Abstrakt
The aim of this paper is to establish the stability results based on the approach of Linear Matrix Inequality (LMI) for the addressed mathematical model using Caputo–Fabrizio operator (CF operator). Firstly, we extend some existing results of Caputo fractional derivative in the literature to a new fractional order operator without using singular kernel which was introduced by Caputo and Fabrizio. Secondly, we have created a mathematical model to increase Cytoplasmic Incompatibility (CI) in Aedes Aegypti mosquitoes by releasing Wolbachia infected mosquitoes. By this, we can suppress the population density of A.Aegypti mosquitoes and can control most common mosquito-borne diseases such as Dengue, Zika fever, Chikungunya, Yellow fever and so on. Our main aim in this paper is to examine the behaviours of Caputo–Fabrizio operator over the logistic growth equation of a population system then, prove the existence and uniqueness of the solution for the considered mathematical model using CF operator. Also, we check the α-exponential stability results for the system via linear matrix inequality technique. Finally a numerical example is provided to check the behaviour of the CF operator on the population system by incorporating the real world data available in the known literature.
| Język oryginału | angielski |
|---|---|
| Strony (od–do) | 462-485 |
| Liczba stron | 24 |
| Czasopismo | Mathematics and Computers in Simulation |
| Tom | 201 |
| Identyfikatory DOI | |
| Status publikacji | Opublikowano - lis 2022 |
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Obszary tematyczne ASJC Scopus
- Informatyka teoretyczna
- Informatyka ogólna
- Analiza numeryczna
- Modelowanie i symulacja
- Matematyka stosowana
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