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Stability analysis of a three species food chain model with linear functional response via imprecise and parametric approach

机译:一种通过不精确和参数化方法对三种食物链模型进行三种食物链模型的稳定性分析

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摘要

Currently, proper modeling of a biological system in an uncertain situation is a challenging task for researchers. Facing this challenge, in this article, a new concept of interval representation named as linear parametric representation is introduced by which a biological system in an uncertain situation can be formulated mathematically in a precise way. The aim of this work is to formulate a three species imprecise food chain model with one prey and two competing predators in an interval environment. Here, all the biological parameters except the conversion efficiency of the species are considered interval-valued. And interactions among the species are taken as Holling Type I functional response. Using the linear parametric representation of interval, a system in the interval form has been converted in the parametric form. Positivity and boundedness of the solutions of the proposed imprecise system are verified. Then, conditions of local stability, global stability and transcritical bifurcation of equilibrium points of the proposed system are established. Thereafter, all the theoretical results of this work are validated by a numerical example with interval-valued parametric data and results are presented pictorially. Finally, some biological implications of the obtained results are discussed and a fruitful conclusion has been made.
机译:目前,在不确定的情况下正确建模生物系统是研究人员有挑战性的任务。面对这一挑战,在本文中,引入了名称为线性参数表示的间隔表示的新概念,通过该概念被引入线性参数表示,在不确定的情况下可以以精确的方式在数学上制定。这项工作的目的是在间隔环境中制定三种不精确的食物链模型,其中一个猎物和两个竞争的捕食者。这里,除了物种转换效率之外的所有生物学参数被认为是间隔值。物种之间的相互作用被视为Holling I型功能反应。使用间隔的线性参数表示,以参数形式转换为间隔形式的系统。验证了所提出的不精确系统的解决方案的积极性和界限。然后,建立了局部稳定性,全局稳定性和跨临界分叉的拟议系统的均衡点的条件。此后,通过具有间隔值的参数数据的数值示例验证该工作的所有理论结果,结果是被图案地呈现的结果。最后,讨论了所获得的结果的一些生物学意义,并进行了富有成效的结论。

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