A Control Method using Artificial Intelligence in Wind Energy Conversion System

  • Fatima Zohra ARAMA Laboratoire de Développement Durable et d’information (LDDI), faculté des Science et de la Technologie, Université Ahmed Draia, Adrar, Algeria
  • Slimane LARIBI Laboratory of Sustainable Development and Computer Science (L.D.D.I), Department of Hydrocarbons and Renewable Energies,Ahmed Draia University - Adrar (Algeria).
  • Touhami GHAITAOUI Laboratoire de Développement Durable et d’information (LDDI), faculté des Science et de la Technologie, Université Ahmed Draia, Adrar, Algeria
Keywords: Field oriented control (FOC), Wind energy conversion system (WECS), Doubly Fed Induction Machine (DFIM), PI regulator, Neural network regulator (NN)

Abstract

This work presents a field-oriented control (FOC) of active and reactive power applied on Doubly Fed Induction Machine (DFIM) integrated in wind energy conversion system (WECS). The main objective of this work is to compare the performances of energy produced by the use of two types of controllers ( PI regulator and the neural network regulator (NN)) in order to control the wind power conversion system to compare their precision & robustness against the wind fluctuation and the impact on the quality of produced energy. A field oriented control of DEFIG stator is also presented to control the active and reactive power. To show the efficiency of the performances and the robustness of the two control methods those were analyzed and compared by simulation using Matlab/Simulink software. The results described the favoured method.

References

T. Ackermann and L.Söder, «"An overview of wind energy-status 2002,",» Renewable and Sustainable Energy Reviews,, vol. 6, pp. 67-128, 2002.

N. Zerzouri and H. Labar, «"Active and Reactive Power Control of a Doubly Fed Induction,",» International Journal of Power Electronics and Drive System, vol. 5, pp. 244-251, October 2014.

B. Hopfensperger et al., «"Stator-flux-oriented control of a doubly-fed induction machine with and without position encoder",» Proceedings: Electric Power Applications, vol. 147, pp. 241-250, July 2000.

F. Poitiers et al., «"Control of a doubly-fed induction generator for wind energy conversion systems,",» IEEE Trans .Renewable Energy, vol. 3, pp. 373-378, December 2001.

B. Hamane et al., «Direct active and reactive power control of DFIG based WECS using PI and sliding mode controllers,» IECON Proceedings (Industrial Electronics Conference), n° %17048784, pp. 2050-2055, 2014.

K. Viswanadha S Murthy et al., «"A Performance Comparison of DFIG using Power Transfer,",» International Journal of Power Electronics and Drive System, vol. 5, pp. 176-184, October 2014.

A. Giannakis et al., «"A combined control strategy of a DFIG based on a sensorless power control through,",» Renewable Energy, pp. 30052-1, 2018.

A. Mishra and P. Choudhary, «"Artificial Neural Network Based Controller for Speed Control,",» International Journal of Power Electronics and Drive System (IJPEDS), vol. 2, pp. 402-408, December 2012.

F. Poitiers et al., «"Advanced control of a doubly-fed induction generator for wind,",» Electric Power Systems Research, vol. 79, p. 1085–1096, 2009.

N. Bouchiba et al., «"Implementation and comparative study of control strategies for an isolated DFIG based WECS,",» THE EUROPEAN PHYSICAL JOURNAL PLUS, pp. 132-415, 2017.

Basem E. Elnaghi et al., «"Adaptation of PI controller used with combination of perturbationand observation method and feedback method for DFIG,",» Electrical Engineering, pp. 0565-8, 2017.

T. Arantxa Tapia et al., «"Modeling and control of a wind turbine driven doubly fed induction generator,”,» IEEE Trans. on Energy Conversion, vol. 18, pp. 194-204, June 2003.

Z. BOUDJEMA et al., «"A novel direct torque control using second order continuous sliding mode of adoubly fed induction generator for a wind energy conversion system,",» Turkish Journal of Electrical Engineering & Computer Sciences, vol. 25, p. 965 – 975, 2017.

M. ALLAM et al., «"A comparative study between field oriented control and sliding mode control for dfig integrated in wind energy system,",» Journal of Electrical Engineering, vol. 15, pp. 205-213, 2015.

S. DRID et al., «“The Doubly Fed Induction Machine Modeling In The Separate Reference Frames,”,» Journal of Electrical Engineering, vol. 4, pp. 11-16, 2004.

J. F. Jodouin, «“Les Réseaux de Neurones : Principes et Application,”,» Hermès Sciences Publicat, sept 1994..

Published
2019-06-15
How to Cite
ARAMA, F. Z., LARIBI, S., & GHAITAOUI, T. (2019). A Control Method using Artificial Intelligence in Wind Energy Conversion System. Algerian Journal of Renewable Energy and Sustainable Development, 1(01), 60-68. Retrieved from https://ajresd.univ-adrar.edu.dz/index.php?journal=AJRESD&page=article&op=view&path[]=37
Section
Articles