Dynamical Behaviour and Chaotic Phenomena of HIV Infection through Fractional Calculus

The infection of human immunodeficiency virus (HIV) is a serious and potentially incurable infection. There is no cure for HIV and is a public health issue around the world. That is why, it is valuable to investigate the intricate phenomena of HIV infection and provide some control interventions to...

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Main Authors: Rashid Jan, Amin Khan, Salah Boulaaras, Sulima Ahmed Zubair
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Discrete Dynamics in Nature and Society
Online Access:http://dx.doi.org/10.1155/2022/5937420
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author Rashid Jan
Amin Khan
Salah Boulaaras
Sulima Ahmed Zubair
author_facet Rashid Jan
Amin Khan
Salah Boulaaras
Sulima Ahmed Zubair
author_sort Rashid Jan
collection DOAJ
description The infection of human immunodeficiency virus (HIV) is a serious and potentially incurable infection. There is no cure for HIV and is a public health issue around the world. That is why, it is valuable to investigate the intricate phenomena of HIV infection and provide some control interventions to lessen its economic burden. In this research work, the dynamics of HIV via fractional calculus to conceptualize the intricate phenomena of this viral infection has been formulated and conceptualized. We have shown the rudimentary concept of fractional calculus in Atangana–Baleanu framework. A novel numerical technique is presented for the chaotic and dynamic behaviour of the proposed model. The oscillatory and chaotic phenomena of the system have been shown with the fluctuation of different input factors of the system. Furthermore, we have shown the affect of fractional order on the proposed system of HIV infection. Most critical input parameters are highlighted through numerical simulations and suggested control intervention to the policy makers. Finally, we have shown the stability result and the convergence condition for the proposed numerical scheme.
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institution Kabale University
issn 1607-887X
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publishDate 2022-01-01
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series Discrete Dynamics in Nature and Society
spelling doaj-art-23e1f03daaac4161a169111ddcb8d7192025-02-03T01:22:58ZengWileyDiscrete Dynamics in Nature and Society1607-887X2022-01-01202210.1155/2022/5937420Dynamical Behaviour and Chaotic Phenomena of HIV Infection through Fractional CalculusRashid Jan0Amin Khan1Salah Boulaaras2Sulima Ahmed Zubair3Department of MathematicsDepartment of MathematicsDepartment of MathematicsDepartment of MathematicsThe infection of human immunodeficiency virus (HIV) is a serious and potentially incurable infection. There is no cure for HIV and is a public health issue around the world. That is why, it is valuable to investigate the intricate phenomena of HIV infection and provide some control interventions to lessen its economic burden. In this research work, the dynamics of HIV via fractional calculus to conceptualize the intricate phenomena of this viral infection has been formulated and conceptualized. We have shown the rudimentary concept of fractional calculus in Atangana–Baleanu framework. A novel numerical technique is presented for the chaotic and dynamic behaviour of the proposed model. The oscillatory and chaotic phenomena of the system have been shown with the fluctuation of different input factors of the system. Furthermore, we have shown the affect of fractional order on the proposed system of HIV infection. Most critical input parameters are highlighted through numerical simulations and suggested control intervention to the policy makers. Finally, we have shown the stability result and the convergence condition for the proposed numerical scheme.http://dx.doi.org/10.1155/2022/5937420
spellingShingle Rashid Jan
Amin Khan
Salah Boulaaras
Sulima Ahmed Zubair
Dynamical Behaviour and Chaotic Phenomena of HIV Infection through Fractional Calculus
Discrete Dynamics in Nature and Society
title Dynamical Behaviour and Chaotic Phenomena of HIV Infection through Fractional Calculus
title_full Dynamical Behaviour and Chaotic Phenomena of HIV Infection through Fractional Calculus
title_fullStr Dynamical Behaviour and Chaotic Phenomena of HIV Infection through Fractional Calculus
title_full_unstemmed Dynamical Behaviour and Chaotic Phenomena of HIV Infection through Fractional Calculus
title_short Dynamical Behaviour and Chaotic Phenomena of HIV Infection through Fractional Calculus
title_sort dynamical behaviour and chaotic phenomena of hiv infection through fractional calculus
url http://dx.doi.org/10.1155/2022/5937420
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AT aminkhan dynamicalbehaviourandchaoticphenomenaofhivinfectionthroughfractionalcalculus
AT salahboulaaras dynamicalbehaviourandchaoticphenomenaofhivinfectionthroughfractionalcalculus
AT sulimaahmedzubair dynamicalbehaviourandchaoticphenomenaofhivinfectionthroughfractionalcalculus