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Titlebook: Dynamical Behaviors of Fractional-Order Complex Dynamical Networks; Jin-Liang Wang Book 2024 The Editor(s) (if applicable) and The Author(

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ronization, etc.) for fractional-order complex networks (FOCNs) have attracted considerable research attention in a wide range of fields, and a variety of valuable results have been reported. In particular, passivity has been extensively used to address the synchronization of FOCNs. .978-981-97-2952-4978-981-97-2950-0
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Passivity and Finite-Time Passivity for Multi-Weighted Fractional-Order Complex Networks with Fixedn to the dynamical behaviors (such as passivity [., .], synchronization [.,.,.,.,.] and stability [.]) for CDNs, which is not only useful to have a better understanding of many natural phenomena but also beneficial to better take advantage of these dynamical behaviors.
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https://doi.org/10.1007/978-3-642-72986-7rion for a delayed FONN by leveraging the Razumikhin fractional-order theorem, and derived a sufficient condition to guarantee the passivity for such network on the basis of the presented stability criterion.
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Finite-Time Passivity for Coupled Fractional-Order Neural Networks with Multistate or Multiderivatirion for a delayed FONN by leveraging the Razumikhin fractional-order theorem, and derived a sufficient condition to guarantee the passivity for such network on the basis of the presented stability criterion.
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