Title :
Design of microsatellite attitude control with multiplicative perturbation of controller
Author :
Keke Shi ; Zhaowei Sun ; Chuang Liu ; Feng Wang
Author_Institution :
Res. Center of Satellite Technol., Harbin Inst. of Technol., Harbin, China
Abstract :
Due to the space missions´ limited budget, microsatellite would be an economical choice, so there has been a great decrease in size and weight. Micro satellite is vulnerable to space environmental disturbances and perturbation of controller. As to the multiplicative perturbation in attitude controller, this paper investigates a robust H∞ controller design with model uncertainties and subject to external disturbances and controller´s multiplicative perturbations. By using linear matrix inequality (LMI) method, the numerical solution of state feedback controller in terms of multiplicative perturbation can be efficiently solved. The performance differences between the non-fragile control and the mixed H2/H∞ control without considering controller´s multiplicative perturbation are discussed in detail. The attitude control design taking controller perturbation into account shows excellent effectiveness with respect to simulation results.
Keywords :
H∞ control; H2 control; artificial satellites; attitude control; control system synthesis; linear matrix inequalities; perturbation techniques; robust control; state feedback; LMI method; controllers multiplicative perturbations; linear matrix inequality; microsatellite attitude control design; mixed H2/H∞ control; model uncertainties; nonfragile control; robust H∞ controller design; state feedback controller; Aerospace electronics; Angular velocity; Attitude control; Robustness; Satellites; State feedback; Uncertainty; H∞ control; LMI; Microsatellite attitude control; Multiplicative perturbation;
Conference_Titel :
Control and Decision Conference (CCDC), 2015 27th Chinese
Conference_Location :
Qingdao
Print_ISBN :
978-1-4799-7016-2
DOI :
10.1109/CCDC.2015.7161742