A Discrete-Time Decoupled Current Control Scheme Applied to VSC-Based Three-Phase Three-Line Systems

Hui Wang, Qingmin Li, Guangzhu Wang, Xingguo Tan
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引用次数: 1

Abstract

Accurate current control of the voltage source converters (VSCs) is one of the key research subjects in modern power electronics. To achieve a preferable solution to current coupling effect in the VSC-based three-phase three-line system, a discrete-time decoupled current control strategy is proposed in the paper. With integration of the α-β transform and two independent current controllers, the proposed methodology can effectively implement decoupled control of the three-phase currents, which can thereby eliminate the impact from the neutral-point voltage especially under asymmetrical loading conditions. Control performance under digital realization was characterized with extensive tests on a shunt active power filter (SAPF) platform. Both the simulative and experimental results have demonstrated that the SAPF could function well and thereby verified the feasibility and effectiveness of the proposed current control methodology.
基于vsc的三相三线系统离散时间解耦电流控制方法
电压源变换器的精确电流控制是现代电力电子学的重点研究课题之一。为了更好地解决基于vsc的三相三线系统的电流耦合问题,提出了一种离散时间解耦电流控制策略。结合α-β变换和两个独立的电流控制器,该方法可以有效地实现三相电流的解耦控制,从而消除中性点电压的影响,特别是在不对称负载条件下。在并联型有源电力滤波器(SAPF)平台上进行了大量测试,对数字实现下的控制性能进行了表征。仿真和实验结果均表明,该控制方法能很好地发挥作用,从而验证了所提出的现行控制方法的可行性和有效性。
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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