DocumentCode :
2886807
Title :
Multi-Objective Output-Feedback Control for Satellite Formation Keeping: An LMI Approach
Author :
Wu, Bao-lin ; He, Dong-lei ; Cao, Xi-bin
Author_Institution :
Res. Center of Satellite Technol., Harbin Inst. of Technol.
fYear :
2006
fDate :
13-16 Aug. 2006
Firstpage :
528
Lastpage :
533
Abstract :
Robust output-feedback controller against various perturbations is proposed for satellite formation keeping. The mixed H2/Hinfin controller with regional pole placement constraints is designed based on linear Hill´s equations. The mixed H2/Hinfin controller takes into account both the disturbance rejection aspects and the LQG aspects. In addition, the closed-loop poles can be forced into some sector of the stable half-plane to obtain well-damped transient responses. The problem is reduced to a convex optimization involving linear matrix inequalities (LMIs), so it can be solved efficiently. Extensive simulation studies were conducted for the validation of the proposed robust controller using Matlabtrade. The simulation results demonstrate that the developed multi-objective control system is robust stable and optimal in the sense of H2 norm, and has good steady-state and dynamic performances against various disturbances for the satellite formation system
Keywords :
Hinfin control; aerospace control; artificial satellites; closed loop systems; control system synthesis; convex programming; feedback; linear matrix inequalities; linear quadratic Gaussian control; robust control; transient response; LMI approach; LQG aspects; closed-loop poles; convex optimization; disturbance rejection aspects; linear Hill equations; linear matrix inequalities; mixed H2-Hinfin controller; robust multiobjective output-feedback controller; satellite formation keeping; well-damped transient responses; Attenuation measurement; Control system synthesis; Cybernetics; Equations; Extraterrestrial measurements; Hydrogen; Linear matrix inequalities; Machine learning; Mathematical model; Military satellites; Robust control; Satellites; State feedback; Formation keeping; LMIs; Mixed H2/H¿ controller; Multi-objective control; Satellite formation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Machine Learning and Cybernetics, 2006 International Conference on
Conference_Location :
Dalian, China
Print_ISBN :
1-4244-0061-9
Type :
conf
DOI :
10.1109/ICMLC.2006.258329
Filename :
4028121
Link To Document :
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