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A strategy of control based on a model reference adaptive control (MRAC) is proposed for a wind Turbine. The electrical machine used is a doubly fed induction generator (DFIG). The proposed MRAC technique is designed, based on sliding mode and fuzzy logic methodologies. The goal is to control the generation of the power in the wind turbine. The simulation results obtained are satisfying and with high...
In this paper, we propose a control technique based on backstepping control theory, this technique is applied to control the power generated by wind turbine, in which the generator used is a double feed induction generator (DFIG). The proposed control laws are derived from the Lyapunov approach which is well suited for this nonlinear system. The nonlinear backstepping controller to be used for the...
In this paper, a decoupling control strategy has been applied to control the active and reactive powers generated by a Double Feed Induction Generator (DFIG). We propose new control strategies based on fuzzy sliding mode in order to control the power of the wind turbine transmitted to the grid and to make the wind turbine adaptable to different constraints. The use of this method provides very satisfactory...
The aim of this paper is hybrid fuzzy sliding mode control of a Doubly Fed Induction Generator (DFIG) in the form of a wind turbine. This type of control is introduced to avoid the major disadvantage of variable structure systems, namely the chattering phenomenon. Variable structure ensures the high dynamic of convergence and robustness towards parametric variations and disturbances. Fuzzy control...
In this paper, a decoupling control strategy has been applied to control the active and reactive powers generated by a Double Feed Induction Generator (DFIG). We propose new control strategies based on fuzzy logic and sliding mode in order to control the power of the wind turbine transmitted to the grid and to make the wind turbine adaptable to different constraints. The results obtained by simulation...
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