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Automatic Control in Aerospace 2004

Automatic Control in Aerospace 2004
Author: Alexander Nebylov
Publisher: Elsevier
Total Pages: 776
Release: 2005-10-03
Genre: Science
ISBN: 9780080440132

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Automatic Control in Aerospace 2004

Automatic Control in Aerospace 2004
Author: Aleksandr Vladimirovich Nebylov
Publisher:
Total Pages:
Release: 2005
Genre: Airplanes
ISBN: 9789999905312

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Automatic Control in Aerospace 1994 (Aerospace Control '94)

Automatic Control in Aerospace 1994 (Aerospace Control '94)
Author: D. Schaechter
Publisher: Elsevier
Total Pages: 438
Release: 2014-05-23
Genre: Technology & Engineering
ISBN: 148329692X

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An important, successful area for control systems development is that of state-of-the-art aeronautical and space related technologies. Leading researchers and practitioners within this field have been given the opportunity to exchange ideas and discuss results at the IFAC symposia on automatic control in aerospace. The key research papers presented at the latest in the series have been put together in this publication to provide a detailed assessment of present and future developments of these control system technologies.


Automatic Control in Aerospace 1992

Automatic Control in Aerospace 1992
Author: D.B. DeBra
Publisher: Elsevier
Total Pages: 573
Release: 2017-01-11
Genre: Technology & Engineering
ISBN: 1483298744

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Space vehicles have become increasingly complex in recent years, and the number of missions has multiplied as a result of extending frontiers in the exploration of our planetary system and the universe beyond. The advancement of automatic control in aerospace reflects these developments. Key areas covered in these proceedings include: the size and complexity of spacecrafts and the increasingly stringent performance requirements to be fulfilled in a harsh and unpredictable environment; the merger of space vehicles and airplanes into space planes to launch and retrieve payloads by reusable winged vehicles; and the demand to increase space automation and autonomy to reduce human involvement as much as possible in manned, man-tended and unmanned missions. This volume covers not only the newly evolving key technologies but also the classical issues of guidance, navigation and control.


Guidance, Navigation, and Control for Spacecraft Rendezvous and Docking: Theory and Methods

Guidance, Navigation, and Control for Spacecraft Rendezvous and Docking: Theory and Methods
Author: Yongchun Xie
Publisher: Springer Nature
Total Pages: 495
Release: 2021-02-16
Genre: Technology & Engineering
ISBN: 9811569908

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This book focuses on the theory and design methods for guidance, navigation, and control (GNC) in the context of spacecraft rendezvous and docking (RVD). The position and attitude dynamics and kinematics equations for RVD are presented systematically in accordance with several different coordinate systems, including elliptical orbital frame, and recommendations are supplied on which of these equations to use in different phases of RVD. The book subsequently explains the basic principles and relative navigation algorithms of RVD sensors such as GNSS, radar, and camera-type RVD sensors. It also provides guidance algorithms and schemes for different phases of RVD, including the latest research advances in rapid RVD. In turn, the book presents a detailed introduction to intelligent adaptive control and proposes corresponding theoretical approaches to thruster configuration and control allocation for RVD. Emphasis is placed on the design method of active and passive trajectory protection in different phases of RVD, and on the safety design of the RVD mission as a whole. For purposes of verification, the Shenzhou spacecraft’s in-orbit flight mission is introduced as well. All issues addressed are described and explained from basic principles to detailed engineering methods and examples, providing aerospace engineers and students both a basic understanding of, and numerous practical engineering methods for, GNC system design in RVD.