混合有源滤波器抑制工业电力系统谐波谐振的迭代学习控制策略

X. Zha, Yun-ping Chen
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引用次数: 11

摘要

本文介绍了迭代学习控制策略在工业电力系统中以抑制谐波共振为目的的混合有源滤波器中的应用。该控制策略将反馈和前馈学习控制相结合,有利于优化阻尼谐波谐振的性能。在混合滤波器中,为了获得合适的电压源型逆变器有源滤波器的参考电压,反馈控制方案主要关注无功谐波电流的补偿,前馈学习控制注重尽快跟踪源电压畸变和负载谐波电流。该控制策略还可以简化控制器的配置,只有源当前视点,算法简单。本文还建立了一套系统自优化性能的策略,并结合降低源电流对应参考电压的THD,提出了更实用的系统稳定状态识别准则。本文给出了基于12脉冲整流系统的仿真和实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The iterative learning control strategy for hybrid active filter to dampen harmonic resonance in industrial power system
This paper introduces application of iterative learning control strategy to hybrid active filter with the purpose of damping harmonics resonance in industrial power system. The control strategy can facilitate optimizing performance of damping harmonics resonance due to combination of feedback and feedforward learning control. In the hybrid filter, to obtain the proper reference voltage for voltage-source inverter based active filter, the feedback control scheme mainly focuses on the compensation of reactive power harmonic current and feedforward learning control puts its attention on tracking source voltage distortion and load harmonic current as fast as possible. The control strategy can also simplify configuration of the controller with only source current viewpoints and easy algorithm. The paper still establishes a set of strategy to self-optimizing performance of the system, and presents more useful criteria for identification of stable state of system incorporating reduction of THD of source current corresponding to reference voltage. Some simulation and experimental results based on 12-pulse rectifier system examined are given in the paper.
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