DocumentCode
828565
Title
Composite control for singularly perturbed bilinear systems via successive Galerkin approximation
Author
Kim, Y.-J. ; Kim, B.-S. ; Lim, M.-T.
Volume
150
Issue
5
fYear
2003
Abstract
The authors present algorithms for the finite-time and infinite-time closed-loop composite control of singularly perturbed bilinear systems with respect to performance criteria, using the successive Galerkin approximation (SGA) method. The singularly perturbed bilinear system is decomposed into two subsystems of a slow-time scale and a fast-time scale via singular perturbation theory, and two optimal control laws are obtained for each subsystem by using the SGA method. Then the composite control law that consists of two optimal control laws for each subsystem is designed. The authors aim to design closed-loop composite control laws for the singularly perturbed bilinear systems via the SGA method. They also aim to reduce the computational complexity when the SGA method is applied to high-order systems
Keywords
Galerkin method <singularly perturbed bilinear systs. via successive Galerkin approx., composite control>; bilinear systems <singularly perturbed bilinear systs. via successive Galerkin approx., composite control>; closed loop systems <singularly perturbed bilinear systs. via successive Galerkin approx., composite control>; control system synthesis <singularly perturbed bilinear systs. via successive Galerkin approx., composite control>; optimal control <singularly perturbed bilinear systs. via successive Galerkin approx., composite control>; singularly perturbed systems <bilinear systs. via successive Galerkin approx., composite control>; composite control; computational complexity; fast-time scale subsystem; finite-time closed-loop composite control; high-order systems; infinite-time closed-loop composite control; optimal control laws; performance criteria; singular perturbation theory; singularly perturbed bilinear systems; slow-time scale subsystem; successive Galerkin approximation;
fLanguage
English
Journal_Title
Control Theory and Applications, IEE Proceedings -
Publisher
iet
ISSN
1350-2379
Type
jour
DOI
10.1049/ip-cta:20030814
Filename
1245610
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