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Mathematical Model for Malaria Transmission with Optimal Control Strategies and Their Effects

机译:最优控制策略的疟疾传播数学模型及其作用

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In this paper, we propose a SEIR-SEI optimal control model of malaria transmission with standard incidence rate. We present four control strategies to prevent the prevalence of infection in the society. In order to do this, we introduce an optimal control problem with an objective function, where the four control functions, prevention using Long-Lasting Insecticide Treated Net(LLITN) usub1/sub(t) , the control effort on malaria treatment of infected individuals usub2/sub(t) , the insecticide spray on the breeding grounds for the mosquito usub3/sub(t) , the prevention using Indoor Residual Spraying usub4/sub(t) ; have been used as control measures for exposed and infected individuals. We show the existence of an optimal control pair for the optimal control problem and derive the optimality conditions. Our numerical simulation suggests that the two controls strategies usub1/sub(t) and usub2/sub(t) are more effective than the other control strategies in controlling (reducing) the number of exposed and infected individuals and also in increasing the number of recovered individuals.
机译:在本文中,我们提出了具有标准发病率的SEIR-SEI最优疟疾传播控制模型。我们提出了四种控制策略,以防止社会中感染的流行。为此,我们引入了具有目标函数的最优控制问题,其中的四个控制函数是使用持久杀虫剂处理过的网(LLITN)u 1 (t)进行预防,其控制效果感染个体u 2 (t)的疟疾治疗,在蚊子u 3 (t)繁殖地喷洒杀虫剂,室内残留喷洒u < sub> 4 (t);已被用作暴露和感染者的控制措施。我们显示了最优控制问题的最优控制对的存在,并推导了最优性条件。我们的数值模拟表明,两种控制策略u 1 (t)和u 2 (t)在控制(减少)数量方面比其他控制策略更有效。暴露和感染的个体,还增加了恢复个体的数量。

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