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Global synchronization of fractional‐order and integer‐order N component reaction diffusion systems: Application to biochemical models

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This study considers the problem of control and synchronization between fractional‐order and integer‐order, N‐components reaction‐diffusion systems with nonidentical coefficients and different nonlinear parts. The control scheme is designed using the… Click to show full abstract

This study considers the problem of control and synchronization between fractional‐order and integer‐order, N‐components reaction‐diffusion systems with nonidentical coefficients and different nonlinear parts. The control scheme is designed using the Lyapunov direct method. The results are exemplified by two significant biochemical models, namely, the fractional‐order Lengyel‐Epstein model and the Gray‐Scott model. To illustrate the effectiveness of the proposed scheme, numerical simulations are performed in one and two space dimensions using Homotopy Analysis Method (HAM).

Keywords: integer order; order; fractional order; reaction diffusion; order integer; synchronization fractional

Journal Title: Mathematical Methods in the Applied Sciences
Year Published: 2020

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