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Frequency Control of Wind Power Plant Assisted Hybrid Power System

机译:风电厂辅助混合动力系统的频率控制

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The addition of wind power plants (WPPs) into the mainland system is rising continuously since its large availability and eco-friendly nature. However, WPP works at maximum power point, and hence, WPP may not help in frequency regulation. Therefore, in this paper, frequency control techniques are introduced on WPP for the improvement of primary frequency regulation. This may be realized by creating a reserve power margin using pitch angle control and overspeed operations. The reserve power margin depends on wind velocity and blade pitch angle. The frequency support from deloaded WPP (WPP operates at reduced power point instead of maximum power point) may control based on the droop value, which depends on the available reserve and frequency deviation. From the MATLAB simulation results analysis, the effect of droop action is investigated in terms of minimizing the frequency deviation and smoothening power fluctuations of WPP.
机译:自其较大的可用性和环保性质以来,将风电站(WPPS)添加到内地系统中持续上升。 然而,WPP在最大功率点工作,因此,WPP可能在频率调节中不有帮助。 因此,在本文中,在WPP上引入了频率控制技术,以改善初级频率调节。 这可以通过使用俯仰角度控制和超速操作创建储备功率余量来实现。 储备功率余量取决于风速和叶片俯仰角。 来自已加载WPP的频率支持(WPP在降低功率点而不是最大功率点工作)可以基于下垂值来控制,这取决于可用储备和频率偏差。 从MATLAB仿真结果分析,根据最小化WPP的频率偏差和平滑功率波动来研究下垂动作的效果。

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