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首页> 外文期刊>Physica, D. Nonlinear phenomena >Random walk centrality in interconnected multilayer networks
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Random walk centrality in interconnected multilayer networks

机译:互连多层网络中的随机游走中心性

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摘要

Real-world complex systems exhibit multiple levels of relationships. In many cases they require to be modeled as interconnected multilayer networks, characterizing interactions of several types simultaneously. It is of crucial importance in many fields, from economics to biology and from urban planning to social sciences, to identify the most (or the less) influent nodes in a network using centrality measures. However, defining the centrality of actors in interconnected complex networks is not trivial. In this paper, we rely on the tensorial formalism recently proposed to characterize and investigate this kind of complex topologies, and extend two well known random walk centrality measures, the random walk betweenness and closeness centrality, to interconnected multilayer networks. For each of the measures we provide analytical expressions that completely agree with numerically results. (C) 2016 Elsevier B.V. All rights reserved.
机译:现实世界中的复杂系统表现出多个级别的关系。在许多情况下,它们需要被建模为互连的多层网络,同时表征几种类型的交互。在从经济学到生物学,从城市规划到社会科学的许多领域中,使用集中度度量来识别网络中最多(或更少)的影响节点至关重要。但是,定义参与者在互连的复杂网络中的中心地位并非易事。在本文中,我们依靠最近提出的张量形式主义来表征和研究这种复杂拓扑,并将两个众所周知的随机游走中心性度量(随机游走之间和靠近中心性)扩展到互连的多层网络。对于每种度量,我们提供的解析表达式与数值结果完全一致。 (C)2016 Elsevier B.V.保留所有权利。

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