Classical Control Using H∞ Methods
Theory, Optimization and Design
Paperback Engels 1998 9780898714197Samenvatting
This versatile book teaches control system design using H∞ techniques that are simple and compatible with classical control, yet powerful enough to quickly allow the solution of physically meaningful problems. The authors begin by teaching how to formulate control system design problems as mathematical optimization problems and then discuss the theory and numerics for these optimization problems. Their approach is simple and direct, and since the book is modular, the parts on theory can be read independently of the design parts and vice versa, allowing readers to enjoy the book on many levels.
The development of H∞ engineering was one of the main accomplishments of control in the 1980s. However, until now, there has not been a publication suitable for teaching the topic at the undergraduate level. This book fills that gap by teaching control system design using H∞ techniques at a level within reach of the typical engineering and mathematics student. It also contains a readable account of recent developments and mathematical connections.
The authors treat control design problems in a physically correct way. They present a small set of specific rules that the reader can apply to convert a particular design problem to the fundamental optimization problem of H∞ control. This precisely formulated mathematics problem can then be solved on a computer. The book introduces the control software package OPTDesign, which allows the reader to easily reproduce the calculations done in the solved examples and even try variations on them. The description of how to convert an engineering problem to a form suitable for CAD is simpler than in other books.
Specificaties
Lezersrecensies
Inhoudsopgave
- Preface
- Part I: Short Design Course. Chapter 1: A Method for Solving System Design Problems
- Chapter 2: Internal Stability
- Chapter 3: Frequency Domain Performance Requirements
- Chapter 4: Optimization
- Review of Concepts
- Chapter 5: A Design Example With OPTDesign
- Part II: More on Design. Chapter 6: Examples
- Chapter 7: Internal Stability
- Part III: H∞ Theory. Chapter 8: H∞ Optimization and Control
- Chapter 10: Facts About Analytic Functions
- Chapter 11: Proof of the Main Result
- Chapter 12: Computer Solutions to OPT
- Part IV: H∞ Theory: Vector Case. Chapter 13: Many Analytic Functions
- Chapter 14: Coordinate Descent Approaches to OPT
- Chapter 15: More Numerical Algorithms
- Chapter 16: More Theory of the Vector OPT Problem
- Part V: Semidefinite Programming vs. H∞ Optimization. Chapter 17: Matrix H∞ Optimization
- Chapter 18: Numerical Algorithms for H∞ Optimization
- Chapter 19: Semidefinite Programming vs. Matrix H∞ Optimization
- Chapter 20: Proofs
- Part VI: Appendices. Appendix A: History and Perspective
- Appendix B: Pure Mathematics and H∞ Optimization
- Appendix C: Uncertainty
- Appendix D: Computer Code for Examples in Chapter 6
- Appendix E: Getting OPTDesign and Anopt
- Appendix F: Anopt Notebook
- Appendix G: NewtonInterpolant Notebook
- Appendix H: NewtonFit Notebook.
Rubrieken
- advisering
- algemeen management
- coaching en trainen
- communicatie en media
- economie
- financieel management
- inkoop en logistiek
- internet en social media
- it-management / ict
- juridisch
- leiderschap
- marketing
- mens en maatschappij
- non-profit
- ondernemen
- organisatiekunde
- personal finance
- personeelsmanagement
- persoonlijke effectiviteit
- projectmanagement
- psychologie
- reclame en verkoop
- strategisch management
- verandermanagement
- werk en loopbaan
