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Journal ArticleDOI

On the Liapunov-Krasovskii functionals for stability analysis of linear delay systems

TLDR
In this article, the authors focus on mixed delay-independent/delay-dependent asymptotic stability problems of a class of linear systems described by delay-differential equations involving several constant but unknown delays and give sufficient conditions for characterizing unbounded stability regions in the delays parameter space.
Abstract
This paper focuses on 'mixed' delay-independent/delay-dependent asymptotic stability problems of a class of linear systems described by delay-differential equations involving several constant but unknown delays. We give some sufficient conditions for characterizing unbounded stability regions in the delays parameter space. The proposed approach makes use of some appropriate Liapunov-Krasovskii functionals, and the results obtained are expressed in terms of matrix inequalities. We also discuss several ways to construct such analytic functionals. These results allow us to recover (or to improve) as limit cases previous delay-independent or/and delay-dependent conditions from the control literature.

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Citations
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Book

Stability of Time-Delay Systems

TL;DR: Preface, Notations 1.Introduction to Time-Delay Systems I.Robust Stability Analysis II.Input-output stability A.LMI and Quadratic Integral Inequalities Bibliography Index
Journal ArticleDOI

Time-delay systems: an overview of some recent advances and open problems

TL;DR: Some open problems are discussed: the constructive use of the delayed inputs, the digital implementation of distributed delays, the control via the delay, and the handling of information related to the delay value.
Proceedings ArticleDOI

An integral inequality in the stability problem of time-delay systems

TL;DR: In this paper, an integral inequality is derived, and applied to the stability problem of time-delay systems using discretized Lyapunov functional formulation, and a simpler stability criterion is derived.
Journal ArticleDOI

New Lyapunov–Krasovskii functionals for stability of linear retarded and neutral type systems ☆

TL;DR: A new (descriptor) model transformation and a corresponding Lyapunov–Krasovskii functional are introduced for stability analysis of systems with delays and conditions are given in terms of linear matrix inequalities.
Journal ArticleDOI

An improved stabilization method for linear time-delay systems

TL;DR: A delay-dependent criterion for determining the stability of systems with time-varying delays is obtained and this criterion is used to derive an efficient stabilizing state-feedback design method for systems with parameter uncertainty, of either the polytopic or the norm-bounded types.