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Robust h-inf filter design of uncertain descriptor systems with discrete and distributed delays

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conference contribution
posted on 2017-12-06, 00:00 authored by Dong Yue, Qing-Long Han
The robust H-inf filtering problem for a class of continuous-time uncertain linear descriptor systems with time-varying discrete and distributed delays is investigated. The time delays are assumed to be constant and known. The uncertainties under consideration are norm-bounded, and possible time-varying, uncertainties. Sufficient condition for the existence of an H-inf filter is expressed in terms of strict linear matrix inequalities (LMIs). Instead of using decomposition technique, a unified form of LMIs is proposed to show the exponential stability of the augmented systems. The condition for assuring the stability of the “fast” subsystem is implied from the unified form of LMIs, which is shown to be less conservative than the characteristic equation based conditions or matrix norm-based conditions. The suitable filter is derived through a convex optimization problem. A numerical example is given to show the effectiveness of the method.

Funding

Category 1 - Australian Competitive Grants (this includes ARC, NHMRC)

History

Start Page

610

End Page

615

Number of Pages

6

Start Date

2003-01-01

Finish Date

2003-01-01

ISBN-10

078037925X

Location

Maui, Hawaii, USA

Publisher

Institute of Electrical and Electronics Engineers Inc.

Place of Publication

Piscataway, NJ, USA

Peer Reviewed

  • Yes

Open Access

  • No

External Author Affiliations

Faculty of Informatics and Communication;

Era Eligible

  • No

Name of Conference

IEEE Conference on Decision & Control