Local and Global Dynamics of a Ratio-Dependent Holling–Tanner Predator–Prey Model with Strong Allee Effect

Weiping Lou, Pei Yu, Jia-Fang Zhang, Claudio Arancibia-Ibarra
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Abstract

In this paper, the impact of the strong Allee effect and ratio-dependent Holling–Tanner functional response on the dynamical behaviors of a predator–prey system is investigated. First, the positivity and boundedness of solutions of the system are proved. Then, stability and bifurcation analysis on equilibria is provided, with explicit conditions obtained for Hopf bifurcation. Moreover, global dynamics of the system is discussed. In particular, the degenerate singular point at the origin is proved to be globally asymptotically stable under various conditions. Further, a detailed bifurcation analysis is presented to show that the system undergoes a codimension-[Formula: see text] Hopf bifurcation and a codimension-[Formula: see text] cusp Bogdanov–Takens bifurcation. Simulations are given to illustrate the theoretical predictions. The results obtained in this paper indicate that the strong Allee effect and proportional dependence coefficient have significant impact on the fundamental change of predator–prey dynamics and the species persistence.
具有强阿利效应的依赖比率的霍林-坦纳捕食者-猎物模型的局部和全局动态变化
本文研究了强阿利效应和依赖比率的霍林-坦纳函数反应对捕食者-猎物系统动力学行为的影响。首先,证明了系统解的实在性和有界性。然后,提供了平衡点的稳定性和分岔分析,并获得了霍普夫分岔的明确条件。此外,还讨论了系统的全局动力学。特别是,在各种条件下,原点处的退化奇异点被证明是全局渐近稳定的。此外,详细的分岔分析表明,该系统经历了一个标度-[公式:见正文] Hopf 分岔和一个标度-[公式:见正文] 尖顶 Bogdanov-Takens 分岔。本文给出了模拟结果,以说明理论预测。本文得出的结果表明,强阿利效应和比例依赖系数对捕食者-猎物动力学的基本变化和物种持久性有重要影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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