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ОбластьСетевой анализСетевой анализ
СемействоMachine learningMachine learning
Год появления20042010
Автор методаBarrat, A.; Newman, M. E. J.Opsahl, T.; Agneessens, F.; Skvoretz, J. (extending Freeman 1977 and Brandes 2001)
ТипNetwork diffusion modelCentrality measure (path-based)
Основополагающий источникBarrat, A., Barthelemy, M., Pastor-Satorras, R., & Vespignani, A. (2004). The architecture of complex weighted networks. Proceedings of the National Academy of Sciences, 101(11), 3747–3752. DOI ↗Opsahl, T., Agneessens, F., & Skvoretz, J. (2010). Node centrality in weighted networks: Generalizing degree and shortest paths. Social Networks, 32(3), 245–251. DOI ↗
Другие названияWNDA, weighted diffusion process, edge-weighted spreading analysis, weighted information diffusionWBC, weighted shortest-path betweenness, edge-weighted betweenness, geodesic betweenness (weighted)
Связанные66
СводкаWeighted Network Diffusion Analysis models how information, influence, disease, or resources spread through a network whose edges carry quantitative strength values. By letting tie weights govern transition probabilities, the method produces more realistic spreading dynamics than binary-edge diffusion, revealing which high-traffic pathways dominate propagation in social, biological, and information networks.Weighted Betweenness Centrality extends Freeman's betweenness measure to edge-weighted graphs by routing shortest paths through a tunable transformation of edge weights. Nodes that sit on many high-value shortest paths receive high scores, identifying brokers and bridges in social, biological, and information networks where tie strength matters.
ScholarGateНабор данных
  1. v1
  2. 2 Источники
  3. PUBLISHED
  1. v1
  2. 2 Источники
  3. PUBLISHED

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ScholarGateСравнение методов: Weighted Network Diffusion Analysis · Weighted Betweenness Centrality. Получено 2026-06-17 из https://scholargate.app/ru/compare