Global stability of the boundary solution of a nonautonomous predator-prey system with Beddington-DeAngelis functional response

In this paper, we consider a nonautonomous predator-prey system with Beddington-DeAngelis functional response and explore the global stability of boundary solution. Based on the dynamics of logistic equation, some new sufficient conditions on the global asymptotic stability of boundary solution are...

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Main Authors: Dingyong Bai, Jinshui Li, Wenrui Zeng
Format: Article
Language:English
Published: Taylor & Francis Group 2020-01-01
Series:Journal of Biological Dynamics
Subjects:
Online Access:http://dx.doi.org/10.1080/17513758.2020.1772999
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spelling doaj-6adcd874e8f94f17aacfed552b785d092020-11-25T03:51:26ZengTaylor & Francis GroupJournal of Biological Dynamics1751-37581751-37662020-01-0114142143710.1080/17513758.2020.17729991772999Global stability of the boundary solution of a nonautonomous predator-prey system with Beddington-DeAngelis functional responseDingyong Bai0Jinshui Li1Wenrui Zeng2Guangzhou UniversityGuangzhou UniversityGuangzhou UniversityIn this paper, we consider a nonautonomous predator-prey system with Beddington-DeAngelis functional response and explore the global stability of boundary solution. Based on the dynamics of logistic equation, some new sufficient conditions on the global asymptotic stability of boundary solution are presented for general time-dependence case. Our main results indicate that (i) the long-term ineffective predation behaviour or high mortality of predator species will lead the predator species to extinction, even if the intraspecies competition of predator species is weak or no intraspecies competition; (ii) the long-term intense intraspecific competition may lead the predator species to extinction, even though the long-term accumulative predation benefit is higher than the death lose. When all parameters are periodic functions with common period, a necessary and sufficient condition on the global stability of boundary periodic solution is obtained. In addition, some numerical simulations are performed to illustrate the theoretical results.http://dx.doi.org/10.1080/17513758.2020.1772999nonautonomous systemextinctionboundary solutionglobal asymptotic stability
collection DOAJ
language English
format Article
sources DOAJ
author Dingyong Bai
Jinshui Li
Wenrui Zeng
spellingShingle Dingyong Bai
Jinshui Li
Wenrui Zeng
Global stability of the boundary solution of a nonautonomous predator-prey system with Beddington-DeAngelis functional response
Journal of Biological Dynamics
nonautonomous system
extinction
boundary solution
global asymptotic stability
author_facet Dingyong Bai
Jinshui Li
Wenrui Zeng
author_sort Dingyong Bai
title Global stability of the boundary solution of a nonautonomous predator-prey system with Beddington-DeAngelis functional response
title_short Global stability of the boundary solution of a nonautonomous predator-prey system with Beddington-DeAngelis functional response
title_full Global stability of the boundary solution of a nonautonomous predator-prey system with Beddington-DeAngelis functional response
title_fullStr Global stability of the boundary solution of a nonautonomous predator-prey system with Beddington-DeAngelis functional response
title_full_unstemmed Global stability of the boundary solution of a nonautonomous predator-prey system with Beddington-DeAngelis functional response
title_sort global stability of the boundary solution of a nonautonomous predator-prey system with beddington-deangelis functional response
publisher Taylor & Francis Group
series Journal of Biological Dynamics
issn 1751-3758
1751-3766
publishDate 2020-01-01
description In this paper, we consider a nonautonomous predator-prey system with Beddington-DeAngelis functional response and explore the global stability of boundary solution. Based on the dynamics of logistic equation, some new sufficient conditions on the global asymptotic stability of boundary solution are presented for general time-dependence case. Our main results indicate that (i) the long-term ineffective predation behaviour or high mortality of predator species will lead the predator species to extinction, even if the intraspecies competition of predator species is weak or no intraspecies competition; (ii) the long-term intense intraspecific competition may lead the predator species to extinction, even though the long-term accumulative predation benefit is higher than the death lose. When all parameters are periodic functions with common period, a necessary and sufficient condition on the global stability of boundary periodic solution is obtained. In addition, some numerical simulations are performed to illustrate the theoretical results.
topic nonautonomous system
extinction
boundary solution
global asymptotic stability
url http://dx.doi.org/10.1080/17513758.2020.1772999
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