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A long-time limit for world subway networks

机译:世界地铁网络的长期限制

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摘要

We study the temporal evolution of the structure of the world's largest subway networks in an exploratory manner. We show that, remarkably, all these networks converge to a shape that shares similar generic features despite their geographical and economic differences. This limiting shape is made of a core with branches radiating from it. For most of these networks, the average degree of a node (station) within the core has a value of order 2.5 and the proportion of k = 2 nodes in the core is larger than 60 per cent. The number of branches scales roughly as the square root of the number of stations, the current proportion of branches represents about half of the total number of stations, and the average diameter of branches is about twice the average radial extension of the core. Spatial measures such as the number of stations at a given distance to the barycentre display a first regime which grows as r2 followed by another regime with different exponents, and eventually saturates. These results—difficult to interpret in the framework of fractal geometry—confirm and yield a natural explanation in the geometric picture of this core and their branches: the first regime corresponds to a uniform core, while the second regime is controlled by the interstation spacing on branches. The apparent convergence towards a unique network shape in the temporal limit suggests the existence of dominant, universal mechanisms governing the evolution of these structures.
机译:我们以探索的方式研究了世界上最大的地铁网络结构的时间演变。我们显着地表明,尽管它们的地理和经济差异,所有这些网络都收敛为共享相似通用特征的形状。该限制形状由具有从其辐射的分支的芯制成。对于这些网络中的大多数网络,核心内节点(站点)的平均程度的值约为2.5,并且核心内k = 2个节点的比例大于60%。分支的数量大致按站点数的平方根缩放,当前分支的比例约占站点总数的一半,分支的平均直径约为核心平均径向扩展的两倍。空间度量(如距重心的给定距离处的站点数)显示第一个状态,该状态随r 2 增长,然后是另一个具有不同指数的状态,并最终达到饱和。这些结果难以在分形几何的框架中解释,但可以在该核及其分支的几何图中确认并给出自然的解释:第一种状态对应于均匀的核,而第二种状态则受站间间距的控制。分支机构。在时间范围内朝着唯一网络形状的明显趋同表明存在支配这些结构演化的主导性普遍机制。

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