Ramasco José J, Dorogovtsev S N, Pastor-Satorras Romualdo
Departamento de Física and Centro de Física do Porto, Faculdade de Ciências, Universidade do Parto, Rua do Campo Alegre 687, 4169-007 Porto, Portugal.
Phys Rev E Stat Nonlin Soft Matter Phys. 2004 Sep;70(3 Pt 2):036106. doi: 10.1103/PhysRevE.70.036106. Epub 2004 Sep 14.
We study collaboration networks in terms of evolving, self-organizing bipartite graph models. We propose a model of a growing network, which combines preferential edge attachment with the bipartite structure, generic for collaboration networks. The model depends exclusively on basic properties of the network, such as the total number of collaborators and acts of collaboration, the mean size of collaborations, etc. The simplest model defined within this framework already allows us to describe many of the main topological characteristics (degree distribution, clustering coefficient, etc.) of one-mode projections of several real collaboration networks, without parameter fitting. We explain the observed dependence of the local clustering on degree and the degree-degree correlations in terms of the "aging" of collaborators and their physical impossibility to participate in an unlimited number of collaborations.
我们从不断演化的自组织二分图模型的角度研究合作网络。我们提出了一个增长网络模型,该模型将优先边连接与二分结构相结合,这是合作网络的通用模型。该模型仅依赖于网络的基本属性,例如合作者总数和合作行为、合作的平均规模等。在此框架内定义的最简单模型已经使我们能够描述几个真实合作网络的单模投影的许多主要拓扑特征(度分布、聚类系数等),而无需进行参数拟合。我们从合作者的“老化”及其参与无限数量合作的物理不可能性的角度解释了观察到的局部聚类对度的依赖性以及度与度之间的相关性。