AUTHORS: Yasmine Ihedrane, Chakib El Bekkali, Badre Bossoufi, Madiha El Ghamrasni, Hassane Mahmoudi
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ABSTRACT: This article, present a new contribution to the control of wind energy systems, a robust nonlinear control of active and reactive power with the use of the Backstepping and Sliding Mode Control approach based on a doubly fed Induction Generator power (DFIG-Generator) in order to reduce the response time of the wind system. In the first step, a control strategy of the MPPT for the extraction of the maximum power of the turbine generator is presented. Subsequently, the Backstepping control technique followed by the sliding mode applied to the wind systems will be presented. These two types of control system rely on the stability of the system using the LYAPUNOV technique. Simulation results show performance in terms of set point tracking, stability and robustness versus wind speed variation.
KEYWORDS: Wind System, DFIG, MPPT, Sliding Mode Controller, Backstepping Controller
REFERENCES:
[1] X. S. Li, et al., 'Analysis and Simplification of Three-Dimensional Space Vector PWM for ThreePhase Four-Leg Inverters,' IEEE Transactions on Industrial Electronics, vol. 58, pp. 450-464, Feb 2011.
[2] Canudas,D., Commande des moteurs asynchrone, modélisation contrôle vectoriel et DTC ,HERMES/LAVOISIER ,Paris, (2000).
[3] Gille, J. C., Decaulne, P., & Pélegrin, M. “ Systèmes asservis non linéaires” ,5,Dunod. (1975).
[4] LOUCIF, M., “Synthèse de lois de commande non-linéaires pour le contrôle d’une machine asynchrone à double alimentation dédiée à un système aérogénérateur”,Phd.Thesis, Université Aboubakr Belkaïd, Faculté de TECHNOLOGIETlemcen-, (2016).
[5] Buhler,H., “Réglage par mode de glissement. ”, Première Edition. éd., Lausanne, Suisse: Presses Polytechniques et Universitaires Romandes.( 1986),
[6] BEKAKRA,Y., “Contribution à l’Etude et à la Commande Robuste d’un Aérogénérateur Asynchrone à Double Alimentation.”, Phd.Thesis, Université Mohamed Khider, Biskra., (2014).
[7] Ihedrane ,Y., EL Bekkali, C. , Bossoufi, B. , “Power Control of DFIG-generators for Wind Turbines Variable-speed. ”, International Journal of Power Electronics and Drive Systems (IJPEDS) ,8(1):444-453, (2017).
[8] Bossoufi, B., Ionita, S., Constantinescu, L., Alami Arroussi , H., El Ghamrasni, M. , & Ihedrane, Y., “Managing voltage drops: a variable speed wind turbine connected to the grid”, International Journal of Automation and Control , 11(1):15-34 ,(2017)
[9] Bossoufi, B., Karim ,M., Lagrioui ,A., Taoussi ,M.,Derouich ,A., “Observer backstepping control of DFIG-Generators for wind turbines variable-speed: FPGA-based implementation.’’ Renewable Energy (ELSIVER), 81: 903-917,( 2015)
[10] Amimeur,H.,Aouzellag,D.,Abdessemed,R.,Ghe damsi, K.,“Sliding mode control of a dual-stator induction generator for wind energy conversion systems. ’’, International Journal of Electrical Power & Energy Systems, 42(1):60-70, (2012)
[11] Ihedrane ,Y., EL Bekkali, C. , Bossoufi, B. , “Direct and indirect field oriented control of DFIGgenerators for wind turbines variable-speed.’’, 14th International Multi-Conference on Systems, Signals & Devices (SSD), Marrakech -Morocco-, 28-31 (March 2017).
[12] Aouzellag,D., Ghedamsi, K., Berkouk,E.M., “ Network power flux control of a wind generator.’’, Renewable Energy, 34(3): 615-622,(2009).
[13] Bekakra,Y., Ben Attous, D., “DFIG sliding mode control fed by back-to-back PWM converter with DC-link voltage control for variable speed wind turbine,’’ Frontiers in Energy, 8 : 345–354 , (2014).
[14] MACHMOUM, M. et POITIERS,F.,“Sliding mode control of a variable speed wind energy conversion system with DFIG.’’,Ecologic vehicles; renewable energies, MONACO,(March 2009).
[15] TAMAARAT ,A., “Modélisation et commande d'un système de conversion d'énergie éolienne à base d'une MADA.,’’, Phd.Thesis, Université Mohamed Khider,Biskra, (2015).
[16] Bregeault, V., “Quelques contributions à la théorie de la commande par modes glissants.’’, Phd.Thesis, Ecole Centrale de Nantes (ECN). (2010).
[17] Slotine, J. J., and W. Li. ,“Applied Nonlinear Control, Prentice-Hall, Englewood Cliffs, NJ, 1991.’’, 461,Google Scholar (1998).
[18] Hashimoto, H., Yamamoto, H., Yanagisawa, S., & Harashima, F. , “Brushless servo motor control using variable structure approach’’,IEEE Transactions on industry applications, 24(1), 160- 170, (1988).
[19] HAMDI ,N., “Amélioration des performances des aérogénérateurs. ’’, Phd.Thesis, Universite Constantine I ,(2013).
[20] Taoussi, M., Karim, M., Bossoufi, B., Hammoumi, D., Lagrioui, A., & Derouich, A. (2016). Speed variable adaptive backstepping control of the doubly-fed induction machine drive. International Journal of Automation and Control, 10(1), 12-33.
[21] Bossoufi, B. A. D. R. E., Karim, M. O. H. A. M. M. E. D., Ionita, S. I. L. V. I. U., & Lagrioui, A. H. M. E. D. (2011). The optimal direct torque control of a PMSM drive: FPGA-based implementation with MATLAB & Simulink simulation. Journal of Theoretical and Applied Information Technology JATIT, 28(2), 63-72
[22] Jerbi,L., Krichen,L., Ouali,A., “A fuzzy logic supervisor for active and reactive power control of a variable speed wind energy conversion system associated to a flywheel storage system, ’’, Electric power systems research, Elsevier , 79(6): 919-925, (2009).
[23] El Ouanjli, N., Derouich, A.,El Ghzizal, A.,El Mourabet ,Y., Bossoufi,B., Taoussi,M., 'Contribution to the performance improvement of Doubly Fed Induction Machine functioning in motor mode by the DTC control', International Journal Power Electronics and Drive System , 8 (3): 1117- 1127,(2017).
[24] N. El Ouanjli, et al., “High Performance Direct Torque Control of Doubly Fed using Fuzzy Logic,” Gazi University Journal of Science, vol.31, No. 2, pp. 532-542, 2018.