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Natural Emergence of Clusters and Bursts in Network Evolution

机译:网络演进中集群和突发的自然出现

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Network models with preferential attachment, where new nodes are injected into the network and form links with existing nodes proportional to their current connectivity, have been well studied for some time. Extensions have been introduced where nodes attach proportionally to arbitrary fitness functions. However, in these models, attaching to a node always increases the ability of that node to gain more links in the future. We study network growth where nodes attach proportionally to the clustering coefficients, or local densities of triangles, of existing nodes. Attaching to a node typically lowers its clustering coefficient, in contrast to preferential attachment or rich-get-richer models. This simple modification naturally leads to a variety of rich phenomena, including aging, non-Poissonian bursty dynamics, and community formation. This theoretical model shows that complex network structure can be generated without artificially imposing multiple dynamical mechanisms and may reveal potentially overlooked mechanisms present in complex systems.
机译:在一段时间内,已经对具有优先附件的网络模型进行了深入研究,在该模型中,新节点被注入网络并与现有节点成比例地与它们的当前连接性形成链接。引入了扩展,其中节点按比例附加到任意适应度函数。但是,在这些模型中,附加到节点始终会增加该节点将来获得更多链接的能力。我们研究网络的增长,其中节点成比例地连接到现有节点的聚类系数或三角形的局部密度。与优先附加或富裕富裕模型相比,附加到节点通常会降低其聚类系数。这种简单的修改自然会导致各种丰富的现象,包括老化,非泊松突发性动力学和群落形成。该理论模型表明,可以在不人为地施加多种动力学机制的情况下生成复杂的网络结构,并且可以揭示复杂系统中存在的可能被忽略的机制。

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