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An optimal control model of mosquito reduction management in a dengue endemic region

机译:登革热流行区灭蚊管理的最优控制模型

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Aedes aegypti is known as the responsible vector in transmitting dengue flavivirus. Unavailability of medication to cure the transmission in human blood becomes a global health issue in recent decades. World epidemiologists are encouraged to focus on investigation toward an effective and inexpensive way to prevent dengue transmission, i.e. mosquito control. In this paper, we present a model depicting the dynamics of mosquito population based on indoor-outdoor life cycle classification. The basic mosquito offspring number is obtained and analysis of equilibria is shown. We bring along a discussion on application of optimal control model which engineers two simultaneous schemes. The first scheme is done by disseminating chemical like Temephos in spots where eggs and larvae develop, meanwhile the second scheme is done by conducting fumigation through areas where adult mosquitoes prevalently nest, indoor as well as outdoor. A version of gradient-based method is presented to set down a workflow in minimizing the objective functional with respect to control variable. Numerical results from analysis of the basic mosquito offspring number with constant control and from optimal control suggest that one has to enhance the usage of fumigation rather than Temephos. It is also suggested that applying both control schemes simultaneously gives the most significant reduction to the population.
机译:埃及伊蚊被认为是传播登革热黄病毒的负责载体。在近几十年来,无法获得治疗人类血液传播的药物已成为全球性的健康问题。鼓励世界流行病学家集中精力研究一种有效且廉价的方法来预防登革热的传播,即控制蚊子。在本文中,我们提出了一个基于室内-室外生命周期分类的蚊子种群动态模型。获得了基本的蚊子后代数并显示了平衡性分析。我们讨论了最优控制模型的应用,该模型设计了两个同时的方案。第一种方案是通过在虫卵和幼虫生长的地方散布诸如Temephos之类的化学物质来完成的,而第二种方案是通过在室内和室外普遍存在成年蚊子的区域进行熏蒸来完成。提出了一种基于梯度的方法,以建立一种工作流程,以最大程度地减少针对控制变量的目标函数。通过对基本蚊子后代数量进行恒定控制和最佳控制的分析得出的数值结果表明,必须提高熏蒸的使用量,而不是Temephos。还建议同时应用两种控制方案可以最大程度地减少人口。

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