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A receding horizon control approach for integrated vector management of Aedes aegypti using chemical and biological control: A mono and a multiobjective approach

机译:使用化学和生物控制的AEDES AEGYPTI综合载体管理的后退地平线控制方法:单声道和多目标方法

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This paper addresses an integrated vector management (IVM) approach for combating Aedes aegypti, the transmission vector of dengue, zika, and chikungunya diseases, some of themost important viral epidemics worldwide. In order to tackle this problem, a receding horizon control (RHC) strategy is adopted, considering a mono-objective and a multiobjective version of the optimal control model of combating the mosquito using chemical and biological control. RHC is essentially a suboptimal scheme of classical optimal control strategies considering discrete-time approximations. The integrated vector control actions used in this work consist in applying insecticides and inserting sterile males produced by irradiation in the population of mosquitoes. The cost function is defined in terms of social and economic costs, in order to quantify the effectiveness of the proposed epidemiological control throughout a time window of 4 months. Numerical simulations show that the obtained results are better than those from the optimal control strategies found in literature. Furthermore, through the application of the multiobjetive approach, varying the scenarios in the mono-objective formulation is no longer necessary and a set of optimal strategies can be obtained at once. Finally, in order to help health authorities in the choice of the best solution of the Pareto-optimal set to be implemented in practice, a cost-effectiveness analysis is performed and a strategy representing the most cost-effective control policy is obtained.
机译:本文讨论了对抗AEDES AEGYPTI,登革热,ZIKA和Chikungunya疾病的传输向量的综合矢量管理(IVM)方法,全球一些重要的病毒流行病。为了解决这个问题,采用了一种后退地平线控制(RHC)策略,考虑了一种单一目标和使用化学和生物控制对抗蚊子的最佳控制模型的单目标和多目标。 RHC基本上是考虑离散时间近似的经典最佳控制策略的次优势方案。本工作中使用的综合载体控制作用包括涂覆杀虫剂并插入通过蚊子群中的辐射产生的无菌雄性。成本职能是在社会和经济成本方面定义的,以量化拟议流行病学控制的有效性,整个时间窗口为4个月。数值模拟表明,所获得的结果优于文献中发现的最佳控制策略的结果。此外,通过应用多元化方法,不再需要单一目标配方中的情景,并且可以一次获得一组最佳策略。最后,为了帮助卫生当局在实践中选择普通最佳集合的最佳解决方案,进行成本效益分析,并获得了代表最具成本效益的控制策略的策略。

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