Epidemiological dynamics is a vital method in studying the spread of computer network viruses. In this paper, an optimal control measure is proposed based on the SEIR virus propagation model in point-to-group information networks. First, considering the need for antivirus measures in reality, an optimal control problem is introduced, and then a controlled computer virus spread model in point-to-group information networks is established. Second, the optimal control measure is formulated by making a tradeoff between control cost and network loss caused by virus intrusion. Third, optimal control strategies are theoretically investigated by Pontryagin’s maximum principle and the Hamiltonian function. Finally, through numerical simulations, effe...
© 2019 Kaifan Huang et al. To restrain escalating computer viruses, new virus patches must be c...
This research paper considers the dynamics in epidemic model. Since understandin...
This article addresses the tradeoff between the losses caused by a new virus and the size of the tea...
The aim of this paper is to propose an optimal control strategy to face the propagation effects of a...
The aim of this paper is to propose an optimal control strategy to face the propagation effects of a...
Computer viruses are a serious threat to the general society, due to their implications for private...
Purposing to lessen malware propagation, this paper proposes optimal control measures for a suscepti...
Purposing to lessen malware propagation, this paper proposes optimal control measures for a suscepti...
Abstract—We design intervention schemes to control informa-tion spread in multi-agent systems. We co...
This thesis focuses on designing efficient mechanisms for controlling information spread in networks...
Computer viruses are a serious threat to the general society, due to their implications for private...
Disruptive computer viruses have inflicted huge economic losses. This paper addresses the developmen...
We seek to identify and address how different types of heterogeneity affect the optimal control of e...
We seek to identify and address how different types of heterogeneity affect the optimal control of e...
The process of diffusing viral marketing campaigns through social networks can be modeled under conc...
© 2019 Kaifan Huang et al. To restrain escalating computer viruses, new virus patches must be c...
This research paper considers the dynamics in epidemic model. Since understandin...
This article addresses the tradeoff between the losses caused by a new virus and the size of the tea...
The aim of this paper is to propose an optimal control strategy to face the propagation effects of a...
The aim of this paper is to propose an optimal control strategy to face the propagation effects of a...
Computer viruses are a serious threat to the general society, due to their implications for private...
Purposing to lessen malware propagation, this paper proposes optimal control measures for a suscepti...
Purposing to lessen malware propagation, this paper proposes optimal control measures for a suscepti...
Abstract—We design intervention schemes to control informa-tion spread in multi-agent systems. We co...
This thesis focuses on designing efficient mechanisms for controlling information spread in networks...
Computer viruses are a serious threat to the general society, due to their implications for private...
Disruptive computer viruses have inflicted huge economic losses. This paper addresses the developmen...
We seek to identify and address how different types of heterogeneity affect the optimal control of e...
We seek to identify and address how different types of heterogeneity affect the optimal control of e...
The process of diffusing viral marketing campaigns through social networks can be modeled under conc...
© 2019 Kaifan Huang et al. To restrain escalating computer viruses, new virus patches must be c...
This research paper considers the dynamics in epidemic model. Since understandin...
This article addresses the tradeoff between the losses caused by a new virus and the size of the tea...