DocumentCode :
1662509
Title :
Velocity-free fault tolerant control allocation for flexible spacecraft with redundant thrusters
Author :
Qinglei Hu ; Danwei Wang ; Eng Kee Poh
Author_Institution :
Sch. of Electr. & Electron. Eng., Technol. Univ., Singapore, Singapore
fYear :
2012
Firstpage :
765
Lastpage :
770
Abstract :
This paper proposes a novel velocity-free nonlinear proportional-integral (PI) control allocation scheme for fault tolerant attitude control of flexible spacecraft under thruster redundancy. More specifically, the nonlinear PI controller for attitude stabilization without using body angular velocity measurements is firstly designed as virtual control of a control allocator to produce the three axis moments, and can guarantee uniform ultimately boundedness of the closed-loop system in the presence of external disturbances and possible stuck faults. The associated stability proof is constructive and accomplished by the development of a passivity filter formulations together with the choice of a Lyapunov function containing cross/mixed terms involving the various states. Then, a robust least squares based control allocation is employed to deal with the problem of distributing the three axis moments over the available thrusters under redundancy, in which the focus of this control allocation is to find the optimal control vector of actuator by minimizing the worst-case residual, under the condition of thruster faults and control constraints like saturation.
Keywords :
Lyapunov methods; PI control; attitude control; closed loop systems; fault tolerance; least mean squares methods; nonlinear control systems; optimal control; space vehicles; stability; Lyapunov function; PI; associated stability proof; attitude stabilization; axis moments; body angular velocity measurements; closed-loop system; control allocator; control constraints; fault tolerant attitude control; flexible spacecraft; nonlinear PI controller; optimal control vector; passivity filter formulations; redundant thrusters; robust least squares based control allocation; velocity-free fault tolerant control allocation; velocity-free nonlinear proportional-integral control allocation scheme; worst-case residual; Actuators; Attitude control; Fault tolerance; Resource management; Robustness; Space vehicles; Uncertainty; control allocation; fault tolerant control; flexible spacecraft; redundant thrusters; velocity free;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Automation Robotics & Vision (ICARCV), 2012 12th International Conference on
Conference_Location :
Guangzhou
Print_ISBN :
978-1-4673-1871-6
Electronic_ISBN :
978-1-4673-1870-9
Type :
conf
DOI :
10.1109/ICARCV.2012.6485254
Filename :
6485254
Link To Document :
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