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Robust control strategy for a wind energy conversion system

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The Linear Parameter Varying (LPV) control of Wind Energy Conversion Systems (WECS) is a highly motivating subject. The paper deals with the robust control of a Wind Turbine (WT) driven by a Doubly Fed Induction Generator (DFIG). The WT model is enhanced and LPV representation is used for the DFIG, with uncertainties taken in an affine structure, after which, a control strategy is introduced in order to improve the performance of the WT and to assure an optimum energy capture. Also, the purpose is to ensure the stability of the considered system. Therefore, a scenario of a wind speed that varies between 5 m/s and 25 m/s is simulated, where controllers are designed for the generator and turbine and a feedback control strategy is implemented. Also, to prevent saturation, Anti-Windup (AW) structure is considered for the pitch control. The results and details for the regulators are discussed in the last section of this paper.

WECSDFIGLPV modellingState feedback controlPitch controlAnti-windup controller

Nedia Aouani、Salah Salhi、Germain Garcia、Mekki Ksouri

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Research Unit of System Analysis and Control, National School Engineering of Tunis

University of Toulouse, LAAS-CNRS

2017

International Journal of Computer Applications in Technology

International Journal of Computer Applications in Technology

EIESCI
ISSN:0952-8091
年,卷(期):2017.55(3)