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Frequency dependent strategy for mitigating wind power fluctuations of a doubly-fed induction generator wind turbine based on virtual inertia control and blade pitch angle regulation

机译:基于虚拟惯性控制和叶片桨距角调节的双频感应发电机风力发电机风能波动缓解策略

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This paper presents a new approach to address the issue of the frequency deviations induced by the fluctuating power injected into the grid by doubly-fed induction generator based wind turbines in a weak or isolated power system that is based in a frequency dependent smoothing of the wind power. An algorithm that allows an improved maximum power point tracking curve shifting as a function of the blade pitch angle variation has been proposed, taking advantage of the combined effect of two frequency control strategies: one based on the use of the stored kinetic energy by means of the concept of virtual inertia, and the other, by limiting the captured wind power through blade pitch angle regulation. This algorithm has been devised to reduce the turbine deload requirements, and at the same time, to increase the available kinetic energy in the turbine. This results in a more effective fast-frequency response with a lower amount of non-dispatched wind energy. The effectiveness of the proposed method is assessed by considering a real wind profile in time-domain simulations. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文提出了一种新方法,以解决基于弱磁或隔离电力系统中基于双馈感应发电机的风力涡轮机注入电网的波动电力所引起的频率偏差问题,该电力系统基于风的频率平滑功率。利用两种频率控制策略的组合效果,提出了一种允许根据叶片桨距角变化来改进最大功率点跟踪曲线偏移的算法:一种基于通过以下方式使用存储的动能的方法:虚拟惯性的概念,另一种是通过叶片桨距角调节来限制捕获的风力。已经设计出该算法以减少涡轮机的卸载要求,同时增加涡轮机中的可用动能。这导致更有效的快速频率响应,同时具有较少的未分配风能。通过在时域模拟中考虑实际风廓线来评估所提出方法的有效性。 (C)2018 Elsevier Ltd.保留所有权利。

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