Indonesian Journal of Electrical Engineering and Computer Science
Vol 29, No 1: January 2023

Adaptive doubly fed induction generator’s control driven wind turbine using luenberger observer optimized by genetic algorithm

Hind Elaimani (Mohammed V University in Rabat, Ecole Nationale Supérieure d’Arts et Métiers (ENSAM), Research Center of Engineering and Health Sciences and Technologies (STIS) Avenue de l'
Armée Royale)

Ahmed Essadki (Research Center of Engineering and Health Sciences and Technologies (STIS) Avenue de l'
Armée Royale)

Noureddine Elmouhi (Research Center of Engineering and Health Sciences and Technologies (STIS) Avenue de l'
Armée Royale)

Fadoua Bahja (Laboratory of Innovation in Management and Engineering for Enterprise (LIMIE))



Article Info

Publish Date
01 Jan 2023

Abstract

The calculation of control parameters for a system control method is based on the model of the system with assumed fixed internal parameters. However, these parameters can vary greatly due to several phenomena. This paper presents an adapted control of a doubly fed induction generator machine robust against the rotor resistance variations of the machine used as a generator in wind energy conversion systems. The adaptation is ensured by a system allowing to identify in real time the value of the resistance, the system used is mainly based on a Luenberger observer. The conversion system is divided into two parts, the first mechanical part containing the turbine and the gearbox, the second electrical one consisting of a double fed induction generator, linked on the stator side directly to the grid, and on the rotor, side linked to the grid through two power electronics converters interposed with a direct current (DC) link. The machine-side converter is used to control the active and reactive powers, and the second on the grid side is used to control the DC link voltage. The converters are controlled by the sliding mode strategy, and the validity of the methods is checked by simulation using MATLAB/Simulink.

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