Review of Different Current Control Strategies for LC-coupling Hybrid Active Power Filter

Qian-Rong Hong, Wai-Kit Sou, Pak-Ian Chan, Cheng Gong, C. Lam
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Abstract

Compared with traditional active power filter (APF), the dc-link voltage of LC-coupling hybrid active power filter (LC-HAPF) is lower, thus reducing the system cost and power loss. In order to improve the compensation performance of the LC-HAPF, many current controllers have been proposed in recent decade, which are hysteresis current control (HCC), quasi-proportional-resonant control (QPRC), deadbeat current control (DBCC), second-order sliding-mode control (SOSMC), vector proportional-integral current control (VPIC) and improved model predictive control (IMPC). In this paper, the model of these six controllers will be first reviewed and introduced. After that, their corresponding parameters design methodology are given. Finally, simulation results will be given to compare their compensation performance and summarize their characteristics.
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lc -耦合混合有源电力滤波器电流控制策略综述
与传统有源电力滤波器(APF)相比,lc -耦合混合有源电力滤波器(LC-HAPF)的直流电压更低,从而降低了系统成本和功率损耗。为了提高LC-HAPF的补偿性能,近十年来提出了许多电流控制器,包括滞后电流控制(HCC)、准比例谐振控制(QPRC)、无差拍拍电流控制(DBCC)、二阶滑模控制(SOSMC)、矢量比例积分电流控制(VPIC)和改进模型预测控制(IMPC)。本文将首先对这六种控制器的模型进行回顾和介绍。然后给出了相应的参数设计方法。最后给出仿真结果,比较它们的补偿性能,总结它们的特点。
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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