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Model-Based Super-Twisting Controller for a Tensioned-Leg-Platform Floating Offshore Wind Turbine.

, , , , and . IECON, page 1-6. IEEE, (2022)

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Barrier function-based adaptive sliding mode control., , , and . Autom., (2018)Barrier Function-Based Adaptive Super-Twisting Controller., , , , and . IEEE Trans. Autom. Control., 65 (11): 4928-4933 (2020)Barrier Function-Based Adaptive Integral Sliding Mode Control., , , and . CDC, page 5946-5950. IEEE, (2018)Test and Measurement of Lead-Acid and Lithium Battery Packs Performance for Telecom Applications, Case Study: Radio Access Network (RAN)., , , , and . MetroXRAINE, page 341-346. IEEE, (2023)Barrier Function Based-Adaptive Super-Twisting Algorithm for Floating Offshore Wind Turbine., , , , and . VSS, page 166-171. IEEE, (2022)Adaptive Twisting Controller for Linear Induction Motor Considering Dynamic End Effects., , and . VSS, page 19-24. IEEE, (2018)Barrier function-based adaptive higher order sliding mode controllers., , , , and . Autom., (2021)A uniform reaching phase strategy in adaptive sliding mode control., , , and . CoRR, (2021)Model-Based Super-Twisting Controller for a Tensioned-Leg-Platform Floating Offshore Wind Turbine., , , , and . IECON, page 1-6. IEEE, (2022)Contribution to adaptive higher order sliding mode controllers and observers: Application to energy management systems. (Contribution à la commande et à l'observation adaptatives par modes glissants d'ordres supérieurs: Application aux systèmes de gestion de l'énergie).. Université de technologie de Belfort-Montbéliard, France, (2018)