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Bond Graphs for Modelling, Control and Fault Diagnosis of Engineering Systems
Details
This compilation of contributions from experts across the world addresses readers in academia and industry who are concerned with control system design. It covers theoretical topics, applications in various areas as well as software for bond graph modelling.
This book presents theory and latest application work in Bond Graph methodology with a focus on:
• Hybrid dynamical system models,
• Model-based fault diagnosis, model-based fault tolerant control, fault prognosis
• and also addresses
• Open thermodynamic systems with compressible fluid flow,
• Distributed parameter models of mechanical subsystems.
In addition, the book covers various applications of current interest ranging from motorised wheelchairs, in-vivo surgery robots, walking machines to wind-turbines.The up-to-date presentation has been made possible by experts who are active members of the worldwide bond graph modelling community.
This book is the completely revised 2nd edition of the 2011 Springer compilation text titled Bond Graph Modelling of Engineering Systems Theory, Applications and Software Support. It extends the presentation of theory and applications of graph methodology by new developments and latest research results.
Like the first edition, this book addresses readers in academia as well as practitioners in industry and invites experts in related fields to consider the potential and the state-of-the-art of bond graph modelling.
New edition contains fully new and updated material on state-of-the-art applications of bond graph methodology Explains model-based fault detection and isolation, model-based fault tolerant control, fault prognosis, and applications Highlights synergies and relations between bond graph methodology
Autorentext
Dr Wolfgang Borutzky is a professor of modelling and simulation of engineering systems at Bonn-Rhein-Sieg University of Applied Sciences, Germany.
He is the author of a 2010 Springer monograph on Bond Graph Methodology and of a 2015 Springer book on Bond Graph Model-based Fault Diagnosis in Hybrid Systems. He is also the editor and a co-author of a 2011 Springer compilation text on Bond Graph Modelling of Engineering Systems with contributions from experts in various fields from all over the world.
Since 1990 he has served in many international scientific conferences on Modelling and Simulation in various capacities and has published in the proceedings of many international conferences on Modelling and Simulation and in refereed scientific journals.
Inhalt
Introduction.- Part I: Bond Graph Theory and Methodology.- Bond Graph Modelling and Analysis of Hybrid Systems.- Controlled Switched Junctions. -Causally Dynamic Hybrid Bond Graphs.- Part II: Bond Graph Modelling for Control, Fault Diagnosis, and Fault Tolerant Control.- Fault Diagnosis and Fault Tolerant Control of Hybrid Systems Using Bond Graphs.- Bond Graph-based Fault Diagnosis and Prognosis of Uncertain Systems.- Bond Graphs for Supervision of Industrial Processes.- Part III: Thermodynamic Systems and Distributed Parameter Systems.- Bond Graph Modelling and Simulation of Thermodynamic Systems.- Fluid-flow Systems.- Bond Graph Approximation of Distributed Parameter Systems.- Part IV: Applications.- Absorbing Vibrations in a Helicopter.- Bond Graph Modelling and Control of Miniature Robots for In-vivo Surgery. -Modelling and Control of Mobile Legged Robots.- Exploitation of Renewable Energy, Bond Graph Modelling of Wind Turbines.- Bond Graph Modelling in Biomedical Engineering,Bond Graph Modelling of Biochemical Processes.- Conclusion.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783319474335
- Lesemotiv Verstehen
- Genre Electrical Engineering
- Auflage 2nd edition 2017
- Editor Wolfgang Borutzky
- Sprache Englisch
- Anzahl Seiten 700
- Herausgeber Springer International Publishing
- Größe H241mm x B160mm x T43mm
- Jahr 2017
- EAN 9783319474335
- Format Fester Einband
- ISBN 3319474332
- Veröffentlichung 09.01.2017
- Titel Bond Graphs for Modelling, Control and Fault Diagnosis of Engineering Systems
- Gewicht 1203g