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Multiplexity versus correlation: the role of local constraints in real multiplexes

机译:多重性与相关性:局部约束在实际多重中的作用

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摘要

Several systems can be represented as multiplex networks, i.e. in terms of a superposition of various graphs, each related to a different mode of connection between nodes. Hence, the definition of proper mathematical quantities aiming at capturing the added level of complexity of those systems is required. Various steps in this direction have been made. In the simplest case, dependencies between layers are measured via correlation-based metrics, a procedure that we show to be equivalent to the use of completely homogeneous benchmarks specifying only global constraints. However, this approach does not take into account the heterogeneity in the degree and strength distributions, which is instead a fundamental feature of real-world multiplexes. In this work, we compare the observed dependencies between layers with the expected values obtained from maximum-entropy reference models that appropriately control for the observed heterogeneity in the degree and strength distributions. This information-theoretic approach results in the introduction of novel and improved multiplexity measures that we test on different datasets, i.e. the International Trade Network and the European Airport Network. Our findings confirm that the use of homogeneous benchmarks can lead to misleading results, and highlight the important role played by the distribution of hubs across layers.
机译:可以将多个系统表示为多路复用网络,即,按照各种图的叠加表示,每个图都与节点之间的不同连接模式有关。因此,需要定义适当的数学量,以捕获那些系统的复杂性增加的水平。已经朝这个方向采取了各种步骤。在最简单的情况下,各层之间的依赖关系是通过基于相关性的度量标准来衡量的,我们证明该过程等效于使用仅指定全局约束的完全同类基准。但是,这种方法没有考虑程度和强度分布的异质性,而这是现实世界中复用的基本特征。在这项工作中,我们将观察到的层之间的相关性与从最大熵参考模型获得的期望值进行比较,该参考模型适当地控制了观察到的程度和强度分布的异质性。这种信息理论方法导致引入了新颖且经过改进的多重性度量,我们在不同的数据集(即国际贸易网络和欧洲机场网络)上进行了测试。我们的发现证实,使用同类基准会导致误导性结果,并突出显示了集线器跨层分布所起的重要作用。

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