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Frailty effects in networks: comparison and identification of individual heterogeneity versus preferential attachment in evolving networks

机译:网络中的脆弱影响:不断发展的网络中个体异质性与优先依附的比较和识别

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摘要

Preferential attachment is a proportionate growth process in networks, where nodes receive new links in proportion to their current degree. Preferential attachment is a popular generative mechanism to explain the widespread observation of power-law-distributed networks. An alternative explanation for the phenomenon is a randomly grown network with large individual variation in growth rates among the nodes (frailty). We derive analytically the distribution of individual rates, which will reproduce the connectivity distribution that is obtained from a general preferential attachment process (Yule process), and the structural differences between the two types of graphs are examined by simulations. We present a statistical test to distinguish the two generative mechanisms from each other and we apply the test to both simulated data and two real data sets of scientific citation and sexual partner networks. The findings from the latter analyses argue for frailty effects as an important mechanism underlying the dynamics of complex networks.
机译:优先连接是网络中按比例增长的过程,其中节点按其当前程度按比例接收新链接。优先附着是一种流行的生成机制,可以解释对幂律分布网络的广泛观察。对该现象的另一种解释是随机增长的网络,节点之间的增长率(脆弱性)存在较大的个体差异。我们通过分析得出各个比率的分布,这将重现从一般优先附加过程(Yule过程)获得的连通性分布,并且通过仿真检查了两种类型的图之间的结构差异。我们提供了一种统计测试,以区分两种生成机制,并将其应用于模拟引文和科学引文及性伴侣网络的两个真实数据集。后者的分析结果表明,脆弱性是复杂网络动态基础的重要机制。

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