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State-Dependent Pulse Vaccination and Therapeutic Strategy in an SI Epidemic Model with Nonlinear Incidence Rate

机译:具有非线性发生率的SI流行病模型中的状态依赖型脉冲疫苗接种和治疗策略

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摘要

In this paper, the state-dependent pulse vaccination and therapeutic strategy are considered in the control of the disease. A pulse system is built to model this process based on an SI ordinary differential equation model. At first, for the system neglecting the impulse effect, we give the classification of singular points. Then for the pulse system, by using the theory of the semicontinuous dynamic system, the dynamics is analyzed. Our analysis shows that the pulse system exhibits rich dynamics and the system has a unique order-1 homoclinic cycle, and by choosing p as the control parameter, the order-1 homoclinic cycle disappears and bifurcates an orbitally asymptotical stable order-1 periodic solution when p changes. Numerical simulations by maple 18 are carried out to illustrate the theoretical results.
机译:在本文中,在疾病控制中考虑了状态依赖的脉冲疫苗接种和治疗策略。建立了一个脉冲系统,以基于SI常微分方程模型对该过程进行建模。首先,对于忽略脉冲效应的系统,我们给出了奇点的分类。然后针对脉冲系统,利用半连续动力系统理论对动力系统进行了分析。我们的分析表明,脉冲系统具有丰富的动力学特性,并且该系统具有唯一的1阶同斜周期,并且通过选择p作为控制参数,该1阶同斜周期消失了,并且在出现以下情况时分叉了一个轨道渐近稳定的1阶周期解。 p改变。枫18进行的数值模拟说明了理论结果。

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