A delay-dependent approach to robust stability for uncertain hybrid bidirectional associative memory neural networks with time-varying delays

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Abstract

This paper performs a global robust stability analysis of a particular class of hybrid bidirectional associative memory time-varying delayed neural network with norm-bounded timevarying parameter uncertainties. The activation functions are assumed to be globally Lipschitz continuous. Globally delay-dependent robust stability criteria are derived in the form of linear matrix inequalities by introducing relaxation matrices which, when chosen properly, produce a less conservative result. Two numerical examples are given to illustrate the significant improvement obtained in the conservativeness of the delay bound.

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Lu, C. Y., Chang, K. Y., Tsai, H. H., & Chang, W. J. (2010). A delay-dependent approach to robust stability for uncertain hybrid bidirectional associative memory neural networks with time-varying delays. Journal of Marine Science and Technology, 18(2), 164–171. https://doi.org/10.51400/2709-6998.2315

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