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Control of a doubly fed induction generator in a wind turbine during grid fault ride-through.

机译:电网故障穿越期间对风力发电机中双馈感应发电机的控制。

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摘要

This paper analyzes the ability of a doubly fed induction generator (DFIG) in a wind turbine to ride through a grid fault and the limitations to its performance. The fundamental difficulty for the DFIG in ride-through is the electromotive force (EMF) induced in the machine rotor during the fault, which depends on the dc and negative sequence components in the stator-flux linkage and the rotor speed. The investigation develops a control method to increase the probability of successful grid fault ride-through, given the current and voltage capabilities of the rotor-side converter. A time-domain computer simulation model is developed and laboratory experiments are conducted to verify the model and a control method is proposed. Case studies are then performed on a representatively sized system to define the feasibility regions of successful ride-through for different types of grid faults.
机译:本文分析了风力涡轮机中双馈感应发电机(DFIG)穿越电网故障的能力及其性能局限性。 DFIG穿越过程中的基本困难是在故障期间电机转子中感应的电动势(EMF),这取决于定子磁通链中的直流和负序分量以及转子速度。在给定转子侧变流器的电流和电压能力的情况下,研究工作开发了一种控制方法来增加成功穿越电网故障的可能性。建立了时域计算机仿真模型,并通过实验室实验对该模型进行了验证,提出了一种控制方法。然后,在具有代表性的规模的系统上进行案例研究,以定义不同类型的电网故障成功穿越的可行性区域。

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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