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Design of Epidemic Computer Virus Model with Effect of Quarantine in the Presence of Immunity

机译:存在免疫时具有隔离作用的流行计算机病毒模型的设计

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The aim of this study is to develop an autonomous epidemic virus model to depict the transmission of malicious computer code in active networks with pre-existing immunity and quarantine as effective control strategies. Due to the rapid spread of computer viruses and a delay in the update of antivirus signature database, the role of quarantine as a controlling mechanism has gained importance. The existence of disease free equilibrium point and its stability, as well as the existence of endemic equilibrium point and its stability are explored in terms of basic reproduction number R-0. The model exhibits two equilibria points: disease free equilibrium and endemic equilibrium. Numerical simulations are performed to analyze the dynamics of the model in the presence of controlling mechanisms and in the absence of up-to-date antivirus software in terms of accuracy and convergence. The model interpretation invokes interesting inferences for effective quarantine strategy, with or without immunity and control mechanisms for security holes and zero-day vulnerabilities.
机译:这项研究的目的是开发一种自主流行病毒模型,以有效的控制策略来描述恶意计算机代码在活动网络中的传播,并以预先存在的免疫力和隔离力为特征。由于计算机病毒的迅速传播和防病毒签名数据库更新的延迟,隔离作为控制机制的作用已变得越来越重要。根据基本繁殖数R-0,探讨了无病平衡点的存在及其稳定性,以及地方病平衡点的存在及其稳定性。该模型表现出两个平衡点:无病平衡和地方平衡。在准确性和收敛性方面,在存在控制机制和不存在最新防病毒软件的情况下,进行数值模拟以分析模型的动力学。该模型解释为有效的隔离策略调用了有趣的推论,无论是否具有针对安全漏洞和零日漏洞的免疫和控制机制。

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