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Evaluation of the Inertial Response of Variable Speed Wind Turbines Based on DFIG using Backstepping for a Frequency Control

机译:基于DFIG的变频调速风力发电机组惯性响应的频率估计。

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In this paper, we are interested in the study of a DFIG based WECS controlled by the Backstepping as well as its participation in the grid frequency adjustment. The variable speed wind turbine based on DFIG can't participate in frequency setting when a fault occurs due to the decoupling between the rotation speed and the grid frequency. This decoupling is due to the grid side converter and the rotor side converter., we propose In this paper to study the participation of this type of turbine in the frequency adjustment using the synthetic inertial strategy based on the kinetic energy of the rotating masses of the conversion system. We will begin by studying the impact of a frequency drop on the DFIG characteristics controlled by the Backstepping. Then we will implement the synthetic inertia controller allowing the DFIG to act in frequency default. Finally, we will end with the simulation of the different parts using the Matlab / Simulink environment.
机译:在本文中,我们对由Backstepping控制的基于DFIG的WECS的研究及其对电网频率调整的参与感兴趣。当由于转速和电网频率之间的脱钩而发生故障时,基于DFIG的变速风力涡轮机无法参与频率设置。这种去耦是由于电网侧变流器和转子侧变流器引起的。我们建议在本文中使用这种惯性策略来研究这种类型的涡轮机在频率调节中的参与,该综合惯性策略是基于发电机的旋转质量的动能。转换系统。我们将开始研究频率下降对Backstepping控制的DFIG特性的影响。然后,我们将实现合成惯性控制器,使DFIG能够以默认频率运行。最后,我们将使用Matlab / Simulink环境对不同零件进行仿真。

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