A Sliding Mode Control with a PID Sliding Surface for Power Output Maximizing of a Wind Turbine

Forfattere

  • Ahmed Rhif

Nøgleord:

Sliding mode control, chattering phenomenon, PID controller, wind turbine

Resumé

  The wind energy has many advantages, it does not pollute and it is an inexhaustible source. However, the cost of this energy is still too high to compete with traditional fossil fuels, especially on the less windy sites. The performance of a wind turbine depends mainly on three parameters: the power of the wind, the power curve of the turbine and the generator’s ability to respond to the wind fluctuations. This article proposes a robust control of a double-fed induction generator of wind turbine to optimize its production that means the energy quality and efficiency. The proposed control reposes in the sliding mode approach using a PID sliding surface, which contributes to the minimization of the static error and the number of the derivative functions. Simulation results show good performances of this control. Keyeords: Sliding mode control, chattering phenomenon, PID controller, wind turbine

Forfatterbiografi

  • Ahmed Rhif
     Ahmed Rhif was born in Sousah, Tunisia, in August 1983. He received his Engineering diploma and Master degree, respectively, in Electrical Engineering in 2007 and in Automatic and Signal Processing in 2009 from the National School of Engineer of Tunis, Tunisia (L’Ecole Nationale d’Ingénieurs de Tunis E.N.I.T). He has worked as a Technical Responsible and as a Project Manager in both LEONI and CABLITEC (Engineering automobile companies). Then he has worked as a research assistant at the Private University of Sousah (Université Privée de Sousse U.P.S) and now at the High Institute of Applied Sciences and Technologies of Sousah (Institut Supérieur des Sciences Appliquées et de Technologie de Sousse I.S.S.A.T.so). He is currently pursuing his PhD degree in the Polytechnic School of Tunis (E.P.T). His research interest includes control and nonlinear systems. 

Publiceret

2012-02-15

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