2022 Stability Regions and Bifurcation Analysis of a Delayed Predator-Prey Model Caused from Gestation Period
Nikenasih Binatari, Fajar Adi-Kusumo, Lina Aryati
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Int. J. Differ. Equ. 2022: 1-10 (2022). DOI: 10.1155/2022/3711158

Abstract

We consider a saturated predator-prey system with delayed time. The system is motivated by natural disease management using the interactions between the original and the treated species populations, such as Aedes aegypti and Wolbachia mosquitoes, fertile and infertile pests as a pesticide’s effect, uninfected and infected cancer cells by an oncolytic virus, and so forth. The delayed time shows the gestation effect of the treated populations where the impact on the stability of the unique positive equilibrium point of the system will be studied. We obtain the exact formula of the equilibrium point where it is asymptotically stable for the nondelay case. The stability region of the nonzero solution is given in parameter space following the Pontryagin criteria. Furthermore, some conditions, such that for delay case this solution is conditionally stable, are also provided in this study.

Acknowledgments

The first author would like to thank to LPDP Indonesia for the scholarship of the Doctoral Program. This research was funded by the Directorate for the Higher Education, Ministry of Research, Technology, and Higher Education of Indonesia, through the Research Grant Penelitian Dasar Doctoral (PDD), Universitas Gadjah Mada 2021, no. 2262/UN1/DITLIT/DIT-LIT/PT/2021.

Citation

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Nikenasih Binatari. Fajar Adi-Kusumo. Lina Aryati. "Stability Regions and Bifurcation Analysis of a Delayed Predator-Prey Model Caused from Gestation Period." Int. J. Differ. Equ. 2022 1 - 10, 2022. https://doi.org/10.1155/2022/3711158

Information

Received: 26 January 2022; Accepted: 21 February 2022; Published: 2022
First available in Project Euclid: 28 July 2022

MathSciNet: MR4413785
zbMATH: 1507.34092
Digital Object Identifier: 10.1155/2022/3711158

Rights: Copyright © 2022 Hindawi

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