic compensation scheme for active power filters, which designed by using the basic theory of GPC. A generalized predictive control (GPC) strategy based on the transfer function model is adopted. The GPC can compensate the delay in detecting the harmonic and the better result of compensation for harmonic can be achieved. As Kalman filter can detect each order harmonic separately, the compensation on delay time arouse from digital implementation is performed. The proposed scheme improves the stability of APF, prompts the precision of harmonic compensation and is applicable to both single phase and three phase inverters. The effectiveness of the scheme is verified by simulation. The experimental results show that compared with traditional controller, the GPC controller can improve the accuracy and robustness of the system and the feasibility of GPC in the program can be proved.
基于广义预测控制的有源电力滤波器选择性谐波补偿方案
本文提出了一种基于GPC基本理论的电力有源滤波器高精度选择性谐波补偿方案。采用了一种基于传递函数模型的广义预测控制策略。GPC可以补偿谐波检测的延迟,达到较好的谐波补偿效果。由于卡尔曼滤波器可以单独检测各阶谐波,因此对数字实现引起的延迟时间进行补偿。该方案提高了有源滤波器的稳定性,提高了谐波补偿的精度,适用于单相和三相逆变器。通过仿真验证了该方案的有效性。实验结果表明,与传统控制器相比,GPC控制器可以提高系统的精度和鲁棒性,证明了GPC在程序中的可行性。
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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