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Optimal Control of SEIR Epidemic Model Considering Nonlinear Transmission Rate and Time Delay

机译:考虑非线性传输速率和时间延迟的SEIR流行模型的最佳控制

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In this study, an optimal control strategy is applied to the SEIR (Susceptible-Exposed-Infected-Recovered) epidemic model with nonlinear transmission rate and time-delay caused by vaccination and antiviral treatment. This paper aims to recover the susceptible people by vaccination and treat the infected people by antiviral treatment. The susceptible and infected people are moved to the recovered group with a time delay. Pontryagin’s maximum principle is used to obtain the optimal control inputs and the optimal time. Numerical results are consistent with the analytical ones and corroborate our theoretical results.
机译:在该研究中,利用非线性传输速率和受疫苗接种引起的时滞的塞尔(易感暴露感染回收的)流行病模型应用了最佳控制策略。 本文旨在通过疫苗接种来捕获易感人,并通过抗病毒治疗治疗受感染的人。 易感和感染的人随着时间延迟而被移动到回收的群体。 Pontryagin的最大原理用于获得最佳控制输入和最佳时间。 数值结果与分析结果一致,并证实了我们的理论结果。

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