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Power Smoothing Control of DFIG Based Wind Turbine using Flywheel Energy Storage System

机译:采用飞轮储能系统的DFIG风力涡轮机电力平滑控制

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in this paper, we present coordinated control strategies of a flywheel energy storage system (FESS) and a doubly fed induction generator (DFIG) in wind energy conversion application. The general aim is to enhance the wind energy conversion system’s capability to participate in ancillary services. The overall system control relies on the nonlinear backstepping approach applied, firstly, to the rotor side converter to regulate stator active and reactive powers. Then, to the grid side converter to regulate the DC link voltage and the rotor reactive power. Then finally, to the flywheel side converter allowing the FESS to serve as a buffer used to smooth the undesirable wind-induced output power fluctuations. A fuzzy logic supervisor is proposed to maintain the FESS within its operating limits. Numerical simulation in Matlab/Simulink demonstrates the effectiveness of the presented control strategies in terms of stability, tracking behavior and out power quality improvement.
机译:在本文中,我们在风能转换应用中提供了飞轮储能系统(FES)和双馈感应发电机(DFIG)的协调控制策略。 一般目标是提高风能转换系统的参与辅助服务的能力。 整体系统控制依赖于非线性反向倾斜方法,首先施加到转子侧转换器以调节定子主动和无功功率。 然后,到电网侧转换器以调节DC链路电压和转子无功功率。 最后,到飞轮侧转换器,允许偏心用作用于平滑不期望的风引起的输出功率波动的缓冲器。 建议模糊逻辑主管在其运行限制内维护偏执型。 MATLAB / SIMULINK中的数值模拟在稳定性,跟踪行为和电力质量改进方面展示了所提出的控制策略的有效性。

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