Acceso abierto

Control Strategies for the Grid Side Converter in a Wind Generation System Based on a Fuzzy Approach

International Journal of Applied Mathematics and Computer Science's Cover Image
International Journal of Applied Mathematics and Computer Science
Advanced Diagnosis and Fault-Tolerant Control Methods (special section, pp. 233-333), Vicenç Puig, Dominique Sauter, Christophe Aubrun, Horst Schulte (Eds.)

Cite

Babu, N.R. and Arulmozhivarman, P. (2013). Wind energy conversion systems-a technical review, Journal of Engineering Science and Technology 8(4): 493-507.Search in Google Scholar

Blaabjerg, F., Liserre, M. and Ma, K. (2012). Power electronics converters for wind turbine systems, IEEE Transactions on Industry Applications 48(2): 708-719.10.1109/TIA.2011.2181290Search in Google Scholar

Boyd, S., El Ghaoui, L., Feron, E. and Balakrishnan, V. (1994). Linear Matrix Inequalities in System and Control Theory, SIAM, Philadelphia, PA.10.1137/1.9781611970777Search in Google Scholar

Camacho, E.F., Samad, T., Garcia-Sanz, M. and Hiskens, I. (2011). Control for renewable energy and smart grids, in T. Samad and A.M. Annaswamy (Eds.), The Impact of Control Technology, Control Systems Society, Copenhagen, pp. 69-88.Search in Google Scholar

Carlson, D., Haynsworth, E. and Markham, T. (1974). A generalization of the Schur complement by means of the Moore-Penrose inverse, SIAM Journal on Applied Mathematics 26(1): 169-175.10.1137/0126013Search in Google Scholar

Chen, Y.-M., Cheng, C.-S. and Wu, H.-C. (2006). Grid-connected hybrid PV/WIND power generation system with improved DC bus voltage regulation strategy, 21st Annual IEEE Applied Power Electronics Conference and Exposition, APEC’06, Dallas, TX, USA, p. 7.Search in Google Scholar

Chen, Z., Gomez, S.A. and McCormick, M. (2000). A fuzzy logic controlled power electronic system for variable speed wind energy conversion systems, 11th International Conference on Power Electronics and Variable Speed Drives, Sydney, Australia, pp. 114-119.10.1049/cp:20000230Search in Google Scholar

Chinchilla, M., Arnaltes, S. and Burgos, J.C. (2006). Control of permanent-magnet generators applied to variable-speed wind-energy systems connected to the grid, IEEE Transactions on Energy Conversion 21(1): 130-135.10.1109/TEC.2005.853735Search in Google Scholar

Chung, I.-Y., Liu, W., Cartes, D.A., Collins, E.G. and Moon, S.-I. (2010). Control methods of inverter-interfaced distributed generators in a microgrid system, IEEE Transactions on Industry Applications 46(3): 1078-1088.10.1109/TIA.2010.2044970Search in Google Scholar

Dixon, J., Contardo, J. and Moran, L. (1997). DC link fuzzy control for an active power filter, sensing the line current only, 28th Annual IEEE Power Electronics Specialists Conference, PESC’97, Saint Louis, MO, USA, Vol. 2, pp. 1109-1114.Search in Google Scholar

Farh, H.M. and Eltamaly, A.M. (2013). Fuzzy logic control of wind energy conversion system, Journal of Renewable and Sustainable Energy 5(2): 023125.10.1063/1.4798739Search in Google Scholar

Goudarzi, N. and Zhu, W. (2013). A review on the development of wind turbine generators across the world, International Journal of Dynamics and Control 1(2): 192-202.10.1007/s40435-013-0016-ySearch in Google Scholar

Harrabi, N., Souissi, M., Aitouche, A. and Chaabane, M. (2016). MPPT algorithm for wind energy generation system using TS fuzzy modeling, 5th International Conference on Systems and Control (ICSC), Marrakesh, Morrocco, pp. 157-162.10.1109/ICoSC.2016.7507046Search in Google Scholar

Harrabi, N., Souissi,M., Aitouche, A. and Chabaane, M. (2015). Intelligent control of wind conversion system based on PMSG using TS fuzzy scheme, International Journal of Renewable Energy Research 5(4): 952-960.Search in Google Scholar

Kadam, D. and Kushare, B. (2012). Overview of different wind generator systems and their comparisons, International Journal of Engineering Science & Advanced Technology 2(4): 1076-1081.Search in Google Scholar

Kim, Y.-S., Chung, I.-Y. and Moon, S.-I. (2015). Tuning of the PI controller parameters of a PMSG wind turbine to improve control performance under various wind speeds, Energies 8(2): 1406-1425.10.3390/en8021406Search in Google Scholar

Mansour, M., Mansouri, M. and Mmimouni, M. (2011). Study and control of a variable-speed wind-energy system connected to the grid, International Journal of Renewable Energy Research 1(2): 96-104.Search in Google Scholar

Nguang, S.K. and Shi, P. (2006). Robust h infinity output feedback control design for fuzzy dynamic systems with quadratic d stability constraints: An LMI approach, Information Sciences 176(15): 2161-2191.10.1016/j.ins.2005.02.005Search in Google Scholar

Nguyen, H.M. and Naidu, D.S. (2011). Advanced control strategies for wind energy systems: An overview, IEEE/PES Power Systems Conference and Exposition (PSCE), Phoenix, AZ, USA, pp. 1-8.10.1109/PSCE.2011.5772514Search in Google Scholar

Skretas, S.B. and Papadopoulos, D.P. (2008). Enhanced design and performance of WECS with PMSG connected to MV grid using intelligent control methods, 18th International Conference on Electrical Machines, ICEM 2008, Vilamoura, Portugal, pp. 1-6.10.1109/ICELMACH.2008.4799956Search in Google Scholar

Spooner, E. and Williamson, A. (1996). Direct coupled, permanent magnet generators for wind turbine applications, IEE Proceedings Electric Power Applications 143(1): 1-8.10.1049/ip-epa:19960099Search in Google Scholar

Tapia, A., Tapia, G., Ostolaza, J.X. and Saenz, J.R. (2003). Modeling and control of a wind turbine driven doubly fed induction generator, IEEE Transactions on Energy Conversion 18(2): 194-204.10.1109/TEC.2003.811727Search in Google Scholar

Tsoutsos, T.D. and Stamboulis, Y.A. (2005). The sustainable diffusion of renewable energy technologies as an example of an innovation-focused policy, Technovation 25(7): 753-761.10.1016/j.technovation.2003.12.003Search in Google Scholar

Wang, H.O., Tanaka, K. and Griffin, M.F. (1996). An approach to fuzzy control of nonlinear systems: Stability and design issues, IEEE Transactions on Fuzzy Systems 4(1): 14-23.10.1109/91.481841Search in Google Scholar

Zhang, J. and Cheng, M. (2010). Dc link voltage control strategy of grid-connected wind power generation system, 2nd IEEE International Symposium on Power Electronics for Distributed Generation Systems (PEDG), Hefei, China, pp. 970-975.10.1109/PEDG.2010.5545825Search in Google Scholar

eISSN:
2083-8492
Idioma:
Inglés
Calendario de la edición:
4 veces al año
Temas de la revista:
Mathematics, Applied Mathematics