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Qualitative Analyses of Differential Systems with Time-Varying Delays via Lyapunov–Krasovskiĭ Approach

Cemil Tunç, Osman Tunç, Yuanheng Wang, Jen‐Chih Yao

2021Mathematics25 citationsDOIOpen Access PDF

Abstract

In this paper, a class of systems of linear and non-linear delay differential equations (DDEs) of first order with time-varying delay is considered. We obtain new sufficient conditions for uniform asymptotic stability of zero solution, integrability of solutions of an unperturbed system and boundedness of solutions of a perturbed system. We construct two appropriate Lyapunov–Krasovskiĭ functionals (LKFs) as the main tools in proofs. The technique of the proofs depends upon the Lyapunov–Krasovskiĭ method. For illustration, two examples are provided in particular cases. An advantage of the new LKFs used here is that they allow to eliminate using Gronwall’s inequality. When we compare our results with recent results in the literature, the established conditions are more general, less restrictive and optimal for applications.

Topics & Concepts

Mathematical proofMathematicsLyapunov functionApplied mathematicsExponential stabilityStability (learning theory)Differential (mechanical device)Differential equationClass (philosophy)Linear systemControl theory (sociology)Mathematical analysisNonlinear systemComputer scienceControl (management)PhysicsMachine learningArtificial intelligenceEngineeringAerospace engineeringGeometryQuantum mechanicsDifferential Equations and Numerical MethodsStability and Controllability of Differential EquationsNumerical methods for differential equations
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