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Global Stability of a Computer Virus Propagation Model with Two Kinds of Generic Nonlinear Probabilities

机译:两种通用非线性概率的计算机病毒传播模型的全局稳定性

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摘要

Vaccination is one of the most effective measures for suppressing the spread of computer virus, and the bilinear incidence rate assumption for the majority of previous models, which is a good first approximation of the general incidence rate, is in disagreement with the reality. In this paper, a new dynamical model with two kinds of generic nonlinear probabilities (incidence rate and vaccination probability) is established. An exhaustive mathematical analysis of this model shows that (a) there are two equilibria, virus-free equilibrium and viral equilibrium, and (b) the virus-free (or viral) equilibrium is globally asymptotically stable when the basic reproduction number is less (or greater) than unity. The analysis of the basic reproduction number is also included. Additionally, some numerical examples are given to illustrate the main results, from which it can be seen that the generic nonlinear vaccination is helpful to strengthen computer security.
机译:疫苗接种是抑制计算机病毒传播的最有效措施之一,以及以前的大多数模型的Bilinear发病率假设,这是一般发病率的良好近似值,是与现实的分歧。本文建立了一种新的一种新型动态模型,具有两种通用非线性概率(发病率和疫苗接种概率)。该模型的详尽数学分析表明(a)存在两种平衡,病毒平衡和病毒平衡,并且(b)当基本再现数量较少时,无病毒(或病毒)平衡是全局渐近的稳定性(或更大)比统一。还包括对基本再现号码的分析。另外,给出了一些数值例子来说明主要结果,可以看出,通用非线性疫苗接种有助于加强计算机安全性。

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