DocumentCode :
3577555
Title :
Comparison of sliding mode control and fuzzy logic applied to wind turbine emulator
Author :
Souhila, Zine ; Benyounes, Mazari ; Amine, Bouzid Mohamed ; Youcef, Mihoub
Author_Institution :
Lab. of Dev. of Electr. Drives, Univ. of Sci. & Technol., Oran, Algeria
fYear :
2014
Firstpage :
1
Lastpage :
6
Abstract :
Wind energy features prominently as a supplementary energy booster since the wind speed varies. Evaluation of control schemes for electrical generator is hard with wind turbine. For similar environment of turbine, a wind turbine emulator (WTE) is used. The purpose of systems is to maximize energy efficiency, and extract maximum power from the wind speed. In This case, the MPPT control becomes important. Conventional proportional and integral (PI) controller is usually used to realize this control. However, this strategy has limitation and cannot achieve better performances. This paper proposes other solutions such as fuzzy logic, sliding mode control. The proposed sliding mode control strategy with fuzzy controller presented attractive features such as robustness against parameter variation of the turbine. The proposed strategies have been simulated with wind turbine emulator. The simulation results under MatlabSimulink show better dynamic performances of the proposed MPPT strategy.
Keywords :
PI control; energy conservation; fuzzy control; machine control; maximum power point trackers; variable structure systems; wind turbines; MPPT control; PI controller; WTE; electrical generator; energy efficiency; fuzzy logic control; maximum power point tracking control; parameter variation; proportional and integral controller; sliding mode control; supplementary energy booster; wind energy; wind speed; wind turbine emulator; Fuzzy logic; Maximum power point trackers; Sliding mode control; Torque; Wind speed; Wind turbines; Zirconium; Sliding Mode Control; Wind turbine; fuzzy logic control; maximum power point tracking;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Environmental Friendly Energies and Applications (EFEA), 2014 3rd International Symposium on
Type :
conf
DOI :
10.1109/EFEA.2014.7059974
Filename :
7059974
Link To Document :
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