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Oscillatory and Complex Behaviour of Caputo-Fabrizio Fractional Order Hiv-1 Infection Model

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Date

2022

Journal Title

Journal ISSN

Volume Title

Publisher

Amer inst Mathematical Sciences-aims

Open Access Color

GOLD

Green Open Access

Yes

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Abstract

HIV-1 infection is a dangerous diseases like Cancer, AIDS, etc. Many mathematical models have been introduced in the literature, which are investigated with different approaches. In this article, we generalize the HIV-1 model through nonsingular fractional operator. The non-integer mathematical model of HIV-1 infection under the Caputo-Fabrizio derivative is presented in this paper. The concept of Picard-Lindelof and fixed-point theory are used to address the existence of a unique solution to the HIV-1 model under the suggested operator. Also, the stability of the suggested model is proved through the Picard iteration and fixed point theory approach. The model's approximate solution is constructed through three steps Adams-Bashforth numerical method. Numerical simulations are provided for different values of fractional-order to study the complex dynamics of the model. Lastly, we provide the oscillatory and chaotic behavior of the proposed model for various fractional orders.

Description

Ahmad, Shabir/0000-0002-5610-6248; Saifullah, Sayed/0000-0002-0050-209X; Ullah, Aman/0000-0003-4021-3599

Keywords

Picard Iteration, Fixed Point Theory, Caputo-Fabrizio Derivative, Chaotic Behavior, Caputo-Fabrizio derivative, fixed point theory, Picard iteration, QA1-939, chaotic behavior, picard iteration, Mathematics, caputo-fabrizio derivative

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Fields of Science

0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology, 0101 mathematics, 01 natural sciences

Citation

Ahmad, Shabir;...et.al. (2022). "Oscillatory and complex behaviour of caputo-fabrizio fractional order hiv-1 infection model", AIMS Mathematics, Vol.7, No.3, pp.4778-4792.

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Q1

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OpenCitations Citation Count
38

Source

AIMS Mathematics

Volume

7

Issue

3

Start Page

4778

End Page

4792
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Scopus : 47

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Mendeley Readers : 4

SCOPUS™ Citations

47

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Web of Science™ Citations

45

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2

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