期刊文献+

局域世界复杂网络中的病毒传播及其免疫控制 被引量:20

On Virus Spreading in Local-world Complex Networks and Its Immunization Control
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摘要 许多实际复杂网络具有局域世界特性,为此研究病毒在局域世界复杂演化网络中的传播现象.考察了在局域世界演化网络中,初始感染节点选择对传播行为的影响,传播临界值与局域世界之间的关系,并比较了随机免疫和目标免疫两种策略对局域世界复杂网络的有效性. Local-world property exists in many real-life complex networks. The virus spreading in local-world complex evolving networks is studied. The effect of different initially infected nodes on the spreading behavior of the network, and the relationship between epidemic threshold and local-world are investigated. Finally the efficiency of random and target immunizations for local-world complex networks is compared.
出处 《控制与决策》 EI CSCD 北大核心 2006年第7期817-820,共4页 Control and Decision
基金 国家自然科学基金项目(60504019 70431002) 国家杰出青年基金项目(60225013) 上海市青年科技启明星计划项目(05QMX1436)
关键词 局域世界 复杂网络 传播临界值 免疫控制 Local world Complex networks Epidemic threshold Immunization control
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参考文献10

  • 1Wang C, Knight J C, Elder M C. On Computer Viral Infection and the Effect of Immunization[A]. IEEE 16th Annual Computer Security Applications Conf[C].New Orleans, 2000: 246-256.
  • 2Alexei Vazquez, Romualdo Pastor Satorras,Alessandro Vespignani . Large - scale Topological and Dynamical Properties of the Internet [J]. Physical Review E, 2002, 65(6): 130-142.
  • 3Li X, Chen G, Li C G. Stability and Bifurcation of Disease Spreading in Complex Networks[J]. Int J of Systems Science, 2004,35 (9) : 527-536.
  • 4许丹,李翔,汪小帆.复杂网络理论在互联网病毒传播研究中的应用[J].复杂系统与复杂性科学,2004,1(3):10-26. 被引量:32
  • 5Barabasi A L, Albert R. Emergence of Scaling in Random Networks[J]. Science, 1999, 286: 509-512.
  • 6Li X, Jin Y Y, Chen G. Complexity and Synchronization of the World Trade Web[J]. Physica A, 2003, 328(2):287-298.
  • 7Li X, Chen G. A Local World Evolving Network Model[J]. Physica A, 2003, 328(2):274-286.
  • 8Pastor Satorras R, Vespignani A. Epidemics and Immunization in Scale-free Networks[A]. Handbook of Graphs and Networks : From the Genome to the Internet[C]. Berlin: Wiley-VCH, 2002:113-132.
  • 9Morenol Y, Pastor Satorras R, Vespignanil A. Epidemic Outbreaks in Complex Heterogeneous Networks[J]. European J of Physica B, 2002, 26(4) :521-529.
  • 10Marian Boguna, Romualdo Pastor Satorras. Epidemic Spreading in Correlated Complex Networks [J].Physical Review E, 2002,66(4):104-108.

二级参考文献35

  • 1[11]Wang Xiaofan, Chen Guanrong. Complex networks: small-world, scale-free, and beyond[J]. IEEE Circuits and Systems Magazine, 2003, 3(2): 6-20.
  • 2[12]Chen Guanrong, Fan Zhengping,Li Xiang. Modelling the complex Internet topology[M]. Complex Dynamics in Communication Networks[M], Springer Publisher, in press, 2004.
  • 3[13]Faloutsos M, Faloutsos P, Faloutsos C. On power-law relationships of the Internet topology[J]. Computer Communication Review, 1999, 29(4): 251-262.
  • 4[14]Li Xiang, Chen Guanrong. A local-world evolving network model[J]. Physica A, 2003, 328(1,2): 274-286.
  • 5[15]Kephart J O, White S R. Directed-graph epidemiological models of computer viruses[A]. Proceedings of the 1991 IEEE Symposium on Security and Privacy[C]. Oakland,California,USA:IEEE Computer Society Press,1991.343-359.
  • 6[16]Kephart J O, White S R. Measuring and modeling computer virus prevalence[A]. Proceedings of the 1993 IEEE Symposium on Security and Privacy[C]. IEEE,1993.2-15.
  • 7[17]Pastor-Satorras R, Vespingnani A. Epidemic spreading in scale-free networks[J]. Physical Review Letters, 2001,86(14): 3200-3203.
  • 8[18]Pastor-Satorras R, Vazquez A ,Vespignani A. Dynamical and correlation properties of the Internet[J]. Physical Review Letters, 2001, 87(25): 258701.
  • 9[19]Moreno1 Y, Pastor-Satorras R, Vespignani1 A. Epidemic outbreaks in complex heterogeneous networks[J]. Eur. Phys. J. B, 2002, 26(4): 521-529.
  • 10[20]Pastor-Satorras R,Vespignani A. Epidemics and immunization in scale-free networks[Z]. Bornholdt S. Handbook of Graphs and Networks: From the Genome to the Internet[M], Wiley-VCH,2003.

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