数学物理学报 ›› 2026, Vol. 46 ›› Issue (6): 2387-2396.

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一类具有 Allee 效应和恐惧效应的单种群动力学模型的随机分岔研究

王胜丹, 余兴旺*(), 刘甜甜, 魏一帆   

  1. 郑州航空工业管理学院 郑州 450000
  • 收稿日期:2025-06-10 修回日期:2025-10-11 出版日期:2026-12-26 发布日期:2026-08-14
  • 通讯作者: 余兴旺 E-mail:xwyu2006@zua.edu.cn
  • 基金资助:
    国家自然科学基金(12171441)

Study on Stochastic Bifurcation of a Single-Species Dynamics Model with Allee Effect and Fear Effect

Shengdan Wang, Xingwang Yu*(), Tiantian Liu, Yifan Wei   

  1. Zhengzhou University of Aeronautics, Zhengzhou 450000
  • Received:2025-06-10 Revised:2025-10-11 Online:2026-12-26 Published:2026-08-14
  • Contact: Xingwang Yu E-mail:xwyu2006@zua.edu.cn
  • Supported by:
    NSFC(12171441)

摘要:

该文研究了一类兼具 Allee 效应和恐惧效应的随机单种群动力学模型, 重点分析了其在环境噪声作用下的分岔行为与种群存续机制. 基于随机动力系统理论, 定义了关键参数 $\sigma$, 并证明其作为种群灭绝与持续生存的临界阈值: 当 $\sigma\leq0$ 时, 种群必然灭绝; 当 $\sigma>0$ 时, 系统存在唯一的非平凡平稳分布, 且具有显式密度函数, 表明种群可持续生存. 进一步研究表明, 参数 $\sigma$ 同时主导系统的 D-分岔与 P-分岔行为: 噪声强度的变化会诱导平稳分布密度函数发生三次显著形态转变, 即出现三次 P-分岔现象. 生态上来说, 高水平噪声会增加种群灭绝的风险, 而适中噪声有助于维持生态平衡. 本研究揭示了噪声与生态效应对种群动力学的联合调控作用, 为理解随机环境中种群的存续机制提供了理论依据.

关键词: Allee 效应, 恐惧效应, 灭绝性与持久性, D-分岔, P-分岔

Abstract:

This paper proposes a stochastic single-species model with Allee effect and fear effect. Based on the theory of stochastic dynamical systems, the survivability of the model is analyzed, and it is found that the survival characteristics are determined by a critical parameter $\sigma$. Specifically, when $\sigma \leq 0$, the population goes extinct; when $\sigma > 0$, the system admits a unique non-trivial stationary distribution with an explicit density function, indicating the persistence of the population. Moreover, the parameter $\sigma$ governs both the D-bifurcation and P-bifurcation of the system. In particular, variations in the noise intensity can induce three significant changes in the shape of the density function, leading to triple P-bifurcations. Ecologically, high levels of noise increase the risk of population extinction, while moderate noise levels contribute to maintaining ecological balance. This study reveals the combined regulatory effects of noise and ecological effects on population dynamics, providing a theoretical basis for understanding the persistence mechanisms of populations in stochastic environments.

Key words: Allee effect, fear effect, extinction and persistence, D-bifurcation, P-bifurcation

中图分类号: 

  • O175