A Fuzzy Fractional Order Approach to SIDARTHE Epidemic Model for COVID-19

In this paper, a novel coronavirus SIDARTHE epidemic model system is constructed using a Caputo-type fuzzy fractional differential equation. Applying Caputo derivatives to our model is motivated by the need to more thoroughly examine the dynamics of the model. Here, the fuzzy concept is applied to t...

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Main Authors: P. Chellamani, K. Julietraja, Ammar Alsinai, Hanan Ahmed
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Complexity
Online Access:http://dx.doi.org/10.1155/2022/5468696
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author P. Chellamani
K. Julietraja
Ammar Alsinai
Hanan Ahmed
author_facet P. Chellamani
K. Julietraja
Ammar Alsinai
Hanan Ahmed
author_sort P. Chellamani
collection DOAJ
description In this paper, a novel coronavirus SIDARTHE epidemic model system is constructed using a Caputo-type fuzzy fractional differential equation. Applying Caputo derivatives to our model is motivated by the need to more thoroughly examine the dynamics of the model. Here, the fuzzy concept is applied to the SIDARTHE epidemic model for finding the transmission of the coronavirus in an easier way. The existence of a unique solution is examined using fixed point theory for the given fractional SIDARTHE epidemic model. The dynamic behaviour of COVID-19 is understood by applying the numerical results along with a combination of fuzzy Laplace and Adomian decomposition transform. Hence, an efficient method to solve a fuzzy fractional differential equation using Laplace transforms and their inverses using the Caputo sense derivative is developed, which can make the problem easier to solve numerically. Numerical calculations are performed by considering different parameter values.
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issn 1099-0526
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spelling doaj-art-8eee54eea3dc45de9a754805040d3e702025-08-20T02:09:21ZengWileyComplexity1099-05262022-01-01202210.1155/2022/5468696A Fuzzy Fractional Order Approach to SIDARTHE Epidemic Model for COVID-19P. Chellamani0K. Julietraja1Ammar Alsinai2Hanan Ahmed3Department of MathematicsDepartment of MathematicsDepartment of MathematicsDepartment of MathematicsIn this paper, a novel coronavirus SIDARTHE epidemic model system is constructed using a Caputo-type fuzzy fractional differential equation. Applying Caputo derivatives to our model is motivated by the need to more thoroughly examine the dynamics of the model. Here, the fuzzy concept is applied to the SIDARTHE epidemic model for finding the transmission of the coronavirus in an easier way. The existence of a unique solution is examined using fixed point theory for the given fractional SIDARTHE epidemic model. The dynamic behaviour of COVID-19 is understood by applying the numerical results along with a combination of fuzzy Laplace and Adomian decomposition transform. Hence, an efficient method to solve a fuzzy fractional differential equation using Laplace transforms and their inverses using the Caputo sense derivative is developed, which can make the problem easier to solve numerically. Numerical calculations are performed by considering different parameter values.http://dx.doi.org/10.1155/2022/5468696
spellingShingle P. Chellamani
K. Julietraja
Ammar Alsinai
Hanan Ahmed
A Fuzzy Fractional Order Approach to SIDARTHE Epidemic Model for COVID-19
Complexity
title A Fuzzy Fractional Order Approach to SIDARTHE Epidemic Model for COVID-19
title_full A Fuzzy Fractional Order Approach to SIDARTHE Epidemic Model for COVID-19
title_fullStr A Fuzzy Fractional Order Approach to SIDARTHE Epidemic Model for COVID-19
title_full_unstemmed A Fuzzy Fractional Order Approach to SIDARTHE Epidemic Model for COVID-19
title_short A Fuzzy Fractional Order Approach to SIDARTHE Epidemic Model for COVID-19
title_sort fuzzy fractional order approach to sidarthe epidemic model for covid 19
url http://dx.doi.org/10.1155/2022/5468696
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