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Stability of linear neutral systems with linear fractional norm-bounded uncertainty

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conference contribution
posted on 2017-12-06, 00:00 authored by Qing-Long Han
This paper is concerned with the stability problem of uncertain linear neutral systems using a discretized Lyapunov functional approach. The uncertainty under consideration is linear fractional norm-bounded uncertainty which includes the routine norm-bounded uncertainty as a special case. A delay-dependent stability criterion is derived and is formulated in the form of linear matrix inequalities (LMIs). The criterion can be used to check the stability of linear neutral systems with both small and non-small delays. For nominal systems, the analytical results can be approached with fine discretization. For uncertainty systems with small delay, numerical examples show significant improvement over approaches in the literature. For uncertainty systems with non-small delay, the effect of the uncertainty on the maximum time-delay interval for asymptotic stability is also studied.

History

Parent Title

Proceedings of the 2005 American Control Conference (ACC)

Start Page

2827

End Page

2832

Number of Pages

6

Start Date

2005-06-08

Finish Date

2005-06-10

ISSN

0743-1619

ISBN-10

0780390989

Location

Portland, Oregon, USA

Publisher

IEEE

Place of Publication

Piscataway, NJ, USA

Additional Rights

Reproduced with permission. "This material is presented to ensure timely dissemination of scholarly and technical work. Copyright and all rights therein are retained by authors or by other copyright holders. All persons copying this information are expected to adhere to the terms and constraints invoked by each author's copyright. In most cases, these works may not be reposted without the explicit permission of the copyright holder."

Peer Reviewed

  • Yes

Open Access

  • Yes

External Author Affiliations

Faculty of Informatics and Communication;

Era Eligible

  • Yes

Name of Conference

American Control Conference

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