DocumentCode :
2841974
Title :
Nonlinear proportional-derivative-type controller for flexible spacecraft attitude stabilization under bounded disturbances
Author :
Hu, Qinglei ; Friswell, Michael I. ; Wagg, David J. ; Neild, Simon
Author_Institution :
Dept. of Aerosp. Eng., Univ. of Bristol, Bristol, UK
fYear :
2009
fDate :
17-19 June 2009
Firstpage :
247
Lastpage :
252
Abstract :
A semi-globally input-to-state stable (ISS) control law is derived for flexible spacecraft attitude maneuvers in the presence of parameter uncertainties and external disturbances. The modified Rodrigues parameters (MRP) are used as the kinematic variables since they are nonsingular for all possible rotations. This novel simple control is a proportional-plus-derivative (PD) type controller plus a sign function through a special Lyapunov function construction involving the sum of quadratic terms in the angular velocities, kinematic parameters, modal variables and the cross state weighting. A sufficient condition under which this nonlinear PD-type control law can render the system semi-globally input-to-state stable is provided such that the closed-loop system is robust with respect to any disturbance within a quantifiable restriction on the amplitude, as well as the set of initial conditions, if the control gains are designed appropriately. In addition to detailed derivations of the new controllers design and the associated stability and attitude convergence proofs, simulation studies have been conducted to validate the design and the results are presented to highlight the ensuring closed-loop performance benefits when compared with the conventional control schemes.
Keywords :
Lyapunov methods; PD control; attitude control; closed loop systems; control system synthesis; nonlinear control systems; space vehicles; stability; Lyapunov function; associated stability; attitude convergence proofs; bounded disturbances; closed-loop system; controllers design; external disturbances; flexible spacecraft attitude stabilization; kinematic variables; modified Rodrigues parameters; nonlinear PD-type control; nonlinear proportional-derivative-type controller; parameter uncertainties; proportional-plus-derivative type controller; semi-globally input-to-state stable control; Angular velocity control; Attitude control; Control systems; Kinematics; Materials requirements planning; Nonlinear control systems; PD control; Proportional control; Space vehicles; Uncertain systems; Attitude Maneuver; Flexible Spacecraft; Input-To-State Stable; Nonlinear Proportional-Derivative (PD);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control and Decision Conference, 2009. CCDC '09. Chinese
Conference_Location :
Guilin
Print_ISBN :
978-1-4244-2722-2
Electronic_ISBN :
978-1-4244-2723-9
Type :
conf
DOI :
10.1109/CCDC.2009.5195090
Filename :
5195090
Link To Document :
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