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首页> 外文期刊>Chaos, Solitons and Fractals: Applications in Science and Engineering: An Interdisciplinary Journal of Nonlinear Science >Global dynamics of a fractional order model for the transmission of HIV epidemic with optimal control
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Global dynamics of a fractional order model for the transmission of HIV epidemic with optimal control

机译:具有最优控制的艾滋病疫情传播分数阶模型的全局动态

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摘要

In this paper, a nonlinear fractional order epidemic model for HIV transmission is proposed and analyzed by including extra compartment namely exposed class to the basic SIR epidemic model. Also, the infected class of female sex workers is divided into unaware infectives and the aware infectives. The focus is on the spread of HIV by female sex workers through prostitution, because in the present world sexual transmission is the major cause of the HIV transmission. The exposed class contains those susceptible males in the population who have sexual contact with the female sex workers and are exposed to the infection directly or indirectly. The Caputo type fractional derivative is involved and generalized Adams-BashforthMoulton method is employed to numerically solve the proposed model. Model equilibria are determined and their stability analysis is considered by using fractional Routh-Hurwitz stability criterion and fractional La-Salle invariant principle. Analysis of the model demonstrates that the population is free from the disease if R 0 1 and disease spreads in the population if R 0 1 . Meanwhile, by using Lyapunov functional approach, the global dynamics of the endemic equilibrium point is discussed. Furthermore, for the fractional optimal control problem associated with the control strategies such as condom use for exposed class, treatment for aware infectives, awareness about disease among unaware infectives and behavioral change for susceptibles, we formulated a fractional optimality condition for the proposed model. The existence of fractional optimal control is analyzed and the Euler-Lagrange necessary conditions for the optimality of fractional optimal control are obtained. The effectiveness of control strategies is shown through numerical simulations and it can be seen through simulation, that the control measures effectively increase the quality of life and age limit of the HIV patients. It significantly reduces the number of HIV/AIDS patients during the whole epidemic. (c) 2020 Elsevier Ltd. All rights reserved.
机译:本文通过将额外的舱室曝光的阶段提出和分析了HIV传输的非线性分数阶流行病模型,即暴露于基本SIR流行病模型。此外,受感染的女性性工作者分为不知不觉感染和感染者。重点是通过卖淫对女性性工作者的艾滋病毒的传播,因为在目前的世界性传播是艾滋病毒传播的主要原因。暴露的阶级包含与女性性工作者有性接触的人群中的那些易感雄性,并直接或间接地暴露于感染。 Caputo型分数衍生物涉及并广义Adams-BashforthMoulton方法用于数值解决拟议的模型。确定模型均衡,并通过使用分数Routh-Hurwitz稳定性标准和分数La-Salle不变原理来考虑它们的稳定性分析。该模型的分析表明,如果R 01和疾病在人口中蔓延,如果R 0 1的疾病,则群体是没有疾病的。同时,通过使用Lyapunov功能方法,讨论了流行均衡点的全局动态。此外,对于与暴露类的安全套使用的控制策略相关的分数最佳控制问题,感染者的治疗方法,对感染者的感染性和行为变化的意识,我们为所提出的模型制定了分数最优性条件。分析了分数最佳控制的存在,获得了欧拉拉格朗法的euler-lagrange获得了分数最佳控制的最佳状态。通过数值模拟显示控制策略的有效性,通过模拟可以看出,控制措施有效地提高了HIV患者的生活质量和年龄限制。它显着降低了整个流行病的艾滋病毒/艾滋病患者的数量。 (c)2020 elestvier有限公司保留所有权利。

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