Nonlinear Predictive Control of Wind Energy Conversion System Using Dfig with Aerodynamic Torque Observer
By: Ouari Kamel, Ouhrouche Mohand, Rekioua Toufik and Nabil Taib
References
- [1] JIABING, H.: Direct Active and Reactive Power Regulation of DFIG Using Sliding-Mode Control Approach, IEEE Trans Energy Conversion 25 No. 425 (2011), 1028-1039.
- [2] BELFEDAL, C. et al: Elsevier, Electric Power Systems Research 80 (2010), 230-239.
- [3] SOARES, O.: Nonlinear Control of the Doubly-Fed Induction Generator in Wind Power Systemsjour Elsevier, Renewable Energy.
- [4] VALENCIAGA, F.: Second Order Sliding Power Control for a Variable Speed-Constant Frequency Energy Conversion System, Elsevier, Energy Conversion and Management 51 (2010), 3000-3008.
- [5] QIN, S. J.–BADGWELL, T. A.: A Survey of Industrial Model Predictive Control Technology, Elsevier, Control Eng. Practice 11 (2003), 733-764.
- [6] GARCIA, C. E.–PRETT, D. M.–MORARI, M.: Automatica 25 No. 3 (1989), 335-348.
- [7] CHEN, W.-H.: Optimal Control of Nonlinear Systems: A Predictive Control Approach, Automatica 39 No. 439 (2003), 633-641.
- [8] HEDJAR, R.–TOUMI, R.–BOUCHER, P.–DUMUR, D.: Two Cascaded Nonlinear Predictive Controls of Induction Motor, IEEE Conference on Control Applications 1 (2003), 458-463.
- [9] LIE, XU.–DAWEI, ZHI.–WILLIAMS, B.: Predictive Current Control of Doubly-Fed Induction Generators, IEEE Trans. Indus Electron. 56 (2009), 4143-4153.
- [10] MOSTAFA, S.: Multiple Model Predictive Control for Wind Turbines With Doubly-Fed Induction Generators, IEEE Transactions on Sustainable Energy 2 No. 3 (2011), 215-225.
- [11] TOMONOBU, S.: Output Power Leveling of Wind Turbine Generator for All Operating Regions by Pitch Angle Control, IEEE Trans. Energy Conversion 21 (2006), 467-475.
- [12] CHEN, W.-H.–BALANCE, D. J.–GAWTHROP, P. J.–GRI-BBLE, J. J.–O'REILLY, J.: Nonlinear PID Predictive Controller, IEE Proceedings Control Theory Application 146 (1999), 603-611.
- [13] HOPFENSPERGER, B.–ATKINSON, D.–LAKIN, R.: Sta-tor-Flux-Oriented Control of a Doubly-Fed Induction Machine with and without Position Encoder, Inst. Elec. Eng. Proc. Electric Power Applications 147 No. 4 (2000), 241-250.
- [14] YAMAMOTO, M.–MOTOYOSHI, O.: Active and Reactive Power Control for Doubly-Fed Wound Rotor Induction Generator, IEEE Transactions on Power Electronics 6 (1991), 624-629.
- [15] CHEN, W.-H.: Closed-Form Nonlinear MPC for Multivariable Nonlinear Systems with Different Relative Degree, IEEE Proceeding of the 2003 American Control Conference, vol. 6, 2003, pp. 4887-4892.
DOI: https://doi.org/10.2478/jee-2014-0055 | Journal eISSN: 1339-309X (formerly 1335-3632) | Journal ISSN: 1335-3632
Language: English
Page range: 333 - 341
Submitted on: May 11, 2013
Published on: Jan 31, 2015
Published by: Slovak University of Technology in Bratislava
In partnership with: Paradigm Publishing Services
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© 2015 Ouari Kamel, Ouhrouche Mohand, Rekioua Toufik, Nabil Taib, published by Slovak University of Technology in Bratislava
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.