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Complexity in human transportation networks: A comparative analysis of worldwide air transportation and global cargo-ship movements

机译:人类运输网络的复杂性:全球航空运输和全球货船运输的比较分析

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We present a comparative network-theoretic analysis of the two largest global transportation networks: the worldwide air-transportation network (WAN) and the global cargo-ship network (GCSN). We show that both networks exhibit surprising statistical similarities despite significant differences in topology and connectivity. Both networks exhibit a discontinuity in node and link betweenness distributions which implies that these networks naturally segregate into two different classes of nodes and links. We introduce a technique based on effective distances, shortest paths and shortest path trees for strongly weighted symmetric networks and show that in a shortest path tree representation the most significant features of both networks can be readily seen. We show that effective shortest path distance, unlike conventional geographic distance measures, strongly correlates with node centrality measures. Using the new technique we show that network resilience can be investigated more precisely than with contemporary techniques that are based on percolation theory. We extract a functional relationship between node characteristics and resilience to network disruption. Finally we discuss the results, their implications and conclude that dynamic processes that evolve on both networks are expected to share universal dynamic characteristics.
机译:我们对两个最大的全球运输网络:全球航空运输网络(WAN)和全球货运船网络(GCSN)进行了比较网络理论分析。我们显示,尽管拓扑和连通性存在显着差异,但两个网络都展现出令人惊讶的统计相似性。这两个网络在节点和链接之间的分布中均显示出不连续性,这意味着这些网络自然地分为两个不同类的节点和链接。我们介绍了一种基于有效距离,最短路径和最短路径树的技术,用于强加权对称网络,并显示了在最短路径树表示中,可以轻松看到两个网络的最重要特征。我们表明,有效的最短路径距离与传统的地理距离度量不同,与节点中心度度量密切相关。使用新技术,我们证明与基于渗流理论的现代技术相比,可以更精确地调查网络弹性。我们提取节点特征与网络中断恢复能力之间的功能关系。最后,我们讨论了结果及其含义,并得出结论,两个网络上发展的动态过程有望共享通用的动态特征。

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