9789811569890-9811569894-Guidance, Navigation, and Control for Spacecraft Rendezvous and Docking: Theory and Methods

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

ISBN-13: 9789811569890
ISBN-10: 9811569894
Edition: 1st ed. 2021
Author: Tao Liu, Yongchun Xie, Changqing Chen, Min Wang
Publication date: 2021
Publisher: Springer
Format: Hardcover 507 pages
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Book details

ISBN-13: 9789811569890
ISBN-10: 9811569894
Edition: 1st ed. 2021
Author: Tao Liu, Yongchun Xie, Changqing Chen, Min Wang
Publication date: 2021
Publisher: Springer
Format: Hardcover 507 pages

Summary

Guidance, Navigation, and Control for Spacecraft Rendezvous and Docking: Theory and Methods (ISBN-13: 9789811569890 and ISBN-10: 9811569894), written by authors Tao Liu, Yongchun Xie, Changqing Chen, Min Wang, was published by Springer in 2021. With an overall rating of 3.9 stars, it's a notable title among other Aerospace (Automotive, Engineering, Mechanical, Aeronautics & Astronautics, Astronomy & Space Science) books. You can easily purchase or rent Guidance, Navigation, and Control for Spacecraft Rendezvous and Docking: Theory and Methods (Hardcover) from BooksRun, along with many other new and used Aerospace books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.3.

Description

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. 

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