DocumentCode :
592172
Title :
Optimal information dissemination in epidemic networks
Author :
Sahneh, Faryad Darabi ; Scoglio, Caterina M.
Author_Institution :
Dept. of Electr. & Comput. Eng., Kansas State Univ., Manhattan, KS, USA
fYear :
2012
fDate :
10-13 Dec. 2012
Firstpage :
1657
Lastpage :
1662
Abstract :
One of the popular dynamics on complex networks is the SIS epidemic spreading. The SIS epidemic model describes how infections spread throughout a network. The SIS model was extended to Susceptible-Alert-Infected-Susceptible (SAIS) model [1] to incorporate reaction of agents to the spread of the infection. Built upon the SAIS model, we investigate how information dissemination can help boosting the resilience of the agents population against the spreading. The information dissemination is realized through an additional network among agents, which has the same nodes (agents) but different links with respect to the contact network. Each link in the information dissemination network is a directed link which provides the health status of the source agent to the end agent. We introduce an information dissemination metric which is a quadratic form of the adjacency matrix of the information dissemination network and the dominant eigenvector of the adjacency matrix of the contact graph. By tools of perturbation theory, we analytically show that the effect of the information dissemination is explicitly related to the information dissemination metric. It is proven that the spectral centrality of the nodes and edges determines the optimal information dissemination network. Our results suggest that monitoring the health status of a small subgroup of the agents and circulating the information can greatly enhance the resilience of the network, with multiple potential areas of applications, from infectious diseases mitigations to malware impact reduction.
Keywords :
eigenvalues and eigenfunctions; epidemics; graph theory; information dissemination; invasive software; matrix algebra; multi-agent systems; network theory (graphs); SAIS model; SIS epidemic model; SIS epidemic spreading; adjacency matrix; agent population resilience; agent reaction; complex networks; contact graph; contact network; eigenvector; epidemic network; health status monitoring; infection spreading; infectious disease mitigation; information circulation; information dissemination metric; malware impact reduction; network resilience; optimal information dissemination network; perturbation theory; source agent health status; spectral centrality; susceptible-alert-infected-susceptible model; Equations; Mathematical model; Sociology; Statistics; Steady-state; Topology;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Decision and Control (CDC), 2012 IEEE 51st Annual Conference on
Conference_Location :
Maui, HI
ISSN :
0743-1546
Print_ISBN :
978-1-4673-2065-8
Electronic_ISBN :
0743-1546
Type :
conf
DOI :
10.1109/CDC.2012.6425833
Filename :
6425833
Link To Document :
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