Title :
Stability and Stabilization of Two Time Scale Switched Systems in Discrete Time
Author :
Malloci, Ivan ; Daafouz, Jamal ; Iung, Claude
Author_Institution :
Centre de Rech. en Autom. de Nancy, Nancy Univ., Vandoeuvre-lès-Nancy, France
fDate :
6/1/2010 12:00:00 AM
Abstract :
In this technical note, stability and stabilization of two time scale switched linear systems in the singular perturbation form are addressed in discrete time. We show that, under an arbitrary switching rule, stability of the slow and fast switched subsystems is not sufficient to assess stability of the original two time scale switched system, even if the singular perturbation parameter tends to zero. Therefore, we propose LMI based conditions that guarantee the asymptotic stability of the two time scale switched system using switched quadratic Lyapunov functions. These conditions express the fact that the coupling between fast and slow subsystems has to be taken into account in addition to stability properties of the two subsystems, when the switching rule is arbitrary. The presented conditions are extended to state feedback control design. A numerical example illustrates the features of the proposed approach.
Keywords :
Lyapunov matrix equations; asymptotic stability; discrete time systems; linear matrix inequalities; linear systems; singularly perturbed systems; state feedback; LMI; asymptotic stability; discrete time system; fast switched subsystem; linear matrix inequalities; singular perturbation parameter; slow switched subsystem; state feedback control; switched quadratic Lyapunov function; two time scale switched linear system; Aerodynamics; Asymptotic stability; Control design; Electrical capacitance tomography; Linear matrix inequalities; Linear systems; Lyapunov method; Perturbation methods; Power system dynamics; Power system stability; State feedback; Switched systems; Linear Matrix Inequalities (LMI); Lyapunov stability; singular perturbation; switched systems;
Journal_Title :
Automatic Control, IEEE Transactions on
DOI :
10.1109/TAC.2010.2044277