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Hierarchical Passivity Criterion for Delayed Neural Networks via A General Delay-Product-Type Lyapunov–Krasovskii Functional

Fei Long, Chuan‐Ke Zhang, Yong He, Qing‐Guo Wang, Zhenman Gao, Min Wu

2021IEEE Transactions on Neural Networks and Learning Systems23 citationsDOI

Abstract

This article is concerned with passivity analysis of neural networks with a time-varying delay. Several techniques in the domain are improved to establish the new passivity criterion with less conservatism. First, a Lyapunov-Krasovskii functional (LKF) is constructed with two general delay-product-type terms which contain any chosen degree of polynomials in time-varying delay. Second, a general convexity lemma without conservatism is developed to address the positive-definiteness of the LKF and the negative-definiteness of its time-derivative. Then, with these improved results, a hierarchical passivity criterion of less conservatism is obtained for neural networks with a time-varying delay, whose size and conservatism vary with the maximal degree of the time-varying delay polynomial in the LKF. It is shown that the conservatism of the passivity criterion does not always reduce as the degree of the time-varying delay polynomial increases. Finally, a numerical example is given to illustrate the proposed criterion and benchmark against the existing results.

Topics & Concepts

PassivityLemma (botany)ConvexityMathematicsCircle criterionDegree (music)Control theory (sociology)ConservatismPositive definitenessProduct (mathematics)Convex combinationPolynomialPositive-definite matrixRegular polygonComputer scienceConvex optimizationControl (management)Nonlinear systemMathematical analysisExponential stabilityEconomicsEngineeringArtificial intelligencePoliticsBiologyFinancial economicsAcousticsEigenvalues and eigenvectorsGeometryPoaceaePhysicsQuantum mechanicsEcologyElectrical engineeringPolitical scienceLawNeural Networks Stability and SynchronizationAdvanced Memory and Neural ComputingNeural Networks and Applications
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