System Dynamics for Engineering Students
Concepts and Applications
- 2 Edición - 29 de agosto de 2017
- Autor: Nicolae Lobontiu
- Idioma: Inglés
Engineering system dynamics focuses on deriving mathematical models based on simplified physical representations of actual systems, such as mechanical, electrical, fluid, or… Leer más
Descripción
Descripción
Engineering system dynamics focuses on deriving mathematical models based on simplified physical representations of actual systems, such as mechanical, electrical, fluid, or thermal, and on solving these models for analysis or design purposes. System Dynamics for Engineering Students: Concepts and Applications features a classical approach to system dynamics and is designed to be utilized as a one-semester system dynamics text for upper-level undergraduate students with emphasis on mechanical, aerospace, or electrical engineering. It is the first system dynamics textbook to include examples from compliant (flexible) mechanisms and micro/nano electromechanical systems (MEMS/NEMS). This new second edition has been updated to provide more balance between analytical and computational approaches; introduces additional in-text coverage of Controls; and includes numerous fully solved examples and exercises.
Puntos claves
Puntos claves
- Features a more balanced treatment of mechanical, electrical, fluid, and thermal systems than other texts
- Introduces examples from compliant (flexible) mechanisms and MEMS/NEMS
- Includes a chapter on coupled-field systems
- Incorporates MATLAB® and Simulink® computational software tools throughout the book
- Supplements the text with extensive instructor support available online: instructor's solution manual, image bank, and PowerPoint lecture slides
NEW FOR THE SECOND EDITION
- Provides more balance between analytical and computational approaches, including integration of Lagrangian equations as another modelling technique of dynamic systems
- Includes additional in-text coverage of Controls, to meet the needs of schools that cover both controls and system dynamics in the course
- Features a broader range of applications, including additional applications in pneumatic and hydraulic systems, and new applications in aerospace, automotive, and bioengineering systems, making the book even more appealing to mechanical engineers
- Updates include new and revised examples and end-of-chapter exercises with a wider variety of engineering applications
De interès para
De interès para
Junior and senior undergraduate students in mechanical, electrical and aerospace engineering programs
Índice
Índice
1. Introduction2. Mechanical Elements3. Mechanical Systems4. Electrical Systems5. Fluid and Thermal Systems6. The Laplace Transform7. Transfer Function Approach8. State Space Approach9. Frequency-Domain Approach10. Coupled-Field Systems11. Block Diagrams and Feedback Control System Modeling12. Stability of Feedback Control Systems13. Time- and Frequency-Domain Controls of Feedback SystemsAppendix A Complex NumbersAppendix B Matrix AlgebraAppendix C Solutions to Linear Homogeneous Ordinary Differential Equations with Constant CoefficientsAppendix D Basics of SimulinkAppendix E Essentials of MATLAB and System Dynamics-Related ToolboxesAppendix F Deformations, Strains, and Stresses of Basic Line Mechanical Members
Detalles del producto
Detalles del producto
- Edición: 2
- Publicado: 31 de agosto de 2017
- Idioma: Inglés
Sobre el autor
Sobre el autor
NL
Nicolae Lobontiu
Nicolae Lobontiu, Ph.D., is Professor of Mechanical Engineering at the University of Alaska Anchorage. Professor Lobontiu’s teaching background includes courses in system dynamics, controls, instrumentation and measurement, mechanics of materials, dynamics, vibrations, finite element analysis, boundary element analysis, and thermal system design.
Afiliaciones y experiencia
Professor of Mechanical Engineering, University of Alaska Anchorage, USAVer libro en ScienceDirect
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