Generalized Epidemic Mean-Field Model for Spreading Processes Over Multilayer Complex Networks
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[1] Antoine Allard,et al. Modeling the dynamical interaction between epidemics on overlay networks , 2011, Physical review. E, Statistical, nonlinear, and soft matter physics.
[2] Faryad Darabi Sahneh,et al. Optimal information dissemination in epidemic networks , 2012, 2012 IEEE 51st IEEE Conference on Decision and Control (CDC).
[3] M. Keeling,et al. Networks and epidemic models , 2005, Journal of The Royal Society Interface.
[4] Thomas House,et al. From Markovian to pairwise epidemic models and the performance of moment closure approximations , 2012, Journal of mathematical biology.
[5] Piet Van Mieghem,et al. Performance analysis of communications networks and systems , 2006 .
[6] Nicoleta S. Tipi,et al. Modelling the dynamics of supply chains , 2000, Int. J. Syst. Sci..
[7] Gaoxi Xiao,et al. Effects of Interconnections on Epidemics in Network of Networks , 2011, 2011 7th International Conference on Wireless Communications, Networking and Mobile Computing.
[8] Sheldon M. Ross,et al. Stochastic Processes , 2018, Gauge Integral Structures for Stochastic Calculus and Quantum Electrodynamics.
[9] Alexander Grey,et al. The Mathematical Theory of Infectious Diseases and Its Applications , 1977 .
[10] Donald F. Towsley,et al. The effect of network topology on the spread of epidemics , 2005, Proceedings IEEE 24th Annual Joint Conference of the IEEE Computer and Communications Societies..
[11] Lixia Zhang,et al. A taxonomy of biologically inspired research in computer networking , 2010, Comput. Networks.
[12] A. Rbnyi. ON THE EVOLUTION OF RANDOM GRAPHS , 2001 .
[13] Faryad Darabi Sahneh,et al. Epidemic spread in human networks , 2011, IEEE Conference on Decision and Control and European Control Conference.
[14] Romualdo Pastor-Satorras,et al. Epidemic thresholds of the Susceptible-Infected-Susceptible model on networks: A comparison of numerical and theoretical results , 2012, Physical review. E, Statistical, nonlinear, and soft matter physics.
[15] Christos Faloutsos,et al. Interacting viruses in networks: can both survive? , 2012, KDD.
[16] Chuanyi Ji,et al. Spatial-temporal modeling of malware propagation in networks , 2005, IEEE Transactions on Neural Networks.
[17] S. Karlin,et al. A second course in stochastic processes , 1981 .
[18] C. Scoglio,et al. An individual-based approach to SIR epidemics in contact networks. , 2011, Journal of theoretical biology.
[19] Axel Thümmler,et al. Performance analysis of the General Packet Radio Service , 2001, Proceedings 21st International Conference on Distributed Computing Systems.
[20] P. Van Mieghem,et al. Susceptible-infected-susceptible model: a comparison of N-intertwined and heterogeneous mean-field approximations. , 2012, Physical review. E, Statistical, nonlinear, and soft matter physics.
[21] P. Van Mieghem,et al. Virus Spread in Networks , 2009, IEEE/ACM Transactions on Networking.
[22] Christos Faloutsos,et al. Epidemic spreading in real networks: an eigenvalue viewpoint , 2003, 22nd International Symposium on Reliable Distributed Systems, 2003. Proceedings..
[23] P Van Mieghem,et al. Second-order mean-field susceptible-infected-susceptible epidemic threshold. , 2012, Physical review. E, Statistical, nonlinear, and soft matter physics.
[24] Albert,et al. Emergence of scaling in random networks , 1999, Science.
[25] Virgil D. Gligor,et al. Analysis of complex contagions in random multiplex networks , 2012, Physical review. E, Statistical, nonlinear, and soft matter physics.
[26] A. Barabasi,et al. Network biology: understanding the cell's functional organization , 2004, Nature Reviews Genetics.
[27] George C. Verghese,et al. A Generalized Influence Model for Networked Stochastic Automata , 2011, IEEE Transactions on Systems, Man, and Cybernetics - Part A: Systems and Humans.
[28] Harry Eugene Stanley,et al. Cascade of failures in coupled network systems with multiple support-dependent relations , 2010, Physical review. E, Statistical, nonlinear, and soft matter physics.
[29] Jeffrey O. Kephart,et al. Directed-graph epidemiological models of computer viruses , 1991, Proceedings. 1991 IEEE Computer Society Symposium on Research in Security and Privacy.
[30] P. Erdos,et al. On the evolution of random graphs , 1984 .
[31] Harry Eugene Stanley,et al. Epidemics on Interconnected Networks , 2012, Physical review. E, Statistical, nonlinear, and soft matter physics.
[32] Marián Boguñá,et al. Epidemic spreading on interconnected networks , 2012, Physical review. E, Statistical, nonlinear, and soft matter physics.
[33] Marc Lipsitch,et al. No coexistence for free: neutral null models for multistrain pathogens. , 2009, Epidemics.
[34] J. Kleinberg. Computing: the wireless epidemic. , 2007, Nature.
[35] Alessandro Vespignani,et al. Epidemic dynamics and endemic states in complex networks. , 2001, Physical review. E, Statistical, nonlinear, and soft matter physics.
[36] B. Bollobás. The evolution of random graphs , 1984 .
[37] Piet Van Mieghem,et al. The N-intertwined SIS epidemic network model , 2011, Computing.
[38] Y. Moreno,et al. Epidemic outbreaks in complex heterogeneous networks , 2001, cond-mat/0107267.
[39] N. Ling. The Mathematical Theory of Infectious Diseases and its applications , 1978 .
[40] M. Newman. Threshold effects for two pathogens spreading on a network. , 2005, Physical review letters.
[41] Piet Van Mieghem,et al. Graph Spectra for Complex Networks , 2010 .
[42] S. Low,et al. The "robust yet fragile" nature of the Internet. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[43] Sebastian Funk,et al. Interacting epidemics on overlay networks. , 2010, Physical review. E, Statistical, nonlinear, and soft matter physics.
[44] Junshan Zhang,et al. Optimal Allocation of Interconnecting Links in Cyber-Physical Systems: Interdependence, Cascading Failures, and Robustness , 2012, IEEE Transactions on Parallel and Distributed Systems.
[45] K. Vahala. Handbook of stochastic methods for physics, chemistry and the natural sciences , 1986, IEEE Journal of Quantum Electronics.
[46] E A Leicht,et al. Suppressing cascades of load in interdependent networks , 2011, Proceedings of the National Academy of Sciences.