System Dynamics: Modeling, Simulation, and Response
Autor Osama Gaden Limba Engleză Paperback – 21 iun 2026
Presenting transient response analyses of first- and second-order systems subjected to various inputs, the book provides a thorough discussion of computational analyses of transient responses using MATLAB®/Simulink and 20-sim software. It introduces the Lagrangian method and its application in handling mechanical and electrical systems. The book reviews the classical method for solving differential equations and includes Laplace transforms.
The book is intended for upper-level undergraduate mechanical and aerospace engineering students taking system dynamics courses.
Instructors will be able to utilize a Solutions Manual and Figure Slides for their courses.
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Specificații
ISBN-13: 9781032685649
ISBN-10: 1032685646
Pagini: 549
Ilustrații: 854
Dimensiuni: 156 x 234 mm
Greutate: 1.02 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
ISBN-10: 1032685646
Pagini: 549
Ilustrații: 854
Dimensiuni: 156 x 234 mm
Greutate: 1.02 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Public țintă
Postgraduate and Undergraduate AdvancedNotă biografică
Osama Gad is a lecturer in the Mechanical Engineering Department at Kuwait University. He received his PhD in mechanical engineering in 1997 and has almost 40 years of experience as an instructor and teaching assistant in mechanical engineering, namely in dynamics, system dynamics, theory of machines, vibrations, and control. He has written numerous articles for reputed journals and served as peer reviewer for the Journal of Dynamic System, Measurements and Control, Journal of Mechanical Design, and Journal of Mechanical Engineering Science.
Cuprins
1. Introduction. 2. Mechanical Systems. 3. Bond Graph Modeling Technique. 4. Electrical Systems. 5. Fluid and Thermal Systems. 6. Lagrange Technique. 7. System Differential Equations Solution. 8. Dynamic System Responses. 9. Frequency Response. 10. Nonlinear Dynamic Systems
Descriere
System Dynamics covers linearity-based modeling techniques before delving into nonlinear systems. It compares the Bond Graph technique against traditional techniques (Newton's law, Kirchhoff's law, the law of the conservation of energy, and the heat transfer law).