Stability and Bifurcation Analysis of a Three-Species Food Chain Model with Delay

Author:

Pal Nikhil1,Samanta Sudip2,Biswas Santanu3,Alquran Marwan45,Al-Khaled Kamel5,Chattopadhyay Joydev3

Affiliation:

1. Department of Mathematics, Visva-Bharati University, Santiniketan 731235, India

2. Department of Biomathematics and Game Theory, University of Warsaw, ul. Banacha 2, 02-097 Warszawa, Poland

3. Agricultural and Ecological Research Unit, Indian Statistical Institute, 203 B. T. Road, Kolkata 700108, India

4. Department of Mathematics and Statistics, Sultan Qaboos University, P. O. Box 36, Al-Khod 123, Sultanate of Oman

5. Department of Mathematics, Jordan University of Science and Technology, IRBID 22110, Jordan

Abstract

In the present paper, we study the effect of gestation delay on a tri-trophic food chain model with Holling type-II functional response. The essential mathematical features of the proposed model are analyzed with the help of equilibrium analysis, stability analysis, and bifurcation theory. Considering time-delay as the bifurcation parameter, the Hopf-bifurcation analysis is carried out around the coexisting equilibrium. The direction of Hopf-bifurcation and the stability of the bifurcating periodic solutions are determined by applying the normal form theory and center manifold theorem. We observe that if the magnitude of the delay is increased, the system loses stability and shows limit cycle oscillations through Hopf-bifurcation. The system also shows the chaotic dynamics via period-doubling bifurcation for further enhancement of time-delay. Our analytical findings are illustrated through numerical simulations.

Publisher

World Scientific Pub Co Pte Lt

Subject

Applied Mathematics,Modeling and Simulation,Engineering (miscellaneous)

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