An efficient algorithm for finding the D-stability bound of discrete singularly perturbed systems with multiple time delays

Citation
Fh. Hsiao et al., An efficient algorithm for finding the D-stability bound of discrete singularly perturbed systems with multiple time delays, INT J CONTR, 72(1), 1999, pp. 1-17
Citations number
37
Categorie Soggetti
AI Robotics and Automatic Control
Journal title
INTERNATIONAL JOURNAL OF CONTROL
ISSN journal
00207179 → ACNP
Volume
72
Issue
1
Year of publication
1999
Pages
1 - 17
Database
ISI
SICI code
0020-7179(19990110)72:1<1:AEAFFT>2.0.ZU;2-5
Abstract
In this paper, we present an original work on the D-stabilization problem o f discrete singularly perturbed systems with multiple time delays. A new ro bust D-stability criterion in terms of stability radius is first derived to guarantee that all poles of the discrete multiple time-delay systems remai n inside the specific disk D(alpha, r) in the presence of parametric uncert ainties. Then, by using the technique of time-scale separation, we derive t he corresponding slow and fast subsystems of a discrete multiple time-delay singularly perturbed system. The state feedback controls for the D-stabili zation of the slow and the fast subsystems are separately designed and a co mposite state feedback control for the original system is subsequently synt hesized from these state feedback controls. Thereafter, we derive a frequen cy domain epsilon-dependent D-stability criterion for the original discrete multiple time-delay singularly perturbed system under the composite state feedback control. If any one of the conditions of this criterion is fulfill ed, D-stability of the original closed-loop system is thus investigated by establishing that of its corresponding slow and fast closed-loop subsystems . Finally, an efficient algorithm is proposed to obtain a less conservative D-stability bound of the singular perturbation parameter and to reduce the computation time.