A computer virus spreading model with nonlinear infectivity on scale-free network
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Summary
A novel SIDS (susceptible-infected-detached-sUSceptible) epidemic model of computer virus is proposed to investigate the impact of nonlinear infectivity in Internet with the scale-free property and analyze the globally dynamic behaviors of the virus.
- Type
- article
- Published
- 2015-07-18
- Cited by
- 4
- References
- 19
- Access
- Open access
- OpenAlex
- https://openalex.org/W1947598896
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:59354435
Keywords
Computer virus, Computer science, Scale-free network, The Internet, Infectivity
References
- Computer viruses: Theory and experiments
- Computer viruses: The application of epidemiology to computer viruses
- Velocity and hierarchical spread of epidemic outbreaks in scale-free networks.
- Spreading of epidemics on scale-free networks with nonlinear infectivity
- On power-law relationships of the Internet topology
- A stochastic SIR epidemic on scale-free network with community structure
- Small But Slow World: How Network Topology and Burstiness Slow Down Spreading
- An SIR model with infection delay and propagation vector in complex networks
- Dynamical behavior of computer virus on Internet
- Global attractivity of a network-based epidemic SIS model with nonlinear infectivity
- A delayed computer virus propagation model and its dynamics
- Emergence of scaling in random networks
- Epidemic spreading in scale-free networks.
- Dynamic model of worms with vertical transmission in computer network
- Directed-graph epidemiological models of computer viruses
- Statistical mechanics of complex networks
- Epidemic dynamics and endemic states in complex networks.
- Behaviors of susceptible-infected epidemics on scale-free networks with identical infectivity.
- Computer viruses—theory and experiments
- Emergence of Scaling in Random Networks
Cited by
- Evolutionary Virus Immune Strategy Based on Community Vitality
- The impact of hybrid quarantine strategies and delay factor on viral prevalence in computer networks
- Application of SIR epidemiological model: new trends
- A Survey of SIR‐Based Differential Epidemic Models for Control and Security Against Malware Propagation in Computer Networks
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