Dynamic Behaviors of a Discrete Lotka-Volterra Competition System with Infinite Delays and Single Feedback Control

Author:

Zhao Liang1,Xie Xiangdong2,Yang Liya1,Chen Fengde1ORCID

Affiliation:

1. College of Mathematics and Computer Science, Fuzhou University, Fuzhou, Fujian 350116, China

2. Department of Mathematics, Ningde Normal University, Fujian 352100, China

Abstract

A nonautonomous discrete two-species Lotka-Volterra competition system with infinite delays and single feedback control is considered in this paper. By applying the discrete comparison theorem, a set of sufficient conditions which guarantee the permanence of the system is obtained. Also, by constructing some suitable discrete Lyapunov functionals, some sufficient conditions for the global attractivity and extinction of the system are obtained. It is shown that if the the discrete Lotka-Volterra competitive system with infinite delays and without feedback control is permanent, then, by choosing some suitable feedback control variable, the permanent species will be driven to extinction. That is, the feedback control variable, which represents the biological control or some harvesting procedure, is the unstable factor of the system. Such a finding overturns the previous scholars’ recognition on feedback control variables.

Funder

Natural Science Foundation of Fujian Province

Publisher

Hindawi Limited

Subject

Applied Mathematics,Analysis

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1. Permanence and Global Attractivity of a Non-autonomous Single Species System with Michaelis-Menten-Type Feedback Control;WSEAS TRANSACTIONS ON SYSTEMS;2023-05-22

2. A New Formulation of the Single Species Feedback Control System;2023 International Conference on Control, Artificial Intelligence, Robotics & Optimization (ICCAIRO);2023-04

3. Dynamics of a Discrete Allelopathic Phytoplankton Model with Infinite Delays and Feedback Controls;Discrete Dynamics in Nature and Society;2020-01-13

4. Global Attractivity and Extinction of a Discrete Competitive System with Infinite Delays and Single Feedback Control;Discrete Dynamics in Nature and Society;2018-06-25

5. Almost Periodic Solution of a Discrete Commensalism System;Discrete Dynamics in Nature and Society;2015

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