Fractional-Order Degn–Harrison Reaction–Diffusion Model: Finite-Time Dynamics of Stability and Synchronization

Author:

Hammad Ma’mon Abu1,Bendib Issam2,Alshanti Waseem Ghazi3,Alshanty Ahmad4,Ouannas Adel5,Hioual Amel5ORCID,Momani Shaher67

Affiliation:

1. Department of Mathematics, Al-Zaytoonah University of Jordan, Amman 11733, Jordan

2. Applied Mathematics & Modeling Laboratory, Department of Mathematics, Faculty of Exact Sciences, University of Brothers Mentouri, Constantine 25000, Algeria

3. Department of Mathematics, Al Zaytoonah University of Jordan, Amman 11733, Jordan

4. Cyber Security Department, Al Zaytoonah University of Jordan, Amman 11733, Jordan

5. Department of Mathematics and Computer Science, University of Oum EL-Bouaghi, Oum El Bouaghi 04000, Algeria

6. Nonlinear Dynamics Research Center (NDRC), Ajman University, Ajman 346, United Arab Emirates

7. Department of Mathematics, The University of Jordan, Amman 11942, Jordan

Abstract

This study aims to address the topic of finite-time synchronization within a specific subset of fractional-order Degn–Harrison reaction–diffusion systems. To achieve this goal, we begin with the introduction of a novel lemma specific for finite-time stability analysis. Diverging from existing criteria, this lemma represents a significant extension of prior findings, laying the groundwork for subsequent investigations. Building upon this foundation, we proceed to develop efficient dependent linear controllers designed to orchestrate finite-time synchronization. Leveraging the power of a Lyapunov function, we derive new, robust conditions that ensure the attainment of synchronization within a predefined time frame. This innovative approach not only enhances our understanding of finite-time synchronization, but also offers practical solutions for its realization in complex systems. To validate the efficacy and applicability of our proposed methodology, extensive numerical simulations are conducted. Through this comprehensive analysis, we aim to contribute valuable insights to the field of fractional-order reaction–diffusion systems while paving the way for practical implementations in real-world applications.

Publisher

MDPI AG

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. On discrete FitzHugh–Nagumo reaction–diffusion model: Stability and simulations;Partial Differential Equations in Applied Mathematics;2024-09

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