The Impact of Random Noise on the Dynamics of COVID-19 Epidemic Model

At the end of 2019, the world knew the propagation of a new pandemic named COVID-19. This disease harmed the exercises of humankind and changed our way of life. For modeling and studying infectious illness transmission, mathematical models are helpful tools. Thus, in this paper, taking into account...

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Main Authors: Amine El Koufi, Nouhaila El Koufi, Abdelkrim Bennar, Namana Seshagiri Rao
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Journal of Applied Mathematics
Online Access:http://dx.doi.org/10.1155/2022/4796273
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author Amine El Koufi
Nouhaila El Koufi
Abdelkrim Bennar
Namana Seshagiri Rao
author_facet Amine El Koufi
Nouhaila El Koufi
Abdelkrim Bennar
Namana Seshagiri Rao
author_sort Amine El Koufi
collection DOAJ
description At the end of 2019, the world knew the propagation of a new pandemic named COVID-19. This disease harmed the exercises of humankind and changed our way of life. For modeling and studying infectious illness transmission, mathematical models are helpful tools. Thus, in this paper, taking into account the effect of the intensity of the noises, we define a threshold value Πs of the model, which determines the extinction and persistence of the COVID-19 pandemic. We give numerical simulations to illustrate the analytical results.
format Article
id doaj-art-728a48a3d38f4566ae88ffa7f2aa1c25
institution Kabale University
issn 1687-0042
language English
publishDate 2022-01-01
publisher Wiley
record_format Article
series Journal of Applied Mathematics
spelling doaj-art-728a48a3d38f4566ae88ffa7f2aa1c252025-02-03T06:11:55ZengWileyJournal of Applied Mathematics1687-00422022-01-01202210.1155/2022/4796273The Impact of Random Noise on the Dynamics of COVID-19 Epidemic ModelAmine El Koufi0Nouhaila El Koufi1Abdelkrim Bennar2Namana Seshagiri Rao3Laboratory of AnalysisLaboratory of Information Technology and Modeling (LTIM)Laboratory of AnalysisDepartment of Applied MathematicsAt the end of 2019, the world knew the propagation of a new pandemic named COVID-19. This disease harmed the exercises of humankind and changed our way of life. For modeling and studying infectious illness transmission, mathematical models are helpful tools. Thus, in this paper, taking into account the effect of the intensity of the noises, we define a threshold value Πs of the model, which determines the extinction and persistence of the COVID-19 pandemic. We give numerical simulations to illustrate the analytical results.http://dx.doi.org/10.1155/2022/4796273
spellingShingle Amine El Koufi
Nouhaila El Koufi
Abdelkrim Bennar
Namana Seshagiri Rao
The Impact of Random Noise on the Dynamics of COVID-19 Epidemic Model
Journal of Applied Mathematics
title The Impact of Random Noise on the Dynamics of COVID-19 Epidemic Model
title_full The Impact of Random Noise on the Dynamics of COVID-19 Epidemic Model
title_fullStr The Impact of Random Noise on the Dynamics of COVID-19 Epidemic Model
title_full_unstemmed The Impact of Random Noise on the Dynamics of COVID-19 Epidemic Model
title_short The Impact of Random Noise on the Dynamics of COVID-19 Epidemic Model
title_sort impact of random noise on the dynamics of covid 19 epidemic model
url http://dx.doi.org/10.1155/2022/4796273
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