Title :
Decentralized Protection Strategies Against SIS Epidemics in Networks
Author :
Trajanovski, Stojan ; Hayel, Yezekael ; Altman, Eitan ; Huijuan Wang ; Van Mieghem, Piet
Author_Institution :
Delft Univ. of Technol., Delft, Netherlands
Abstract :
Defining an optimal protection strategy against viruses, spam propagation, or any other kind of contamination process is an important feature for designing new networks and architectures. In this paper, we consider decentralized optimal protection strategies when a virus is propagating over a network through an SIS epidemic process. We assume that each node in the network can fully protect itself from infection at a constant cost, or the node can use recovery software, once it is infected. We model our system using a game-theoretic framework and find pure, mixed equilibria, and the Price of Anarchy in several network topologies. Further, we propose a decentralized algorithm and an iterative procedure to compute a pure equilibrium in the general case of a multiple communities network. Finally, we evaluate the algorithms and give numerical illustrations of all our results.
Keywords :
computer network security; computer software; computer viruses; game theory; iterative methods; telecommunication network topology; unsolicited e-mail; SIS epidemic process; contamination process; decentralized algorithm; decentralized optimal protection strategies; game-theoretic framework; iterative procedure; multiple communities network; network topologies; recovery software; spam propagation; susceptible infected susceptible epidemic process; Approximation methods; Biological system modeling; Communities; Control systems; Games; Investment; Nash equilibrium; Decentralized network protection; Game theory; Virus-spread; game theory; virus spread;
Journal_Title :
Control of Network Systems, IEEE Transactions on
DOI :
10.1109/TCNS.2015.2426755