
Aircraft Flight Dynamics and Control
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Aircraft Flight Dynamics and Control
About this book
This book covers the physical and mathematical fundamentals of aircraft flight dynamics as well as more advanced theory enabling a better insight into nonlinear dynamics. This leads to a useful introduction to automatic flight control and stability augmentation systems with discussion of the theory behind their design, and the limitations of the systems. The author provides a rigorous development of theory and derivations and illustrates the equations of motion in both scalar and matrix notation.
Key features:
- Classical development and modern treatment of flight dynamics and control
- Detailed and rigorous exposition and examples, with illustrations
- Presentation of important trends in modern flight control systems
- Accessible introduction to control allocation based on the author's seminal work in the field
- Development of sensitivity analysis to determine the influential states in an airplane's response modes
- End of chapter problems with solutions available on an accompanying website
Written by an author with experience as an engineering test pilot as well as a university professor, Aircraft Flight Dynamics and Control provides the reader with a systematic development of the insights and tools necessary for further work in related fields of flight dynamics and control. It is an ideal course textbook and is also a valuable reference for many of the necessary basic formulations of the math and science underlying flight dynamics and control.
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Information
Table of contents
- Cover
- Aerospace Series List
- Title Page
- Copyright
- Dedication
- Series Preface
- Glossary
- Chapter 1: Introduction
- Chapter 2: Coordinate Systems
- Chapter 3: Coordinate System Transformations
- Chapter 4: Rotating Coordinate Systems
- Chapter 5: Inertial Accelerations
- Chapter 6: Forces and Moments
- Chapter 7: Equations of Motion
- Chapter 8: Linearization
- Chapter 9: Solutions to the Linear Equations
- Chapter 10: Aircraft Flight Dynamics
- Chapter 11: Flying Qualities
- Chapter 12: Automatic Flight Control
- Chapter 13: Trends in Automatic Flight Control
- Appendix A: Example Aircraft
- Appendix B: Linearization
- Appendix C: Derivation of Euler Parameters
- Appendix D: Fedeeva's Algorithm
- Appendix E: MATLAB® Commands Used in the Text
- Index
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