A comparative study between NSMC and NSOSMC strategy for a DFIG integrated into wind energy system

Author:

Benbouhenni Habib1

Affiliation:

1. National Polytechnique School of Oran , Maurice Audin, Oran , Algeria

Abstract

Abstract This article presents a modelling and sliding mode control (SMC) of a doubly fed induction generator (DFIG) integrated into wind energy system for independent control of stator reactive and stator active powers. For a comparative study, the independent control of reactive and active powers is ensured in the first step by neuro-sliding mode controllers (NSMC) and the second step by neuro-second order sliding mode controllers (NSOSMC). Finally, the performance of the system is tested and compared by simulation in terms of robustness tests, and reference tracking tests based on Matlab/Simulink software.

Publisher

Walter de Gruyter GmbH

Reference23 articles.

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2. [2] F. Amrane, A. Chaiba, B. Babas, S. Mekhilef, « Design and implementation of high performance field oriented control for grid-connected doubly fed induction generator via hysteresis rotor current controller, » Rev. Roum. Sci. Techn.-Electrotechn. Et Energ, Vol. 61, No. 4, pp. 319-324, 2016.

3. [3] Y. Bekakra, D. Ben Attous, « Comparison study between SVM and PWM inverter in sliding mode control of active and reactive power control of a DFIG for variable speed wind energy, » International Journal of Renewable Energy Research, Vol. 2, No. 3, pp. 471-476, 2012.

4. [4] Z. Boudjema, R. Taleb, A. Yahdou, « A new DTC scheme using second order sliding mode and fuzzy logic of a DFIG for wind turbine system, » International Journal of Advanced Computer Science and Applications, Vol. 7, No. 8, pp. 49-56, 2016.10.14569/IJACSA.2016.070808

5. [5] A. Yahdou, B. Hemici, Z. Boudjema, « Second order sliding mode control of a dual-rotor wind turbine system by employing a matrix converter, » Journal of Electrical Engineering, Vol. 16, No. 4, pp. 1-11, 2016.

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