Title :
Linear feedback spacecraft stabilization using the method of invariant ellipsoids
Author :
Gonzalez-Garcia, S. ; Polyakov, A. ; Poznyak, A.
Author_Institution :
Dept. of Autom. Control, CINVESTAV, Mexico City
Abstract :
This paper addresses the robust attitude control for an uncertain flexible spacecraft with disturbances bounded by ellipsoids. An observed-state feedback is designed using the so-called invariant ellipsoid method, which is based on the local invariant set theorem. The minimum invariant ellipsoid can be considered as the influence of the uncertainties and disturbances in the controlled system. All these considerations were expressed through LMI technique as an optimization problem with linear objective and LMI constraints. The numerical solution of this problem gives the parameters for the linear controller and the Luenberger observer that guarantee a quasi-minimal invariant ellipsoid for the controlled spacecraft.
Keywords :
feedback; linear matrix inequalities; observers; optimisation; set theory; space vehicles; stability; uncertain systems; LMI; Luenberger observer; invariant ellipsoids; invariant set theorem; linear feedback spacecraft stabilization; optimization; robust attitude control; uncertain flexible spacecraft; Automatic control; Constraint optimization; Control system synthesis; Control systems; Ellipsoids; Feedback control; Linear systems; Robust control; Space vehicles; Uncertainty; LMIs; flexible spacecraft; robust control; state estimation; uncertain systems;
Conference_Titel :
System Theory, 2009. SSST 2009. 41st Southeastern Symposium on
Conference_Location :
Tullahoma, TN
Print_ISBN :
978-1-4244-3324-7
Electronic_ISBN :
0094-2898
DOI :
10.1109/SSST.2009.4806834