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Fuzzy Inference Based Approach for Pitch Angle Control of Variable Speed Variable Pitch Wind Turbine

机译:基于模糊推理的变速变桨距风力发电机变桨角控制方法

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This paper firstly analysed the theory of the Wind Turbine (WT) pitch control algorithms to maximize energy yield, and then based on the analysis, 3 MW wind turbine model with a servo system and Doubly Fed Induction Generator (DFIG) is developed. Servo control system which has some typical characteristics of nonlinearity and to ensure better performance of variable speed variable pitch WT, pitch ß angle is controlled applying the developed algorithms. Developed Algorithms reveal dynamic performance of the blade pitch angle, rotor speed and rated power characteristics. Within the wind turbine standard operating regimes, controllers have shown promising results. Proposed Fuzzy technique validates superior performance. Finally, MATLAB/SIMULINK tool box establishes the corresponding model to simulation test in order to verify the effectiveness and correctness of the analysed algorithms. Simulation result demonstrates that the developed pitch servo control system has good dynamic, steady state performance and robustness.
机译:本文首先分析了风力涡轮机(WT)俯仰控制算法的理论,以最大化能量产量,然后基于分析,开发了具有伺服系统和双馈感应发生器(DFIG)的3 MW风力涡轮机模型。伺服控制系统具有一些非线性特性的典型特性,并确保可变速度可变间距WT的更好性能,控制俯仰ß角度应用开发算法。开发的算法显示了叶片桨距角,转子速度和额定功率特性的动态性能。在风力涡轮机标准操作方案中,控制器已经显示了有希望的结果。建议的模糊技术验证了卓越的性能。最后,Matlab / Simulink工具盒建立了对仿真测试的相应模型,以验证分析的算法的有效性和正确性。仿真结果表明,发达的音高伺服控制系统具有良好的动态,稳态性能和鲁棒性。

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