Optimized current control and dynamic coordination strategy for large-capacity harmonic compensation system

Kangli Liu, W. Cao, Jianfeng Zhao, Jun You, Quan Gu
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引用次数: 2

Abstract

Multi-modular active power filter has advantages in compensating harmonic current, which results from its controllability and dynamic response performance. However, to realize a reliable and high-precision harmonic compensation system, current control and dynamic coordination strategy need to be optimized. In this paper, centralized current loop is optimized with amplitude and phase correction based on comprehensive analysis of the single PI current loop and selective harmonic detection under multiple rotating reference frame. An improved current-limiting strategy with harmonic frequency priority setting is proposed, which will improve the operation reliability and compensation capacity utilization. In addition, based on the proposed harmonic current control and current-limiting strategy, this paper presents dynamic coordination strategy for large-capacity harmonic compensation system. The proposed strategy determines operating mode according to the component of harmonic current. A novel parallel topology for modular active power filter combining two traditional topologies is used. Finally, the simulation waveforms and experiment results verify the reasonability of the proposed topology and control strategy.
大容量谐波补偿系统的优化电流控制与动态协调策略
多模块有源电力滤波器的可控性和动态响应性能使其在补偿谐波电流方面具有优势。然而,要实现可靠、高精度的谐波补偿系统,需要对电流控制和动态协调策略进行优化。本文在综合分析单PI电流环和多旋转参照系下的选择性谐波检测的基础上,对集中式电流环进行了幅值和相位校正优化。提出了一种改进的谐波频率优先级限流策略,提高了系统运行可靠性和补偿能力利用率。此外,在提出谐波电流控制和限流策略的基础上,提出了大容量谐波补偿系统的动态协调策略。该策略根据谐波电流的组成来确定运行模式。将两种传统拓扑结构相结合,提出了一种模块化有源滤波器并联拓扑结构。最后,仿真波形和实验结果验证了所提拓扑和控制策略的合理性。
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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