Mathematical Analysis of a Fractional COVID-19 Model Applied to Wuhan, Spain and Portugal
arXiv:2106.15407 · doi:10.3390/axioms10030135
Abstract
We propose a qualitative analysis of a recent fractional-order COVID-19 model. We start by showing that the model is mathematically and biologically well posed. Then, we give a proof on the global stability of the disease free equilibrium point. Finally, some numerical simulations are performed to ensure stability and convergence of the disease free equilibrium point.
This is a preprint of a paper whose final and definite form is published Open Access in 'Axioms', available in [https://doi.org/10.3390/axioms10030135]. Please cite this article as: F. Ndaïrou and D. F. M. Torres, Mathematical Analysis of a Fractional COVID-19 Model Applied to Wuhan, Spain and Portugal, Axioms 10 (2021), no. 3, Art. 135, 13 pp
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- Hybrid Method for Simulation of a Fractional COVID-19 Model with Real Case Application
- A Discrete-Time Compartmental Epidemiological Model for COVID-19 with a Case Study for Portugal
- Optimal Control to Limit the Spread of COVID-19 in Italy
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- Fractional modelling of COVID-19 transmission incorporating asymptomatic and super-spreader individuals