Research Article | OPEN ACCESS
Control to Three-phase Inverter by Sliding Mode
1Mouhamadou Thiam, 1Gustave Sow, 2Dorothe Azilinon, 1Lamine Thiaw, 1Salif S. Fall, 1Momar Kasse and 1Alphousseyni Ndiaye
1Laboratoire d’Energies Renouvelables (LER),
2Laboratoire d’Energétiques Appliquées (LEA), Ecole Supérieure Polytechnique (ESP) Dakar, Université Cheikh Anta Diop (UCAD), Dakar, Sénégal
Research Journal of Applied Sciences, Engineering and Technology 2014 11:2242-2252
Received: June 11, 2012 | Accepted: July 08, 2013 | Published: March 20, 2014
Abstract
In this study, it is treated the modeling and the ordering of a three-phase inverter. The studied system is a load supplied with a three-phase inverter by means of a transformer. The ordering of the inverter is with PWM (pulse-width modulation/pulse-width Modulation) and its regulation is made by the sliding method. This method is presented in this document with its various laws. The simulation of the unit is made and the results presented.
Keywords:
Control, disturbance, energy, inverter, PWM, sliding mode, three-phase,
References
-
Charles, I.O., 2011. Three-phase boost DC-AC converter. Niger. J. Technol., 30(1).
-
Fernando, J. and A. Silva, 2000. Sliding mode control of multilevel power converters. Proceeding of the 9th International Conference on Power Electronics and Motion Control-EPE-PEMC 2000 Košice.
-
Gao, W. and J.C. Hung, 1993.Variable structure control of nonlinear systems: A new approach. IEEE T. Ind. Electron., 40(1): 45-55.
CrossRef
-
Gao, W., W. Yufu and A. Homaifa, 1995. Discrete-time variable structure control systems. IEEE T. Ind. Electron., 42(2): 117-122.
CrossRef
-
Kazmierkowski, M.P. and M. Luigi, 1998. Current control techniques for three-phase voltage-source PWM converters: A survey. IEEE T. Ind. Electron., 45(5): 691-703.
CrossRef
-
Keyhani, A., M.N. Marwali and M. Dai, 2009. Integration of Green and Renewable Energy in Electric Power Systems. John Wiley and Sons, Hoboken.
CrossRef
-
Madani, N., M.F. Benkhoris, S. Siala and M.O. Mahmoudi, 1998. Sliding mode control of an asynchronous motor drive. Proceeding of the 17th International Conference on Power Electronics and Variable Speed Drives, pp: 341-346.
CrossRef
-
Perruquetti, W. and J.P. Barbot, 2002. Sliding Mode Control in Engineering. Edition Marcel Dekker, ISBN 0-8247-0671-4.
CrossRef
-
Sivert, A., F. Betin, A. Faqir and G.A. Capolino, 2004. Robust control of an induction machine drive using a time-varying sliding surface. Proceeding of IEEE International Symposium on Industrial Electronics, 2: 1369-1374.
CrossRef
-
Slotine, J.J.E., 1991. Applied Nonlinear Control. Edition Prentice Hall, ISBN 0-13-040890-5.
-
Trzynadlowski, A.M., 2001. Control of Induction Motors. Edition Academic Press, ISBN: 9780127015101.
-
Vadim, I.U., 1977. Variable structure systems with sliding modes. IEEE T. Automat. Contr., 22(2): 212-222.
CrossRef
-
Vadim, I.U., 1993. Sliding mode control design principles and applications to electric drives. IEEE T. Ind. Electron., 40(1): 23-36.
CrossRef
-
Zhiwen, M., Z. Trillion, L. Fei and Y. Xiaojie, 2005. A new sliding-mode current controller for field oriented controlled induction motor drives. Proceeding of the 31st Annual Conference of IEEE Industrial Electronics Society (IECON). Raleigh, NC.
CrossRef
Competing interests
The authors have no competing interests.
Open Access Policy
This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
Copyright
The authors have no competing interests.
|
|
![](http://www.maxwellsci.com/images/RJASET-maxw.jpg) |
ISSN (Online): 2040-7467
ISSN (Print): 2040-7459 |
![Submit Manuscript](../images/sub.jpg) |
Information |
|
|
|
Sales & Services |
|
|
|