An Introduction to Bond Graph Modeling with Applications

 
 
Chapman & Hall/CRC (Verlag)
  • 1. Auflage
  • |
  • erscheint ca. am 18. Juni 2021
  • |
  • 266 Seiten
 
E-Book | ePUB ohne DRM | Systemvoraussetzungen
978-1-000-39550-1 (ISBN)
 

An Introduction to Bond Graph Modeling with Applications presents a collection of exercises on dynamical systems, modeling and control for university students in the areas of engineering, physics and applied mathematics. We can find several books on bond graphs, but most merely a small set of exercises and, in a few cases, some commands for computer packages like MATLAB or Mathematica. It is di¿cult to ¿nd books with a broad set of solved exercises and proposed exercises with solutions, guiding researchers starting their work with bond graphs, or students who are just beginning their study of the topic. This book aims to fill that gap, and provide a comprehensive, reader-friendly introduction to the Bond Graph modeling tool.

Features

  • Gives in-depth theoretical background coupled with practical, hands-on instructions.
  • Provides a clear pedagogical framework, with numerous exercises and problems.
  • Suitable for students and researchers who work with bond graphs: principally such as applied mathematicians, physicist and engineers.

1. Auflage
  • Englisch
  • Milton
  • |
  • Großbritannien
Taylor & Francis Ltd
  • Für höhere Schule und Studium
372 schwarz-weiße Abbildungen, 372 schwarz-weiße Zeichnungen, 28 schwarz-weiße Tabellen
  • 11,38 MB
978-1-000-39550-1 (9781000395501)
weitere Ausgaben werden ermittelt

J. A. Tenreiro Machado was born at 1957. He earned his PhD. (1989) and 'Habilitation' (1995), in Electrical and Computer Engineering at the University of Porto. He started his teaching and research activity in 1980. He is currently the Principal Coordinator Professor at the Dept. of Electrical Engineering, Institute of Engineering, Polytechnic Institute of Porto,. His research interests include complex systems, nonlinear dynamics, fractional calculus, modeling, entropy, control, evolutionary computing, and others.

Vitor M. R. Cunha graduated in Electrical and Computer Engineering from the University of Porto in 1999. He completed his master's degree also in Electrical and Computer Engineering from the Polytechnic Institute of Porto in 2009. He started to work as a research assistant after graduating and began teaching at the Dept. of Electrical Engineering, Institute of Engineering, Polytechnic Institute of Porto in 2001. He works in a wide spectrum of subjects such as Information Technology, Virtual Reality, Realtime Simulation, Robotics, Electronics, Modeling and Control of Dynamical Systems.

1. Mathematical Models of Dynamical Systems. 1.1. Introduction. 1.2. Modeling of Electrical Systems. 1.3. Transmission Systems. 1.4. Modeling of Hydraulic Systems. 1.5. Modeling of Thermal Systems. 2. Bond Graph Modeling. 2.1 Basic Concepts. 2.2. Bond Graph Elements. 2.4. Examples of Application of Bond Graphs. 2.5. Casualty. 2.6. Assigning Casualty to Bond Graph. 3. Electrical Systems. 3.1. Introduction. 3.2. Solved Problems. 3.3. Proposed Exercises. 4. Mechanical Systems. 4.1. Introduction. 4.2. Solved Problems. 4.3. Proposed Exercises. 5. Hydraulic Systems. 5.1. Introduction. 5.2. Solved Problems. 5.3. Exercises. 6. Thermal Systems. 6.1. Introduction. 6.2. Solved Problems. 6.3. Exercises. 7. Multi-domain Systems. 7.1. Introduction. 7.2. Solved Problems. 7.3. Exercises. 8. Bond Graph Modeling and Simulation Using 20-sim. 8.1 Introduction. 8.2. Guided Exercise. Solutions. Appendices. References. Index.
"The forthcoming book, An Introduction to Bond Graph Modeling with Applications by J. A. Tenreiro Machado and Vitor M. R. Cunha is an excellent university textbook on the bond graph modelling presenting a collection of exercises on dynamical systems, modeling, and control for university students. The book provides a clear pedagogical framework on bond graph modelling, giving in-depth theoretical background coupled with practical, hands-on instructions for mathematical modeling of various dynamical systems, such as hydraulic systems, thermal systems, and electrical systems. We recommend the book for students and researchers who work in applied mathematics, physics, and engineering."
- Dimitri Volchenkov, Texas Tech University and author of Grammar Of Complexity: From Mathematics To A Sustainable World



"The book by Machado and Cunha is really helpful and insightful in the application of the bond graph method for describing dynamical systems. An Introduction to Bond Graph Modeling with Applications takes the reader step by step in a collection of selected examples and exercises. Therefore, the work is an invaluable resource for students and researchers starting work with this fascinating tool. This book will definitely help them in detail understanding of the subject very deeply and will be useful to guide their research."
- Santanu Saha Ray, National Institute of Technology, Rourkela



"This is a very well-written book on bond graph method for discrete and low-degrees of freedom systems. The book has many interesting examples for the readers to practice. The most important part of the book is an introduction of a software platform for implementing the bond graph methods. This will make is easy for the readers to use the bond graph method to model complex dynamic systems."
- Jian-Qiao Sun, University of California, Merced and Editor-in-Chief, International Journal of Dynamics and Control

"The book presents an introduction to bond graph modelling applied to several areas of engineering comprising, electrical, mechanical, hydraulic as well as multi-domain systems. By using a modular methodology, students can easily grasp the general ideas to model dynamical systems. Furthermore, it offers a subtle notion of symmetry helpful to unify concepts, by showing the unity of the principles used, and accordingly to extend the ideas to other possible domains. The rich illustrations, the multitude of examples and exercises with solutions makes it an excellent textbook very useful for students, for learning to model and control dynamical systems applied in various engineering disciplines."
- Professor Miguel A. F. Sanjuan, Universidad Rey Juan Carlos and the co-author of Predictability of Chaotic Dynamics. A finite-time Lyapunov exponents approach

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