Real-Time Validation of Intelligent Super-Twisting Sliding Mode Control for Variable-Speed DFIG Using dSPACE 1104 Board

Author:

Yessef Mourad1ORCID,Benbouhenni Habib2ORCID,Taoussi Mohammed3,Lagrioui Ahmed4,Colak Ilhami2ORCID,Mobayen Saleh5ORCID,Zhilenkov Anton6,Bossoufi Badre1ORCID

Affiliation:

1. LIMAS Laboratory, Faculty of Sciences Dhar El Mahraz, Sidi Mohamed Ben Abdellah (SMBA) University, Fes, Morocco

2. Department of Electrical and Electronics Engineering, Faculty of Engineering and Architecture, Nişantaşi University, Istanbul, Turkey

3. Higher School of Technology, SMBA University, Fes, Morocco

4. ENSAM, Moulay Ismail University, Meknes, Morocco

5. Graduate School of Intelligent Data Science, National Yunlin University of Science and Technology, Yunlin, Douliou, Taiwan

6. Department of Cyber-Physical Systems, Saint Petersburg State Marine Technical University, Saint-Petersburg, Russia

Publisher

Institute of Electrical and Electronics Engineers (IEEE)

Reference88 articles.

1. Direct active and reactive powers control of double-powered asynchronous generators in multi-rotor wind power systems using modified synergetic control

2. Implementation of third-order sliding mode for power control and maximum power point tracking in DFIG-based wind energy systems

3. Design and implementation of high performance field oriented control for grid-connected doubly fed induction generator via hysteresis rotor current controller;Amrane;Rev. Roum. Sci. Techn.-Electrotechn. Energy,2016

4. Backstepping control for multi-rotor wind power systems;Benbouhenni;Majlesi J. Energy Manage.,2022

5. Direct Vector Control Using Feedback PI Controllers of a DPAG Supplied by a Two-Level PWM Inverter for a Multi-rotor Wind Turbine System

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