计算机病毒
计算机科学
传输(电信)
基础(线性代数)
微分方程
不变(物理)
电力传输
互联网
数学
电信
计算机安全
工程类
数学分析
几何学
万维网
电气工程
数学物理
标识
DOI:10.1109/itme53901.2021.00057
摘要
The reasonable design of worm propagation model can provide a basis for accurately predicting and analyzing the propagation law and mechanism of worm malicious code in the Internet, and help to further carry out the research on worm protection, detection and suppression technology. This paper introduces the transmission model of infectious diseases in the field of biopathology to analyze the transmission mechanism of network worms, and a class of network worm virus transmission model based on differential equations is established by using LaSalle invariant set principle and orbital stability theory of differential equations. The results show that the basic regeneration number is the threshold value of eliminating worm virus and keeping worm virus in a certain range. When the basic regeneration number is less than or equal to 1, worm virus is eliminated effectively. When the basic regeneration number is greater than 1, the worm virus will persist or stabilize in a certain state.
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