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Rumor restriction in Online Social Networks

  • Songsong Li
  • , Yuqing Zhu
  • , Deying Li*
  • , Donghyun Kim
  • , Hejiao Huang
  • *Corresponding author for this work
  • School of Information
  • University of Texas at Dallas
  • North Carolina Central University
  • Harbin Institute of Technology Shenzhen

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Online Social Networks (OSNs) have recently emerged as an effective medium for information sharing. Unfortunately, it has been frequently observed that malicious rumors being spread over an OSN are not controllable, and this is not desirable. This paper proposes a new problem, namely the γ - k rumor restriction problem, whose goal is, given a social network, to find a set S of nodes with k protectors (γ * k protectors from the contaminated set, and (1 - γ) * k protectors from the decontaminated set) to protect the network such that the number of decontaminated nodes is maximum. We show that the objective function of the γ - k rumor restriction problem is submodular, and use this result to design a greedy approximation algorithm with performance ratio of 1 - 1/ε for the problem under the linear threshold model and independent cascade model, respectively. To verify our algorithms, we conduct experiments on real word social networks including NetHEPT, WikiVote and Slashdot0811. The results show that our algorithm works efficiently and effectively.

Original languageEnglish
Title of host publication2013 IEEE 32nd International Performance Computing and Communications Conference, IPCCC 2013
DOIs
StatePublished - 2013
Externally publishedYes
Event2013 IEEE 32nd International Performance Computing and Communications Conference, IPCCC 2013 - San Diego, CA, United States
Duration: 6 Dec 20138 Dec 2013

Publication series

Name2013 IEEE 32nd International Performance Computing and Communications Conference, IPCCC 2013

Conference

Conference2013 IEEE 32nd International Performance Computing and Communications Conference, IPCCC 2013
Country/TerritoryUnited States
CitySan Diego, CA
Period6/12/138/12/13

Keywords

  • IC model
  • LT model
  • Real-world social networks
  • Rumor containment

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