Stability analysis of systems with time-varying delay via relaxed integral inequalities

This paper investigates the stability of linear systems with a time-varying delay. The key problem concerned is how to effectively estimate single integral term with time-varying delay information appearing in the derivative of Lyapunov–Krasovskii functional. Two novel integral inequalities are deve...

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Published inSystems & control letters Vol. 92; pp. 52 - 61
Main Authors Zhang, Chuan-Ke, He, Yong, Jiang, L., Wu, Min, Zeng, Hong-Bing
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.06.2016
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Summary:This paper investigates the stability of linear systems with a time-varying delay. The key problem concerned is how to effectively estimate single integral term with time-varying delay information appearing in the derivative of Lyapunov–Krasovskii functional. Two novel integral inequalities are developed in this paper for this estimation task. Compared with the frequently used inequalities based on the combination of Wirtinger-based inequality (or Auxiliary function-based inequality) and reciprocally convex lemma, the proposed ones can provide smaller bounding gap without requiring any extra slack matrix. Four stability criteria are established by applying those inequalities. Based on three numerical examples, the advantages of the proposed inequalities are illustrated through the comparison of maximal admissible delay bounds provided by different criteria.
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ISSN:0167-6911
1872-7956
DOI:10.1016/j.sysconle.2016.03.002