Effect of the electromagnetic induction on a modified memristive neural map model

The significance of discrete neural models lies in their mathematical simplicity and computational ease. This research focuses on enhancing a neural map model by incorporating a hyperbolic tangent-based memristor. The study extensively explores the impact of magnetic induction strength on the model&...

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Published in:Mathematical biosciences and engineering : MBE Vol. 20; no. 10; pp. 17849 - 17865
Main Authors: Alexander, Prasina, Parastesh, Fatemeh, Ismael Hamarash, Ibrahim, Karthikeyan, Anitha, Jafari, Sajad, He, Shaobo
Format: Journal Article
Language:English
Published: AIMS Press 01-01-2023
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Summary:The significance of discrete neural models lies in their mathematical simplicity and computational ease. This research focuses on enhancing a neural map model by incorporating a hyperbolic tangent-based memristor. The study extensively explores the impact of magnetic induction strength on the model's dynamics, analyzing bifurcation diagrams and the presence of multistability. Moreover, the investigation extends to the collective behavior of coupled memristive neural maps with electrical, chemical, and magnetic connections. The synchronization of these coupled memristive maps is examined, revealing that chemical coupling exhibits a broader synchronization area. Additionally, diverse chimera states and cluster synchronized states are identified and discussed.
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ISSN:1551-0018
1551-0018
DOI:10.3934/mbe.2023793