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Modeling of Dynamic Systems with Engineering Applications Clarence W. de Silva (University of British Columbia, Vancouver, Canada)

Modeling of Dynamic Systems with Engineering Applications By Clarence W. de Silva (University of British Columbia, Vancouver, Canada)

Modeling of Dynamic Systems with Engineering Applications by Clarence W. de Silva (University of British Columbia, Vancouver, Canada)


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Summary

This book provides cutting edge insight into systems dynamics and related controls coverage for both students and practicing engineers. Updated throughout for the second edition, it serves as a firm foundation to develop expertise in design, prototyping, control, instrumentation, experimentation, and performance analysis.

Modeling of Dynamic Systems with Engineering Applications Summary

Modeling of Dynamic Systems with Engineering Applications by Clarence W. de Silva (University of British Columbia, Vancouver, Canada)

  • Examines the general nature of systems, systems modeling, and control
  • Covers both linear graphing and bond graphing approaches to systems design and analysis
  • Integrates computational software, using MATLAB and Simulink primarily
  • Includes analytical examples and numerical examples, simulations, case studies, and chapter problems
  • Presents key issues summaries in point form within chapters, for easy reference and recollection
  • About Clarence W. de Silva (University of British Columbia, Vancouver, Canada)

    Dr. Clarence W. de Silva, PEng, Fellow ASME, Fellow IEEE, Fellow Canadian Academy of Engineering, Fellow Royal Society of Canada, is a Professor of Mechanical Engineering at the University of British Columbia, Vancouver, Canada since 1988. He has occupied the following chair professorships:

    * Senior Canada Research Chair Professorship in mechatronics and industrial automation

    * NSERC-BC Packers Research Chair in industrial automation

    * Mobil Endowed Chair Professorship

    He has served as a faculty member at Carnegie Mellon University (1978-1987) and as a Fulbright Visiting Professor at the University of Cambridge (1987-1988).

    He has earned PhD from Massachusetts Institute of Technology (1978) and the University of Cambridge, England (1998), the Higher Doctorate, ScD from the University of Cambridge (2020), and an honorary DEng degree from University of Waterloo (2008).

    * Other Fellowships: Lilly Fellow at Carnegie Mellon University; NASA-ASEE Fellow; Senior Fulbright Fellow at Cambridge University; Fellow of the Advanced Systems Institute of British Columbia; Killam Fellow; Erskine Fellow at the University of Canterbury, New Zealand; Professorial Fellow at University of Melbourne; and Peter Wall Scholar at the University of British Columbia.

    * Awards: Paynter Outstanding Investigator Award and Takahashi Education Award, ASME Dynamic Systems & Control Division; Killam Research Prize; Outstanding Engineering Educator Award, IEEE Canada; Lifetime Achievement Award, World Automation Congress; IEEE Third Millennium Medal; Meritorious Achievement Award, Association of Professional Engineers of BC; and Outstanding Contribution Award, IEEE Systems, Man, and Cybernetics Society. Also, he has made 49 keynote addresses at international conferences.

    * Editorial Duties: Served on 14 journals including IEEE Transactions on Control System Technology, Journal of Dynamic Systems, Measurement & Control, Transactions of the ASME and IEEE-ASME Transactions on Mechatronics; editor-in-chief, International Journal of Control and Intelligent Systems; editor-in-chief, International Journal of Knowledge-Based Intelligent Engineering Systems; senior technical editor, Measurements and Control; and regional editor, North America, Engineering Applications of Artificial Intelligence-IFAC International Journal.

    * Publications: 25 technical books, 19 edited books, 51 book chapters, over 300 journal articles, and a similar number of conference papers.

    * Recent Books: Sensor Systems (Taylor & Francis/CRC, 2017); Sensors and Actuators: Engineering System Instrumentation (2nd Ed., Taylor & Francis/CRC, 2016); Mechanics of Materials (Taylor & Francis/CRC, 2014), Mechatronics: A Foundation Course (Taylor & Francis/ CRC, 2010); Modeling and Control of Engineering Systems (Taylor & Francis/CRC, 2009); Vibration: Fundamentals and Practice, (2nd Ed., Taylor & Francis/CRC, 2007); Mechatronics; An Integrated Approach (Taylor & Francis/CRC, 2005); Soft Computing and Intelligent Systems Design: Theory, Tools, and Applications (with F. Karray, Addison Wesley, 2004); and Force and Position Control of Mechatronic Systems-Design and Applications in Medical Devices, Springer, (with T.H. Lee, W. Liang, and K. Tan, Springer, 2021).

    Table of Contents

    Chapter 1 Introduction to Modeling

    Chapter 2 Basic Model Elements

    Chapter 3 Analytical Modeling

    Chapter 4 Model Linearization

    Chapter 5 Linear Graphs

    Chapter 6 Frequency-Domain Models

    Chapter 7 Transfer-Function Linear Graphs

    Appendix A: Graph-Tree Concepts for Linear Graphs

    Appendix B: MATLAB Toolbox for Linear Graphs

    Additional information

    NPB9780367644215
    9780367644215
    0367644215
    Modeling of Dynamic Systems with Engineering Applications by Clarence W. de Silva (University of British Columbia, Vancouver, Canada)
    New
    Hardback
    Taylor & Francis Ltd
    2022-07-27
    400
    N/A
    Book picture is for illustrative purposes only, actual binding, cover or edition may vary.
    This is a new book - be the first to read this copy. With untouched pages and a perfect binding, your brand new copy is ready to be opened for the first time

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