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Coevolution and Correlated Multiplexity in Multiplex Networks

机译:多重网络中的协同进化和相关多重性

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Distinct channels of interaction in a complex networked system define network layers, which coexist and cooperate for the system's function. Towards understanding such multiplex systems, we propose a modeling framework based on coevolution of network layers, with a class of minimalistic growing network models as working examples. We examine how the entangled growth of coevolving layers can shape the network structure and show analytically and numerically that the coevolution can induce strong degree correlations across layers, as well as modulate degree distributions. We further show that such a coevolution-induced correlated multiplexity can alter the system's response to the dynamical process, exemplified by the suppressed susceptibility to a social cascade process.
机译:在复杂的联网系统中,不同的交互通道定义了网络层,这些层共存并协同工作以实现系统的功能。为了理解这种多路复用系统,我们提出了一个基于网络层协同进化的建模框架,并以一类简约的增长型网络模型作为工作示例。我们研究了纠缠层的纠缠增长如何形成网络结构,并通过分析和数字显示了协同演化可以在各层之间诱导强烈的度相关性,并调节度分布。我们进一步表明,这种由协同进化引起的相关多重性可以改变系统对动态过程的响应,以对社会级联过程的敏感性降低为例。

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