Dynamic output feedback stabilization of switched linear systems with delay via a trajectory based approach

Limited Access
This item is unavailable until:
2020-07-01

Date

2018

Editor(s)

Advisor

Supervisor

Co-Advisor

Co-Supervisor

Instructor

Source Title

Automatica

Print ISSN

0005-1098

Electronic ISSN

Publisher

Elsevier

Volume

93

Issue

Pages

92 - 97

Language

English

Journal Title

Journal ISSN

Volume Title

Series

Abstract

A new technique is proposed to construct observers and to achieve output feedback stabilization of a class of continuous-time switched linear systems with a time-varying delay in the output. The delay is a piecewise continuous bounded function of time and no constraint is imposed on the delay derivative. For stability analysis, an extension of a recent trajectory based approach is used; this is fundamentally different from classical Lyapunov function based methods. A stability condition is given in terms of the upper bound on the time-varying delay to ensure global uniform exponential stability of the switched feedback system. The main result applies in cases where some of the subsystems of the switched system are not stabilizable and not detectable.

Course

Other identifiers

Book Title

Citation