Global stability of fractional partial differential equations applied to the biological system modeling a viral infection with Hattaf time-fractional derivative

Author:

,Assadiki F.,Hattaf K., ,Yousfi N.,

Abstract

In this article, we study the global stability of fractional partial differential equations applied to the biological system modeling a viral infection. The reaction in the proposed biological system is described by the new generalized Hattaf fractional (GHF) derivative. However, the diffusion is modeled by the Laplacian operator.

Publisher

Lviv Polytechnic National University

Reference39 articles.

1. Xu R., Ma Z. E. An HBV model with diffusion and time delay. Journal of Theoretical Biology. 257 (3), 499-509 (2009).

2. Some special cases;Z.;SIAM Journal on Applied Dynamical Systems,2019

3. Mohd M H. Numerical Bifurcation and Stability Analyses of Partial Differential Equations with Applications to Competitive System in Ecology. Dynamical Systems, Bifurcation Analysis and Applications. 117-132 (2019).

4. spatial interactions and population dynamics;Holmes;Ecology,1994

5. Thabet H., Kendre S. A fractional mathematical model with nonlinear partial differential equations for transmission dynamics of severe acute respiratory syndrome coronavirus 2 infection. Healthcare Analytics. 4, 100209 (2023).

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