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Satellite formation flyingrelative d...
~
Poh, Eng Kee.
Satellite formation flyingrelative dynamics, formation design, fuel optimal maneuvers and formation maintenance /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Satellite formation flyingby Danwei Wang, Baolin Wu, Eng Kee Poh.
Reminder of title:
relative dynamics, formation design, fuel optimal maneuvers and formation maintenance /
Author:
Wang, Danwei.
other author:
Wu, Baolin.
Published:
Singapore :Springer Singapore :2017.
Description:
x, 205 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Formation flying.
Online resource:
http://dx.doi.org/10.1007/978-981-10-2383-5
ISBN:
9789811023835$q(electronic bk.)
Satellite formation flyingrelative dynamics, formation design, fuel optimal maneuvers and formation maintenance /
Wang, Danwei.
Satellite formation flying
relative dynamics, formation design, fuel optimal maneuvers and formation maintenance /[electronic resource] :by Danwei Wang, Baolin Wu, Eng Kee Poh. - Singapore :Springer Singapore :2017. - x, 205 p. :ill., digital ;24 cm. - Intelligent systems, control and automation: science and engineering,v.872213-8986 ;. - Intelligent systems, control and automation: science and engineering ;v.70..
Introduction -- Dynamic Models of Satellite Relative Motion around an Oblate Earth -- Passive and Periodic Satellite Formation Design around an Oblate Earth -- Nonlinear Optimization of Low-Thrust Trajectory for Satellite Formation -- Optimal Control for Satellite Formation Keeping -- Decentralized Control for Attitude Synchronization under Undirected Communication Topology -- Decentralized Control for Attitude Synchronization under directed Communication Topology.
This book systematically describes the concepts and principles for multi-satellite relative motion, passive and near passive formation designs, trajectory planning and control for fuel optimal formation maneuvers, and formation flying maintenance control design. As such, it provides a sound foundation for researchers and engineers in this field to develop further theories and pursue their implementations. Though satellite formation flying is widely considered to be a major advance in space technology, there are few systematic treatments of the topic in the literature. Addressing that gap, the book offers a valuable resource for academics, researchers, postgraduate students and practitioners in the field of satellite science and engineering.
ISBN: 9789811023835$q(electronic bk.)
Standard No.: 10.1007/978-981-10-2383-5doiSubjects--Topical Terms:
770578
Formation flying.
LC Class. No.: TL796
Dewey Class. No.: 629.434
Satellite formation flyingrelative dynamics, formation design, fuel optimal maneuvers and formation maintenance /
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Introduction -- Dynamic Models of Satellite Relative Motion around an Oblate Earth -- Passive and Periodic Satellite Formation Design around an Oblate Earth -- Nonlinear Optimization of Low-Thrust Trajectory for Satellite Formation -- Optimal Control for Satellite Formation Keeping -- Decentralized Control for Attitude Synchronization under Undirected Communication Topology -- Decentralized Control for Attitude Synchronization under directed Communication Topology.
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This book systematically describes the concepts and principles for multi-satellite relative motion, passive and near passive formation designs, trajectory planning and control for fuel optimal formation maneuvers, and formation flying maintenance control design. As such, it provides a sound foundation for researchers and engineers in this field to develop further theories and pursue their implementations. Though satellite formation flying is widely considered to be a major advance in space technology, there are few systematic treatments of the topic in the literature. Addressing that gap, the book offers a valuable resource for academics, researchers, postgraduate students and practitioners in the field of satellite science and engineering.
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based on 0 review(s)
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000000136239
電子館藏
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EB TL796 W246 2017
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1 records • Pages 1 •
1
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http://dx.doi.org/10.1007/978-981-10-2383-5
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