Spacecraft Dynamics and Control

Yongjun Lei, Jianxin Guo, Bin Meng, et al.

PDF
ca. 117,69

Springer Singapore img Link Publisher

Naturwissenschaften, Medizin, Informatik, Technik / Maschinenbau, Fertigungstechnik

Beschreibung

This book presents up-to-date concepts and design methods relating to space dynamics and control, including spacecraft attitude control, orbit control, and guidance, navigation, and control (GNC), summarizing the research advances in control theory and methods and engineering practice from Beijing Institute of Control Engineering over the years. The control schemes and systems based on these achievements have been successfully applied to remote sensing satellites, communication satellites, navigation satellites, new technology test satellites, Shenzhou manned spacecraft, Tianzhou freight spacecraft, Tiangong 1/2 space laboratories, Chang'e lunar explorers, and many other missions. Further, the research serves as a guide for follow-up engineering developments in manned lunar engineering, deep space exploration, and on-orbit service missions. 

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Schlagwörter

Thruster Based Attitude Control, Imaging Drift Angle Determination, Spacecraft Attitude Determination, High Accuracy Attitude Calibration of Ground Afterwards, Spacecraft Autonomous Navigation, Guidance, and Control, Absolute Autonomous Navigation, State Estimation Attitude Determination, Liquid-filled Spacecraft Control, Space Attitude Control, Angular Momentum Management Based Attitude Control, Attitude Sensors Error Modelling, Angular Momentum Management Manipulation Strategy, Soft Landing of Extraterrestrial Objects Guidance and Control, Attitude Sensors Relative Error Calibration, Reentry Guidance and Control, Relative Autonomous Navigation, Interstellar Flight Guidance and Control, Geometric Attitude Determination, Multi-body Spacecraft Attitude Control, Rendezvous and Docking Guidance and Control