Symmetrical Components-Based Control Technique of Doubly Fed Induction Generators under Unbalanced Voltages for Reduction of Torque and Reactive Power Pulsations

S. Wangsathitwong, S. Sirisumrannukul, S. Chatratana, W. Deleroi
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引用次数: 11

Abstract

This paper presents a control technique to reduce the effect of unbalanced voltages in the doubly fed induction generator (DFIG) in wind energy conversion systems. The unbalanced voltages cause negative effects to the DFIG such as torque pulsation and increased stator current. Based on the symmetrical component theory, the negative sequence of the stator voltage can be extracted from the three-phase stator voltage and fed to compensate the rotor voltage to reduce the unbalanced effect. The magnitude of the compensating negative sequence is calculated from the negative sequence of the stator voltage and rotor speed. The proposed method shows a promising result for reduction of torque and reactive power pulsations.
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基于对称分量的双馈异步发电机不平衡电压控制技术以减小转矩和无功脉动
本文提出了一种降低风力发电系统中双馈感应发电机(DFIG)电压不平衡影响的控制技术。电压不平衡会对DFIG产生转矩脉动和定子电流增大等负面影响。基于对称分量理论,从三相定子电压中提取出定子电压的负序并馈入补偿转子电压,以减小不平衡效应。补偿负序的大小由定子电压和转子转速的负序计算得到。该方法在减小转矩和无功脉动方面取得了良好的效果。
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