DocumentCode
3602230
Title
Fault-Tolerant Attitude Stabilization for Satellites Without Rate Sensor
Author
Bing Xiao ; Mingyi Huo ; Xuebo Yang ; Youmin Zhang
Author_Institution
Coll. of Eng., Bohai Univ., Jinzhou, China
Volume
62
Issue
11
fYear
2015
Firstpage
7191
Lastpage
7202
Abstract
A fault-tolerant control approach without rate sensors is presented for the attitude stabilization of a satellite being developed. External disturbances, reaction wheel faults, actuator saturation, and unavailable angular velocity are addressed. A sliding-mode observer is proposed by using attitude feedback only, and the unavailable angular velocity is estimated by this observer in finite time. Using the attitude and the estimated velocity, another sliding-mode observer is proposed to reconstruct actuator faults and disturbances. It is proven that reconstruction with zero observer error is achieved in finite time. With the reconstructed value, a velocity-free controller is then developed to asymptotically stabilize the attitude. Simulation results are also provided to verify the effectiveness of the proposed approach.
Keywords
actuators; angular velocity control; artificial satellites; attitude control; fault tolerant control; feedback; observers; stability; variable structure systems; actuator faults; actuator saturation; attitude feedback; attitude stabilization; estimated velocity; external disturbances; fault-tolerant attitude stabilization; fault-tolerant control approach; finite time; reaction wheel faults; satellites; sliding-mode observer; unavailable angular velocity; velocity-free controller; Actuators; Angular velocity; Attitude control; Observers; Satellites; Torque; Wheels; Attitude stabilization; fault reconstruction; fault tolerant control; fault-tolerant control (FTC); sliding mode observer; sliding-mode observer;
fLanguage
English
Journal_Title
Industrial Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0278-0046
Type
jour
DOI
10.1109/TIE.2015.2432107
Filename
7105920
Link To Document