Design and implementation of DVR as fault current limiter in DFIG during grid faults

Pub Date : 2021-05-10 DOI:10.1504/IJESMS.2021.10037809
Sheena Latif, J. S. Savier
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引用次数: 1

Abstract

The wind grid code requirements for low voltage ride through of various countries demand the DFIG to remain connected to the grid during the event of occurrence of voltage dip. Dynamic voltage restorer supports the grid and enables the uninterrupted operation of DFIGs during partial voltage sag. The increased depth of voltage sag causes rise in stator current and eventual increases in rotor current and dc link capacitance voltage of DFIG. This paper focuses on an enhanced topology of fault current limiting dynamic voltage restorer for supporting the grid and DFIG during fault currents caused by severe voltage dips. The optimal parameters design of fault current limiting dynamic voltage restorer for DFIG systems are discussed in detail. The novelty of the proposed control strategy of fault current limiting dynamic voltage restorer is justified by comparing its performance with the existing methods of fault current mitigations popular with wind farms such as crowbar protection and dc chopper methods. Analytical results of fault current limiting dynamic voltage restorer with DFIG in time domain prove to have the combined effect of both crowbar protection and dc chopper-controlled rotor protection during severe unbalanced grid faults.
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电网故障时DVR作为DFIG故障限流器的设计与实现
各国风电电网规范对低压穿越的要求,要求在电压陡降的情况下,DFIG保持与电网的连接。动态电压恢复器支持电网,使DFIGs在局部电压下降期间不间断运行。电压凹陷深度的增加导致DFIG定子电流增大,最终导致转子电流和直流链路电容电压增大。本文研究了一种改进的故障限流动态电压恢复器拓扑结构,用于在严重电压跌落引起的故障电流中支持电网和DFIG。详细讨论了DFIG系统故障限流动态电压恢复器的最优参数设计。将限流动态电压恢复器控制策略的性能与现有风电场常用的故障电流缓解方法(如crowbar保护和直流斩波方法)进行了比较,证明了该控制策略的新颖性。基于DFIG的故障限流动态电压恢复器在时域上的分析结果证明,在电网严重不平衡故障时,具有撬棍保护和直流斩波控制转子保护的综合效果。
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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