Study on the variable pitch control of the wind power unit based on mamdani inference and conventional control algorithm

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. The blade pitch ß angle is controlled to ensure that...

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Veröffentlicht in:IOP conference series. Earth and environmental science Jg. 529; H. 1; S. 12005 - 12015
Hauptverfasser: Rashid, Asif, Ying, Deng
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Sprache:Englisch
Veröffentlicht: Bristol IOP Publishing 01.07.2020
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Abstract 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. The blade pitch ß angle is controlled to ensure that the variable speed WT system operate safely and the optimum power is achieved. Variation in rotor speed as a result of unsteady wind velocity is controlled using PI(D) method. Fuzzy technique is developed and implemented simultaneously. Control 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.
AbstractList 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. The blade pitch ß angle is controlled to ensure that the variable speed WT system operate safely and the optimum power is achieved. Variation in rotor speed as a result of unsteady wind velocity is controlled using PI(D) method. Fuzzy technique is developed and implemented simultaneously. Control 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.
Author Rashid, Asif
Ying, Deng
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  organization: School of Renewable energy and Clean Power, North China Electric Power University Beijing , China
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  givenname: Deng
  surname: Ying
  fullname: Ying, Deng
  organization: School of Renewable energy and Clean Power, North China Electric Power University Beijing , China
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10.1016/j.ymssp.2018.09.026
10.1016/S0967-0661(01)00062-4
10.1109/iFuzzy.2013.6825452
10.1109/IECON.1995.483332
10.1007/s40815-017-0378-y
10.1016/j.renene.2019.09.006
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Snippet 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...
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SubjectTerms Algorithms
Control algorithms
Control systems
Control theory
Induction generators
Model testing
Pitch (inclination)
Rotor speed
Servocontrol
Simulation
Turbines
Wind power
Wind speed
Wind turbines
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Title Study on the variable pitch control of the wind power unit based on mamdani inference and conventional control algorithm
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