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Research Article | Open Access

Chaotic dynamics in Sprott's memristive artificial neural network: dynamic analysis, circuit implementation and synchronization

M. I. Kopp1I. Samuilik2,3( )
Institute for Single Crystals, NAS of Ukraine, Nauky Ave. 60, Kharkiv 61072, Ukraine
Institute of Life Sciences and Technologies, Daugavpils University, 13 Vienibas Street, LV-5401 Daugavpils, Latvia
Institute of Applied Mathematics, Riga Technical University, LV-1048 Riga, Latvia
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Abstract

The paper presents a new artificial neural network (ANN) obtained by embedding a memristor into the self-connection synapse of one neuron from the Sprott ANN. The mathematical model of the new network is described by a five-dimensional (5D) dynamic system. A comprehensive analysis of its dynamic properties is carried out, including bifurcation diagrams, Lyapunov exponents, Kaplan–Yorke dimension, timing diagrams and phase portraits, multistability, and offset boosting control. The theoretical model is further verified by electronic simulation of a chaotic system using Multisim software. A synchronization model of two coupled memristive subneural Sprott networks is proposed to simulate synchronization between regions of biological neural systems. Linearization methods and Lyapunov stability theory are employed to prove synchronization. These results provide useful insights into the nonlinear dynamic characteristics of the new Sprott ANN.

CLC number: 34A34, 37D45, 37G35, 37H15, 68T01

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AIMS Mathematics
Pages 19240-19266

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Cite this article:
Kopp MI, Samuilik I. Chaotic dynamics in Sprott's memristive artificial neural network: dynamic analysis, circuit implementation and synchronization. AIMS Mathematics, 2025, 10(8): 19240-19266. https://doi.org/10.3934/math.2025860

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Received: 31 March 2025
Revised: 15 July 2025
Accepted: 21 July 2025
Published: 15 August 2025
©2025 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0)