Adaptive sliding mode control of DFIG fed by matrix converter during grid faults

A. Alalei, M. Kermadi, A. Nesba, A. Hazzab
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引用次数: 1

Abstract

The doubly fed induction generator (DFIG) is one of the mostly used options in variable-speed wind power generation. The present paper studies the transient behavior of the DFIG fed by a matrix converter during network voltage dips. The dynamic model used for the transient analysis of the DFIG during network disturbances is presented. Vector control strategy is used to ensure independent control of the active and reactive powers. In order to illustrate the behavior of the DFIG during network disturbances, a symmetrical voltage dip is applied to the DFIG stator terminals. This voltage dip is chosen within the limits set by the grid codes considered in the present paper. Simulation results showing large transient stator and rotor currents are presented and discussed. Finally, the mostly used technique to ensure a low voltage ride-through capability for the DFIG and to minimize the effects of grid disturbances on the generator is reviewed.
基于矩阵变换器的DFIG故障自适应滑模控制
双馈感应发电机(DFIG)是变速风力发电中最常用的发电方式之一。本文研究了由矩阵变换器供电的DFIG在网络电压下降时的暂态行为。提出了用于电网扰动下DFIG暂态分析的动态模型。采用矢量控制策略,保证有功功率和无功功率的独立控制。为了说明DFIG在网络干扰下的行为,在DFIG定子端施加了一个对称的电压倾斜。这个电压降是在本文所考虑的电网规范所规定的范围内选择的。给出并讨论了大瞬时定子和转子电流的仿真结果。最后,回顾了确保DFIG具有低电压穿越能力和最小化电网干扰对发电机影响的最常用技术。
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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