Synchronization of nonidentical chaotic neural networks with leakage delay and mixed time-varying delays

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Abstract

In this paper, an integral sliding mode control approach is presented to investigate synchronization of nonidentical chaotic neural networks with discrete and distributed time-varying delays as well as leakage delay. By considering a proper sliding surface and constructing Lyapunov-Krasovskii functional, as well as employing a combination of the free-weighting matrix method, Newton-Leibniz formulation and inequality technique, a sliding mode controller is designed to achieve the asymptotical synchronization of the addressed nonidentical neural networks. Moreover, a sliding mode control law is also synthesized to guarantee the reachability of the specified sliding surface. The provided conditions are expressed in terms of linear matrix inequalities, and are dependent on the discrete and distributed time delays as well as leakage delay. A simulation example is given to verify the theoretical results. © 2011 Song and Cao; licensee Springer.

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Song, Q., & Cao, J. (2011). Synchronization of nonidentical chaotic neural networks with leakage delay and mixed time-varying delays. Advances in Difference Equations, 2011. https://doi.org/10.1186/1687-1847-2011-16

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