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System Dynamics for Engineering Students: Concepts and Applications discusses the basic concepts of engineering system dynamics. Engineering system dynamics focus on deriving mathematical models based on simplified physical representations of actual systems, such as mechanical, electrical, fluid, or thermal, and on solving the mathematical models. The resulting solution is utilized in design or analysis before producing and testing the actual system.
The book discusses the main aspects of a system dynamics course for engineering students; mechanical, electrical, and fluid and thermal system modeling; the Laplace transform technique; and the transfer function approach. It also covers the state space modeling and solution approach; modeling system dynamics in the frequency domain using the sinusoidal (harmonic) transfer function; and coupled-field dynamic systems.
The book is designed to be a one-semester system-dynamics text for upper-level undergraduate students with an emphasis on mechanical, aerospace, or electrical engineering. It is also useful for understanding the design and development of micro- and macro-scale structures, electric and fluidic systems with an introduction to transduction, and numerous simulations using MATLAB and SIMULINK.
- The first textbook to include a chapter on the important area of coupled-field systems
- Provides a more balanced treatment of mechanical and electrical systems, making it appealing to both engineering specialties
- Sales Rank: #933514 in Books
- Published on: 2010-04-08
- Original language: English
- Number of items: 1
- Dimensions: 9.30" h x 1.30" w x 7.60" l, 2.38 pounds
- Binding: Hardcover
- 532 pages
Review
"This is without doubt a text that can be used with relative ease by instructors and students alike, and that would likely serve as a useful and practical reference for many years after graduation, especially given its systematic approach to the essential physical modeling elements. The content is nicely laid out with good quality illustrations and clean lines and achieves an appropriate balance between theoretical derivations and examples." --Journal of Mechanical Engineering Science
About the Author
Nicolae Lobontiu, Ph.D is associate professor of mechanical engineering at the University of Alaska Anchorage. His teaching background has run the gamut of mechanical engineering, including: system dynamics, controls, instrumentation and measurement, mechanics of materials, dynamics, vibrations, finite element analysis, boundary element analysis, and thermal system design.
Professor Lobontiu’s research interests for the last decade have focused on compliant mechanisms (mechanical devices which move by elastic deformation of their flexible joints) and micro/nano electromechanical systems. He has authored four books and 20 peer-reviewed journal papers on the aforementioned research topics.
Most helpful customer reviews
4 of 4 people found the following review helpful.
Will be of use to those teaching a one-semester course in mechanical, aerospace, electrical, biomedical or civil engineering
By RNS
Nicolae Lobontiu, Associate Professor of Mechanical Engineering at the University of Alaska-Anchorage, brings his years of experience teaching classes in system dynamics, as well as the knowledge gleaned from writing four related previous texts -- Dynamics of Microelectomechanical Systems; Mechanical Design of Microresonators; Mechanics of Microelectromechanical Systems; and, Compliant Mechanism: Design of Flexure Hinges -- to produce this solid text for students entering this emerging field.
The discipline of system dynamics focuses on teaching students "how to create and analyze mathematical models of dynamic, mechanical, electrical/electromagnetic, thermal, and fluid/pneumatic systems" for the purpose of designing and then testing systems before they are actually built. While the author retains a classical approach, Lobontiu also introduces examples from compliant mechanisms and microscale devices and machines.
Consideration is given to mechanical engineering problems for junior and senior-level undergraduate students in support of mechanical, aerospace, electrical, biomedical and civil engineering courses and explores mechanism and movement in springs and joints present in "micro-machined, lithographic based devices to traditional models of microscale, fluidic, and electromechanical systems." Offers a "foundation and framework for the development of controllers applied to these dynamical systems." Includes examples and problems at the end of each chapter to familiarize readers with the modeling and dynamical systems engineers are likely to encounter in the future.
Publisher touts the text as "the first system dynamics textbook to include extensive examples from the relatively new application areas of microelectromechanical systems (MEMS) and compliant (flexible) mechanical devices," and to offer "more ancillary instructor support than any other system dynamics text."
Text is divided into eleven chapters and four appendices:
Ch. 1 Introduction; Ch 2. Mechanical Systems I; Ch. 3 Mechanical Systems II; Ch. 4 Electrical Systems; Ch. 5 Fluid and Thermal Systems; Ch. 6 The Laplace Transform; Ch. 7 Transfer Function Approach; Ch. 8 State-Space Approach; Ch. 9 Frequency Domain Approach; Ch. 10 Coupled-Field Systems; Ch. 11 Introduction to Modeling and Design of Feedback Control System.
Appendix A Solution to Linear Ordinary Homogeneous Differential Equations with Constant Coefficients; Appendix B Review of Matrix Algebra; Appendix C Essentials of MATLAB and System Dynamics-Related Toolboxes; and, Appendix D Deformations, Strains and Stresses of Flexible Mechanical Components.
Recommended for use by instructors teaching a one-semester text for engineering students; by scientists and practicing engineers wanting to better understand the fundamentals of dynamic systems, engineering modeling, vibrations, and system dynamics; and, inclusion in college and university library collections supporting mechanical, aerospace, electrical, biomedical and civil engineering courses.
R. Neil Scott
Middle Tennessee State University
4 of 4 people found the following review helpful.
Well organized, clearly written, lots of examples
By Comdet
I'm very pleased with this textbook. Since I'm auditing a course I can be far more selective in what portions I want to dive into and which ones I'm content to skim. So it was great to see that each chapter starts with a detailed list of objectives that clearly outline the concepts and topics covered (often with references to supporting topics in other chapters). I'm finding that to be a highly effective way to discern which chapters are worth really getting into, and which ones I'm content to just get the general gist.
The writing style is clear and direct. There are many worked-through examples (but, if I had my druthers, I'd like to see a few more, especially concerning liquid systems modeling). The suggested reading list at the conclusion of each chapter is a bit sparse, but generally current (at least as current as it could be in a printed text). The summary of MATLAB commands in the Appendix has been invaluable so far.
I am, however, very disappointed that I can't seem to gain access to the online supplemental material. The book states that there is a bonus online chapter and, more importantly, downloadable MATLAB code for the examples in the text. I've tried to access this info using the URL provided in the book, but all I get is caught in a loop that goes nowhere. I've only tried it using IE, so perhaps it's a browser issue. I won't downgrade the rating for the book due to this since it may be a problem on my end, but it is a disappointment.
UPDATE: 1/6/11 -- the publisher was kind enough to provide an updated URL (see the first comment below for the link) and it works fine. It allows access to a bonus chapter 11 (PDF format), add-ons for several existing chapters (PDF) and a Word doc containing the MATLAB code that you can cut and paste. Great supplemental material (especially the MATLAB code).
3 of 3 people found the following review helpful.
Excellent Subject Matter Expertise
By GX
This book fills the gap between an entry level 100 level course for engineering students and the 400 or masters level. The Alaska based author does a great job filling this book cover to cover with well organized text, examples and illustrations. Additionally online content is available at booksite.academicpress.com/lobontiu/student.php
This is recommended for current engineering students or those graduated who want a practical desk reference.
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