Title :
Variable Structure Control for Singularly Perturbed Linear Continuous Systems With Matched Disturbances
Author :
Thang Nguyen ; Wu-Chung Su ; Gajic, Z.
Author_Institution :
Dept. of Electr. & Electron. Eng., Univ. of Melbourne, Melbourne, VIC, Australia
fDate :
3/1/2012 12:00:00 AM
Abstract :
A variable structure system can be studied using the singular perturbation theory. The discontinuous control that leads to a finite-time reaching of the sliding surface creates fast-time transients analogous to the stable boundary layer dynamics of a singularly perturbed system. As the sliding mode is attained, the slow-time dynamics prevails, just as that of a singularly perturbed system after the boundary layer dynamics fades away. In this technical note, the problem of sliding mode control for singularly perturbed systems in the presence of matched bounded external disturbances is investigated. A composite sliding surface is constructed from solutions of algebraic Lyapunov equations which are derived from both the fast and the slow subsystems. The resultant sliding motion ensures Lyapunov stability with disturbance rejection. Two proposed schemes that ensure the asymptotic stability of the system are presented. The effectiveness of the proposed methods is demonstrated in a numerical example of a magnetic tape control system.
Keywords :
Lyapunov methods; asymptotic stability; continuous systems; linear systems; singularly perturbed systems; variable structure systems; Lyapunov stability; algebraic Lyapunov equation; asymptotic stability; composite sliding surface; discontinuous control; magnetic tape control system; matched disturbance; resultant sliding motion; singular perturbation theory; singularly perturbed linear continuous system; sliding mode control; stable boundary layer dynamics; variable structure control; variable structure system; Asymptotic stability; Control design; Educational institutions; Equations; Lyapunov methods; Periodic structures; Lyapunov functions; singularly perturbed systems; sliding mode; variable structure control;
Journal_Title :
Automatic Control, IEEE Transactions on
DOI :
10.1109/TAC.2011.2173775