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DFIG Pitch Angle Control with PID-type Fuzzy Logic Controller in a Microgrid

机译:微电网中具有PID型模糊逻辑控制器的DFIG俯仰角控制

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In the present-day power system with renewable sources, Doubly Fed Induction Generator (DFIG) is broadly preferred in wind power technology. DFIG has the dynamic capability of coordinating the pitch angle of turbine blades and limiting DFIG power output. This paper presents a PID-type fuzzy logic controller (PID-type FLC) approach for the robust regulation of DFIG power based wind turbine at variable wind speed. The PID-type FLC is proposed and incorporated in the pitch angle control (PAC) to enhance rotor speed and active power regulation of DFIG. Matlab/Simulink software based real-time simulations are performed for observing the relative performances of the proposed PID-type FLC for PAC as compared to the conventional proportional pitch control combined with proportional-integral pitch compensation. The simulation results substantiate the improvements in DFIG performance with the proposed control scheme at different operating conditions.
机译:在当今具有可再生资源的电力系统中,双馈感应发电机(DFIG)在风电技术中被广泛首选。 DFIG具有协调涡轮叶片的桨距角和限制DFIG功率输出的动态能力。本文提出了一种PID型模糊逻辑控制器(PID型FLC)方法,用于基于DFIG功率的风力涡轮机在可变风速下的鲁棒调节。提出了PID型FLC,并将其合并到桨距角控制(PAC)中,以提高DFIG的转子速度和有功功率调节。与传统的比例螺距控制结合比例积分螺距补偿相比,基于Matlab / Simulink软件的实时仿真可以观察所提出的PAC的PID型FLC的相对性能。仿真结果证实了在不同的工作条件下,采用所提出的控制方案,DFIG性能得到了改善。

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