Asymptotic stability analysis of a fractional epidemic model for Ebola virus disease in Caputo sense
Keywords:
Mathematical model, Fractional order, Caputo derivative operator, Ebola virus disease, Lyapunov stabilityAbstract
In this work, a non-integer-order epidemic system modelling the nonlinear dynamics of Ebola virus disease is formulated in the sense of Caputo-ractional derivative. The existence and uniqueness of solution of the model is established. More importantly, the theoretical analysis carried out is aimed at establishing the local and global asymptotic stability properties of the disease-free steady state of the epidemic model using the fractional Routh-Hurwitz criterion and Lyapunov functional technique, respectively. It is proved that the steady state is locally and globally asymptotically stable at the value of the key epidemiological threshold quantity lower than unity. The result is numerically validated for different values of fractional order to show the asymptotic behavior of the disease dynamics. This result is significant for fighting and preventing Ebola epidemic in the population, since the Caputo derivative operator allows for effective description of the disease dynamics with memory, where the future evolution of the disease is governed by its prior history.
Published
How to Cite
Issue
Section
Copyright (c) 2024 Samson Olaniyi, Fuhara M. Chuma, Sulaimon F. Abimbade

This work is licensed under a Creative Commons Attribution 4.0 International License.
How to Cite
Similar Articles
- R. Latha, K. Lakshminarayanachari, C. Bhaskar, An analytical model for point source pollutants in an urban area with mesoscale wind and wet deposition , Journal of the Nigerian Society of Physical Sciences: Volume 6, Issue 4, November 2024
- Kazeem adebowale Dawodu, Extension of ADMMAlgorithmin Solving Optimal Control Model Governed by Partial Differential Equation , Journal of the Nigerian Society of Physical Sciences: Volume 3, Issue 2, May 2021
- J. O. Kuboye, O. R. Elusakin, O. F. Quadri, Numerical Algorithms for Direct Solution of Fourth Order Ordinary Differential Equations , Journal of the Nigerian Society of Physical Sciences: Volume 2, Issue 4, November 2020
- Abiodun Oluwatosin Adeoye, Rukayat Oluwatobiloba Quadri, Olayide Samuel Lawal, Sustainable remediation of vancomycin polluted water using pyrolysis biochar of pressed oil palm fruit fibre , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 2, May 2025
- Nahid Salma, Majid Khan Majahar Ali, Raja Aqib Shamim, Machine learning-based feature selection for ultra-high-dimensional survival data: a computational approach , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 3, August 2025
- George Muddu, Shefiu Olusegun Ganiyu, Adekunle Olugbenga Ejidokun, Yusuf Abass Aleshinloye, Integrated data-driven credit default prediction in Uganda using machine learning models , Journal of the Nigerian Society of Physical Sciences: Volume 8, Issue 1, February 2026
- Amos Orenyi Bajeh, Mary Olayinka Olaoye, Fatima Enehezei Usman-Hamza, Ikeola Suhurat Olatinwo, Peter ogirima Sadiku, Abdulkadir Bolakale Sakariyah, An adaptive neuro-fuzzy inference system for multinomial malware classification , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 1, February 2025
- S. E. Fadugba, S. N. Ogunyebi, B. O. Falodun, An Examination of a Second Order Numerical Method for Solving Initial Value Problems , Journal of the Nigerian Society of Physical Sciences: Volume 2, Issue 3, August 2020
- Vanita R. Raikar, Lakshminarayanachari K, K. Bharathi, C. Bhaskar , Mathematical advection-diffusion model of primary and secondary pollutants emitted from the point source with mesoscale wind and removal mechanisms , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 2, May 2025
- Idris Babaji Muhammad, Salisu Usaini, Dynamics of Toxoplasmosis Disease in Cats population with vaccination , Journal of the Nigerian Society of Physical Sciences: Volume 3, Issue 1, February 2021
You may also start an advanced similarity search for this article.

