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Modeling and bifurcation research of a worm propagation dynamical system with time delay - MaRDI portal

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Modeling and bifurcation research of a worm propagation dynamical system with time delay (Q1718304)

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scientific article; zbMATH DE number 7016369
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English
Modeling and bifurcation research of a worm propagation dynamical system with time delay
scientific article; zbMATH DE number 7016369

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    Modeling and bifurcation research of a worm propagation dynamical system with time delay (English)
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    8 February 2019
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    Summary: Both vaccination and quarantine strategy are adopted to control the Internet worm propagation. By considering the interaction infection between computers and external removable devices, a worm propagation dynamical system with time delay under quarantine strategy is constructed based on anomaly intrusion detection system (IDS). By regarding the time delay caused by time window of anomaly IDS as the bifurcation parameter, local asymptotic stability at the positive equilibrium and local Hopf bifurcation are discussed. Through theoretical analysis, a threshold \(\tau_0\) is derived. When time delay is less than \(\tau_0\), the worm propagation is stable and easy to predict; otherwise, Hopf bifurcation occurs so that the system is out of control and the containment strategy does not work effectively. Numerical analysis and discrete-time simulation experiments are given to illustrate the correctness of theoretical analysis.
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