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SVEIRS: A New Epidemic Disease Model with Time Delays and Impulsive Effects

机译:SVIRS:一种新的流行病模型,时间延迟和冲动影响

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摘要

We first propose a new epidemic disease model governed by system of impulsive delay differential equations. Then, based on theories for impulsive delay differential equations, we skillfully solve the difficulty in analyzing the global dynamical behavior of the model with pulse vaccination and impulsive population input effects at two different periodic moments. We prove the existence and global attractivity of the “infection-free” periodic solution and also the permanence of the model. We then carry out numerical simulations to illustrate our theoretical results, showing us that time delay, pulse vaccination, and pulse population input can exert a significant influence on the dynamics of the system which confirms the availability of pulse vaccination strategy for the practical epidemic prevention. Moreover, it is worth pointing out that we obtained an epidemic control strategy for controlling the number of population input.
机译:我们首先提出了一种由脉冲延迟微分方程系统治理的新的流行病模型。然后,基于脉冲延迟微分方程的理论,我们巧妙地解决了分析模型的全球动态行为,在两个不同的周期性时刻的脉冲疫苗接种和脉冲群体输入效应。我们证明了“无感染”定期解决方案的存在和全局吸引力以及模型的持久性。然后,我们进行数值模拟来说明我们的理论结果,显示我们的时间延迟,脉冲疫苗接种和脉搏群体输入可以对系统的动态产生重大影响,这证明了脉冲疫苗接种策略的实际停止策略的可用性。此外,值得指出,我们获得了控制人口投入数量的疫情控制策略。

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