Analytical analysis and bifurcation of pine wilt dynamical transmission with host vector and nonlinear incidence using sustainable fractional approach

Q1 Mathematics
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Abstract

To study the dynamical system, it is necessary to formulate a mathematical model to comprehend the dynamics of the diseases that are prevalent around the world by using fractional calculus. A mathematical model is developed with the hypothesis created by adding control and asymptomatic variables to observe the rate of change of pine wilt and the ABC operator is used to turn the model into a fractional ordered model for continuous monitoring. The Boundedness and uniqueness of the developed model are investigated for bounded findings by using Banach space, which are the key properties of such an epidemic model. A newly developed system is examined both qualitatively and quantitatively to determine its stable position, and the verification of flip bifurcation has been made for developed systems. Derived reproductive numbers using the next-generation technique as well as the sensitivity of each involved parameter are verified. The Atangana–Toufik scheme is employed to find the solution for the developed system using different fractional values, which are advanced tools for reliable bounded solutions. Simulations have been made to see the real behavior and effects of pine wilt disease with control and asymptomatic battels in the community. Also, identify the real situation of the spread as well as the control of pine wilt after employing control and asymptomatic battels due to treatment. Such a type of investigation will be useful in investigating the spread of disease as well as helpful in developing control strategies based on our justified outcomes.

利用可持续分形方法,对带有寄主矢量和非线性入射的松树枯萎病动态传播进行分析和分叉
为了研究动态系统,有必要建立一个数学模型,利用分数微积分来理解世界各地流行的疾病的动态变化。通过添加控制变量和无症状变量来观察松树枯萎病的变化率,并利用 ABC 算子将模型转化为分数有序模型进行连续监测,从而建立了一个数学模型。利用巴拿赫空间研究了所开发模型的有界性和唯一性,这是此类流行病模型的关键属性。对新开发的系统进行了定性和定量研究,以确定其稳定位置,并对开发的系统进行了翻转分叉验证。利用新一代技术推导出的繁殖数以及每个相关参数的敏感性都得到了验证。采用 Atangana-Toufik 方案,使用不同的分数值为所开发的系统找到解决方案,这些分数值是可靠的有界解决方案的先进工具。通过模拟实验,可以了解松树枯萎病在社区中防治和无症状的实际情况和影响。此外,还可以确定松树枯萎病的实际传播情况,以及采用防治和无症状树种后的防治效果。此类调查将有助于调查疾病的传播情况,并有助于根据我们的合理结果制定控制策略。
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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来源期刊
CiteScore
6.20
自引率
0.00%
发文量
138
审稿时长
14 weeks
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