TY - GEN
T1 - Application of robust fault-tolerant control in satellite attitude control system
AU - Guan, Yu
AU - Zhang, Yingchun
AU - Chen, Xueqin
PY - 2010
Y1 - 2010
N2 - This paper did research on fault-tolerant control of satellite control system. Based on general discussion over all available fault-tolerant control methods, we chose linear matrix inequation (LMI) to do research on robust fault-tolerant control. The result could apply to the control problem of three-axis stabilized directional satellite control system. Also, we use our result on fault diagnosis of different types of faults on sensor and execution system to prove the efficiency of our method. The research mainly consists. Apply above method on the controller design of satellite position control system. We designed controller separately for the fault condition of execution system and sensitive device, and did mathematical simulation over the algorithm. We compared our method with the traditional PID control method. The results shows that when the execution system and sensitive device under fault condition, robust fault-tolerant control makes pointing precision and stability precision of satellite position control meet the requirements before fault condition occurs.
AB - This paper did research on fault-tolerant control of satellite control system. Based on general discussion over all available fault-tolerant control methods, we chose linear matrix inequation (LMI) to do research on robust fault-tolerant control. The result could apply to the control problem of three-axis stabilized directional satellite control system. Also, we use our result on fault diagnosis of different types of faults on sensor and execution system to prove the efficiency of our method. The research mainly consists. Apply above method on the controller design of satellite position control system. We designed controller separately for the fault condition of execution system and sensitive device, and did mathematical simulation over the algorithm. We compared our method with the traditional PID control method. The results shows that when the execution system and sensitive device under fault condition, robust fault-tolerant control makes pointing precision and stability precision of satellite position control meet the requirements before fault condition occurs.
UR - https://www.scopus.com/pages/publications/79952127121
U2 - 10.1109/ISSCAA.2010.5633025
DO - 10.1109/ISSCAA.2010.5633025
M3 - 会议稿件
AN - SCOPUS:79952127121
SN - 9781424460441
T3 - ISSCAA2010 - 3rd International Symposium on Systems and Control in Aeronautics and Astronautics
SP - 23
EP - 28
BT - ISSCAA2010 - 3rd International Symposium on Systems and Control in Aeronautics and Astronautics
T2 - 3rd International Symposium on Systems and Control in Aeronautics and Astronautics, ISSCAA2010
Y2 - 8 June 2010 through 10 June 2010
ER -