Impact of Reactive Power Control on Transient Stability for Doubly-Fed Induction Machines

S. Wangsathitwong, S. Sirisumrannukul, S. Chatratana, W. Deleroi
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Abstract

This paper analyses the transient stability limit of stator reactive power compensation of doubly fed induction machines under the operation of decoupled control of active power and reactive power. Based on the stator-fleld-oriented reference frame, voltage equations are linearized and the corresponding eigenvalues are determined to identify a stable operating region. With the eigenvalues, the maximum reactive power can be directly determined which can be used as limits for the range of operation. Dynamic responses of real power, reactive power and magnetizing current from a simulation result; are presented to verify the limits given by the characteristic equation.
无功控制对双馈感应电机暂态稳定性的影响
本文分析了双馈异步电机在有功与无功解耦控制下定子无功补偿的暂态稳定极限。在定子磁场导向参考系的基础上,对电压方程进行线性化,确定相应的特征值,从而识别出稳定的工作区域。利用特征值,可以直接确定最大无功功率,并以此作为运行范围的限值。仿真结果的实功率、无功功率和磁化电流的动态响应;对特征方程给出的极限进行了验证。
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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