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Dynamic modeling of doubly fed induction generator wind turbines

机译:双馈感应发电机风力发电机组动态建模

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It is now recognized that many large wind farms will employ doubly fed induction generator (DFIG) variable speed wind turbines. A number of such wind farms are already in operation and more are planned or under construction. With the rising penetration of wind power into electricity networks, increasingly comprehensive studies are required to identify the interaction between the wind farm(s) and the power system. These require accurate models of doubly fed induction generator wind turbines and their associated control and protection circuits. A dynamic model has been derived, which can be used to simulate the DFIG wind turbine using a single-cage and double-cage representation of the generator rotor, as well as a representation of its control and protection circuits. The model is suitable for use in transient stability programs that can be used to investigate large power systems. The behavior of a wind farm and the network under various system disturbances was studied using this dynamic model. The influence of the DFIG control on the stability of the wind farm was also investigated by considering different control gains and by applying network voltage control through both stator side and rotor side converters.
机译:现在已经认识到,许多大型风力发电场将采用双馈感应发电机(DFIG)变速风力涡轮机。许多这样的风电场已经在运行,并且更多的计划或建设中。随着风能在电力网络中的渗透率不断提高,需要进行越来越多的综合研究来确定风电场和电力系统之间的相互作用。这些需要双馈感应发电机风力涡轮机及其相关的控制和保护电路的精确模型。已经得出了一个动态模型,该模型可以使用发电机转子的单笼和双笼表示以及其控制和保护电路的表示来模拟DFIG风力发电机。该模型适用于瞬态稳定性程序,可用于研究大型电力系统。使用该动态模型研究了风电场和电网在各种系统干扰下的行为。还考虑了不同的控制增益,并通过定子侧和转子侧转换器对电网进行电压控制,研究了DFIG控制对风电场稳定性的影响。

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