Bessa, Wallace MoreiraWallace MoreiraBessaDutra, Max SuellMax SuellDutraKreuzer, EdwinEdwinKreuzer2018-12-132018-12-132010Journal of the Brazilian Society of Mechanical Sciences and Engineering 1 (32): 1-7 (2010)http://tubdok.tub.tuhh.de/handle/11420/1927The dead-zone is one of the most common hard nonlinearities in industrial actuators and its presence may drastically compromise control systems stability and performance. Due to the possibility to express specialist knowledge in an algorithmic manner, fuzzy logic has been largely employed in the last decades to both control and identification of uncertain dynamical systems. In spite of the simplicity of this heuristic approach, in some situations a more rigorous mathematical treatment of the problem is required. In this work, an adaptive fuzzy controller is proposed for nonlinear systems subject to dead-zone input. The boundedness of all closed-loop signals and the convergence properties of the tracking error are proven using Lyapunov stability theory and Barbalat's lemma. An application of this adaptive fuzzy scheme to an electro-hydraulic servo-system is introduced to illustrate the controller design method. Numerical results are also presented in order to demonstrate the control system performance.en1806-3691Journal of the Brazilian Society of Mechanical Sciences and Engineering2010117Brazilian Society of Mechanical Sciences and Engineering ; SciELOhttps://creativecommons.org/licenses/by-nc/4.0/adaptive algorithmsdead-zoneelectro-hydraulic actuatorsfuzzy logicnonlinear controlIngenieurwissenschaftenAn adaptive fuzzy dead-zone compensation scheme and its application to electro-hydraulic systemsJournal Articleurn:nbn:de:gbv:830-882.02463710.15480/882.192411420/192710.1590/S1678-5878201000010000110.15480/882.1924Journal Article