DocumentCode :
1862398
Title :
Non-fragile observer design for nonlinear switched time delay systems using delta operator
Author :
Wang, Ronghao ; Xing, Jianchun ; Wang, Ping ; Yang, Qiliang
Author_Institution :
PLA Univ. of Sci. & Technol., Nanjing, China
fYear :
2012
fDate :
3-5 Sept. 2012
Firstpage :
387
Lastpage :
393
Abstract :
This paper considers the non-fragile observer design method for nonlinear switched time delay systems using the delta operator. Based on multiple Lyapunov function method and delta operator theory, an asymptotic stability criterion for delta operator switched system with time delay and Lipschitz nonlinearity is presented. By using the key technical lemma, a new sampling period and delay dependent design approach to the non-fragile observer is addressed. The proposed non-fragile observer can guarantee the estimated state error dynamics of delta operator time delay switched system can be asymptotically convergent for observer gain perturbations. The solution to the observer is formulated in the form of a set of linear matrix inequalities. A numerical example is employed to verify the proposed method.
Keywords :
Lyapunov methods; asymptotic stability; control system synthesis; delays; linear matrix inequalities; nonlinear control systems; observers; sampling methods; time-varying systems; LMI; Lipschitz nonlinearity; asymptotic stability criterion; delay dependent design approach; delta operator; key technical lemma; linear matrix inequalities; multiple Lyapunov function method; nonfragile observer design method; nonlinear switched time delay systems; observer gain perturbations; sampling period; state error dynamics estimation; Asymptotic stability; Delay effects; Equations; Observers; Stability analysis; Switched systems; Switches; Lipschitz nonlinear; delta operator; non-fragile observer; switched systems; time delay;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control (CONTROL), 2012 UKACC International Conference on
Conference_Location :
Cardiff
Print_ISBN :
978-1-4673-1559-3
Electronic_ISBN :
978-1-4673-1558-6
Type :
conf
DOI :
10.1109/CONTROL.2012.6334661
Filename :
6334661
Link To Document :
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