Ikhouane / Rodellar | Systems with Hysteresis | E-Book | sack.de
E-Book

E-Book, Englisch, 222 Seiten, E-Book

Ikhouane / Rodellar Systems with Hysteresis

Analysis, Identification and Control Using the Bouc-Wen Model
1. Auflage 2007
ISBN: 978-0-470-51319-4
Verlag: John Wiley & Sons
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)

Analysis, Identification and Control Using the Bouc-Wen Model

E-Book, Englisch, 222 Seiten, E-Book

ISBN: 978-0-470-51319-4
Verlag: John Wiley & Sons
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)



Hysterisis is a system property that is fundamental to a range ofengineering applications as the components of systems withhysterisis are able to react differently to different forcesapplied to them. Control theory is used to model these complexsystems and cause them to behave in the desired manner; theBouc-Wen model is a well-known semi-physical model that is usedextensively to describe the hysterisis of systems in the areas ofsmart structures and civil engineering.
The Bouc-Wen model for system hysterisis has increased inpopularity due to its capability of capturing in an analytical forma range of shapes of hysteretic cycles that match the behaviour ofa wide class of hysteretic systems. "Systems withHysterisis: Analysis, Identification and Control using the Bouc-WenModel" deals with the analysis, identification andcontrol of these systems, and offers a comprehensive andself-contained framework for the study of the Bouc-Wen model.
* Includes the latest techniques for modelling smart structuresand materials
* Provides a rigorous mathematical treatment of the subject alongwith practical comments, numerical solutions and a case study ofmagentorheological (MR) dampers.
* Begins by analysing the compatibility of the Bouc-Wen modelwith the laws of physics, and continues to cover the relationshipbetween the model parameters and hysterisis loop, identification ofthe model parameters and control of systems that include ahysteretic part described by the Bouc-Wen model.
* Includes case studies covering the identification and controlof smart material transducers for use in automotive, aerospace andstructural control
Systems with Hysterisis: Analysis, Identification and Controlusing the Bouc-Wen Model offers an invaluable source of ideas,concepts and insights for engineers, researchers, lecturers andsenior/ postgraduate students involved in the research, design anddevelopment of smart structures and related areas within civil andmechanical engineering. It will also be of interest to readersinvolved in the wider disciplines of electrical & controlengineering, applied mathematics, applied physics and materialscience.

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Fayçal Ikhouane, Universitat Politècnica deCatalunya, Departament de Matemàtica Aplicada III,Escola Universitària d'Enginyeria TècnicaIndustrial de Barcelona. C/ Comte d'Urgell, 187, 08036,Barcelona, Spain.
Fayçal Ikhouane currently holds both a research and teachingpost with the Control, Dynamics and Applications group at theTechnical University of Catalunya, Spain. He has been in this jobsince 2002, after having been a visiting scholar at the Universityof California in Santa Barbara, and a lecturer and associateresearcher with the Ecole Nationale d'Industrie Minéraleand the Ecole Mohammadia d'Ingénieurs in Morocco. Healso worked in industry as a control engineer at theSociété des Ciments d'Agadir, Morocco. Dr Ikhouaneis now conducting research on modelling, identification and controlof mechanical systems and smart structures with nonlinearities suchas hysteresis and friction, and is helping to set up a new researchlaboratory on these topics. He has co-authored around 10 journalpapers and 20 papers and presentations at major conferences.
José Rodellar, Universitat Politècnica deCatalunya, Departament de Matemàtica Aplicada III, EscolaTècnica Superior d'Enginyers de Camins, Canalsi Ports,Campus Nord UPC, C2, 08034, Barcelona, Spain.
José Rodellar is currently a Professor in the School of CivilEngineering at the Technical University of Catalunya, Spain. He hasbeen at the university since 1976, and is now Director of theControl, Dynamics and Applications group, which carries outtheoretical and applied research on modelling and control, withapplications in structural control and smart structures. Previousto this, he has been visiting professor at the Department of CivilEngineering, at the State University of New York, Buffalo (USA),and visiting scholar at the Department of Mechanical Engineering,University of California, Berkeley. He is a member of the Board ofDirectors of the International Association for Structural Controland Monitoring, has co-authored and edited five books, includingAdaptive Predictive Control: From the Concepts to PlantOptimization (Prentice Hall, 1995), Smart Structures andNATO Workshop (Kluwer, 1998), and co-authored around 160journal and conference papers.



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