DocumentCode
1640866
Title
Spacecraft Adaptive Robust Attitude Tracking Control with New Actuator
Author
Jun, Liu ; Chao, Han
Author_Institution
Beijing Univ. of Aeronaut. & Astronaut., Beijing
fYear
2007
Firstpage
664
Lastpage
669
Abstract
This paper deals with the attitude tracking of spacecraft with single-gimbal Variable-Speed Control Moment Gyro-scopes(VSCMGs) as actuator. The quaternion is used to describe the attitude, the attitude error is expressed by rotation matrix from desired attitude to current one. Considering actuator model parameter uncertainties and external disturbances, the spacecraft equations of motion are fully nonlinear and can be represented as a Multi-Input-Multi-Output(MIMO) system. The adaptive robust controller is derived based on Lyapunov theorem, a smooth projection algorithm is then applied to keep the parameter estimates from singularity. Simulation results show that the proposed law attenuates the attitude error obviously, successfully deals with external disturbances and unknown misalignment of the axis directions of the actuators due to installation error or wearing out of the mechanical parts.
Keywords
MIMO systems; adaptive control; aircraft control; attitude control; gyroscopes; matrix algebra; robust control; velocity control; Lyapunov theorem; adaptive robust controller; attitude error; external disturbances; mechanical parts; multiinput-multioutput system; projection algorithm; rotation matrix; single-gimbal variable-speed control moment gyroscopes; spacecraft adaptive robust attitude tracking control; Actuators; Adaptive control; Adaptive systems; Attitude control; Nonlinear equations; Programmable control; Quaternions; Robust control; Space vehicles; Uncertain systems; Adaptive Control; Attitude Tracking; Nonlinear System; Robust Control; VSCMG;
fLanguage
English
Publisher
ieee
Conference_Titel
Control Conference, 2007. CCC 2007. Chinese
Conference_Location
Hunan
Print_ISBN
978-7-81124-055-9
Electronic_ISBN
978-7-900719-22-5
Type
conf
DOI
10.1109/CHICC.2006.4346905
Filename
4346905
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