Automatic control of atmospheric and space flight vehicles [electronic resource] : design and analysis with MATLAB® and Simulink® / Ashish Tewari.

Perhaps the only¡full publication¡to present a unified and straightforward introduction to the design and analysis of automatic control systems for both atmospheric and space flight vehicles, Automatic¡Control of Atmospheric and Space Flight Vehicles¡is intended to be a textbook for senior undergrad...

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Bibliographic Details
Online Access: Full Text (via Springer)
Main Author: Tewari, Ashish
Format: Electronic eBook
Language:English
Published: New York : Birkhäuser, ©2011.
Series:Control engineering (Birkhäuser)
Subjects:

MARC

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245 1 0 |a Automatic control of atmospheric and space flight vehicles  |h [electronic resource] :  |b design and analysis with MATLAB® and Simulink® /  |c Ashish Tewari. 
260 |a New York :  |b Birkhäuser,  |c ©2011. 
300 |a 1 online resource (xiv, 374 pages) 
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490 1 |a Control Engineering. 
504 |a Includes bibliographical references and index. 
505 0 |a Preface -- 1 Introduction -- 2 Flight Dynamic Models.-¡3 Control Design¡Techniques -- 4 Automatic Control of Aircraft -- 5 Automatic Control of Rockets -- 6 Automatic Control of Spacecraft -- Appendix A¡Linear Optimal Control -- References. 
520 |a Perhaps the only¡full publication¡to present a unified and straightforward introduction to the design and analysis of automatic control systems for both atmospheric and space flight vehicles, Automatic¡Control of Atmospheric and Space Flight Vehicles¡is intended to be a textbook for senior undergraduate and graduate students in aerospace engineering/aeronautics and astronautics departments. Covering basic control theory and design concepts, the material in the book has been specifically developed for a modern course on flight control systems, where the artificial distinction between aircraft, rockets, and spacecraft is removed. A wide variety of flight control topics are presented in a concise and easy-to-read--yet rigorous--manner. The book highlights an understanding of relevant flight dynamic principles required for¡designing a flight control system, placing¡specific emphasis¡on a wealth of realistic examples and exercises that require programming. A¡particularly appealing¡feature of the¡text is the ready and extensive use of MATLAB®/Simulink® codes in the many solved examples illustrating flight control design and analysis; these examples give the reader hands-on experience with practical problems and make the book an¡even more¡useful and¡illuminating tool. For convenience, ¡all the codes used can be downloaded from¡the author's and publisher's¡websites. Moreover, selected exercise solutions are provided in the text, and a full solutions manual is available to instructors online. The coverage of flight control topics in the book is¡fundamental rather than exhaustive, with a greater emphasis on single-variable control for a¡strong¡understanding of the relevant concepts. The work may therefore be used for a first course¡on flight control systems. However, it also covers some advanced topics--such as linear optimal control, nonlinear orbit plane control, and two-point boundary value problem solution for de-orbiting spacecraft--imparting¡a flavor¡of the variety found in automatic flight control, and will be of interest to experienced researchers and practitioners in aerospace and control engineering. 
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