Dynamics of a controlled discrete prey-predator model with Holling type-II functional response

This article investigates the complex dynamic behavior of a discrete predator-prey model with Holling type II functional response. Firstly, we discuss the local stability of the system at the equilibrium points. Secondly, we use the central manifold theorem and bifurcation theory to prove that two...

Full description

Saved in:
Bibliographic Details
Main Authors: Yanlin Min, Xiaoling Han, Ceyu Lei
Format: Article
Language:English
Published: Western Libraries 2024-09-01
Series:Mathematics in Applied Sciences and Engineering
Subjects:
Online Access:https://ojs.lib.uwo.ca/index.php/mase/article/view/18643
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1841560692018118656
author Yanlin Min
Xiaoling Han
Ceyu Lei
author_facet Yanlin Min
Xiaoling Han
Ceyu Lei
author_sort Yanlin Min
collection DOAJ
description This article investigates the complex dynamic behavior of a discrete predator-prey model with Holling type II functional response. Firstly, we discuss the local stability of the system at the equilibrium points. Secondly, we use the central manifold theorem and bifurcation theory to prove that two different types of bifurcations in the system, namely flip bifurcation and Hopf bifurcation. Through numerical simulation, we validate the impact of human control parameters of predators and the degree of predator utilization on system dynamics. The results indicate that studying the predator-prey relationship between species in plateau pastoral areas can help humans better predict the population changes of prey and predator, and have great significance for the protection of ecosystems.
format Article
id doaj-art-3c1eb364e9fc413e9cf56c3649c768b0
institution Kabale University
issn 2563-1926
language English
publishDate 2024-09-01
publisher Western Libraries
record_format Article
series Mathematics in Applied Sciences and Engineering
spelling doaj-art-3c1eb364e9fc413e9cf56c3649c768b02025-01-03T18:35:35ZengWestern LibrariesMathematics in Applied Sciences and Engineering2563-19262024-09-015410.5206/mase/18643Dynamics of a controlled discrete prey-predator model with Holling type-II functional responseYanlin MinXiaoling HanCeyu Lei This article investigates the complex dynamic behavior of a discrete predator-prey model with Holling type II functional response. Firstly, we discuss the local stability of the system at the equilibrium points. Secondly, we use the central manifold theorem and bifurcation theory to prove that two different types of bifurcations in the system, namely flip bifurcation and Hopf bifurcation. Through numerical simulation, we validate the impact of human control parameters of predators and the degree of predator utilization on system dynamics. The results indicate that studying the predator-prey relationship between species in plateau pastoral areas can help humans better predict the population changes of prey and predator, and have great significance for the protection of ecosystems. https://ojs.lib.uwo.ca/index.php/mase/article/view/18643Discrete model; flip bifurcation; Hopf bifurcation; bifurcation theory; chaos.
spellingShingle Yanlin Min
Xiaoling Han
Ceyu Lei
Dynamics of a controlled discrete prey-predator model with Holling type-II functional response
Mathematics in Applied Sciences and Engineering
Discrete model; flip bifurcation; Hopf bifurcation; bifurcation theory; chaos.
title Dynamics of a controlled discrete prey-predator model with Holling type-II functional response
title_full Dynamics of a controlled discrete prey-predator model with Holling type-II functional response
title_fullStr Dynamics of a controlled discrete prey-predator model with Holling type-II functional response
title_full_unstemmed Dynamics of a controlled discrete prey-predator model with Holling type-II functional response
title_short Dynamics of a controlled discrete prey-predator model with Holling type-II functional response
title_sort dynamics of a controlled discrete prey predator model with holling type ii functional response
topic Discrete model; flip bifurcation; Hopf bifurcation; bifurcation theory; chaos.
url https://ojs.lib.uwo.ca/index.php/mase/article/view/18643
work_keys_str_mv AT yanlinmin dynamicsofacontrolleddiscretepreypredatormodelwithhollingtypeiifunctionalresponse
AT xiaolinghan dynamicsofacontrolleddiscretepreypredatormodelwithhollingtypeiifunctionalresponse
AT ceyulei dynamicsofacontrolleddiscretepreypredatormodelwithhollingtypeiifunctionalresponse