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A Model Based Theoretical Study on Cannibalistic Prey–Predator System with Disease in Both Populations

机译:基于模型的两种种群食饵食饵-捕食者系统均具有疾病的理论研究

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In this paper, we propose a prey–predator system with disease in both the prey and predator populations.We also consider that the predator population is cannibalistic in nature and the disease spread in the predator population through cannibalism. Local stability of the system around the biologically feasible equilibria are studied.We also analyze the community structure of the system in terms of ecological and disease basic reproduction numbers. We observe that cannibalism in predator population stabilized the prey–predator oscillations. It is also observed that cannibalism can control the disease in the system. The existence of Hopf bifurcation is investigated by choosing the appropriate bifurcation parameter, and also derive the conditions for the permanence of the system. Furthermore, applying the normal form theory and central manifold theorem, the direction of Hopf bifurcation, the stability and the period of bifurcating periodic solutions are derived. Finally extensive numerical experiments are performed to validate analytical findings.
机译:在本文中,我们提出了一个在猎物和捕食者种群中都具有疾病的猎物-捕食者系统。我们还认为,捕食者种群本质上是食人性的,并且疾病通过食人主义传播到捕食者种群。研究了该系统在生物学上可行的平衡附近的局部稳定性。我们还从生态和疾病基本繁殖数量的角度分析了该系统的群落结构。我们观察到食肉动物种群中的自相残杀使食肉动物-食肉动物的振荡稳定下来。还观察到,食人可以控制系统中的疾病。通过选择合适的分岔参数来研究Hopf分岔的存在,并得出系统持久性的条件。进一步,利用正规形式理论和中心流形定理,推导了Hopf分支的方向,分支周期解的稳定性和周期。最后,进行了广泛的数值实验以验证分析结果。

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