- 304 pages
- English
- ePUB (mobile friendly)
- Only available on web
Fault-Tolerant Attitude Control of Spacecraft
About This Book
Fault-Tolerant Attitude Control of Spacecraft presents the fundamentals of spacecraft fault-tolerant attitude control systems, along with the most recent research and advanced, nonlinear control techniques. This book gives researchers a self-contained guide to the complex tasks of envisaging, designing, implementing and experimenting by presenting designs for integrated modeling, dynamics, fault-tolerant attitude control, and fault reconstruction for spacecraft. Specifically, the book gives a full literature review and presents preliminaries and mathematical models, robust fault-tolerant attitude control, fault-tolerant attitude control with actuator saturation, velocity-free fault tolerant attitude control, finite-time fault-tolerant attitude tracking control, and active fault-tolerant attitude contour.
Finally, the book looks at the future of this interesting topic, offering readers a one-stop solution for those working on fault-tolerant attitude control for spacecraft.
- Presents the fundamentals of fault-tolerant attitude control systems for spacecraft in one practical solution
- Gives the latest research and thinking on nonlinear attitude control, fault tolerant control, and reliable attitude control
- Brings together concepts in fault control theory, fault diagnosis, and attitude control for spacecraft
- Covers advances in theory, technological aspects, and applications in spacecraft
- Presents detailed numerical and simulation results to assist engineers
- Offers a clear, systematic reference on fault-tolerant control and attitude control for spacecraft
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Table of contents
- Cover image
- Title page
- Table of Contents
- Copyright
- Dedication
- List of Figures
- List of Tables
- Biography
- Preface
- Acknowledgments
- Chapter 1: Overview
- Chapter 2: Preliminaries
- Chapter 3: Robust fault-tolerant attitude control
- Chapter 4: Fault-tolerant attitude control with actuator saturation
- Chapter 5: Fault-tolerant velocity-free attitude control
- Chapter 6: Fault-tolerant finite-time attitude-tracking control
- Chapter 7: Active fault-tolerant attitude control
- Chapter 8: Conclusions and future work
- References
- Index