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量化交通网络中的导航复杂性。

Quantifying navigation complexity in transportation networks.

作者信息

Jiang Zhuojun, Dong Lei, Wu Lun, Liu Yu

机构信息

Institute of Remote Sensing and Geographical Information Systems, School of Earth and Space Sciences, Peking University, Beijing 100871, China.

出版信息

PNAS Nexus. 2022 Jul 22;1(3):pgac126. doi: 10.1093/pnasnexus/pgac126. eCollection 2022 Jul.

Abstract

The complexity of navigation in cities has increased with the expansion of urban areas, creating challenging transportation problems that drive many studies on the navigability of networks. However, due to the lack of individual mobility data, large-scale empirical analysis of the wayfinder's real-world navigation is rare. Here, using 225 million subway trips from three major cities in China, we quantify navigation difficulty from an information perspective. Our results reveal that (1) people conserve a small number of repeatedly used routes and (2) the navigation information in the subnetworks formed by those routes is much smaller than the theoretical value in the global network, suggesting that the decision cost for actual trips is significantly smaller than the theoretical upper limit found in previous studies. By modeling routing behaviors in growing networks, we show that while the global network becomes difficult to navigate, navigability can be improved in subnetworks. We further present a universal linear relationship between the empirical and theoretical search information, which allows the two metrics to predict each other. Our findings demonstrate how large-scale observations can quantify real-world navigation behaviors and aid in evaluating transportation planning.

摘要

随着城市面积的扩大,城市导航的复杂性增加,引发了具有挑战性的交通问题,推动了许多关于网络可导航性的研究。然而,由于缺乏个人出行数据,对寻路者在现实世界中导航方式的大规模实证分析很少见。在此,我们利用中国三个主要城市的2.25亿次地铁出行数据,从信息角度量化导航难度。我们的结果表明:(1)人们保留了少量反复使用的路线;(2)由这些路线形成的子网络中的导航信息远小于全局网络中的理论值,这表明实际出行的决策成本明显小于先前研究中发现的理论上限。通过对增长网络中的路由行为进行建模,我们表明,虽然全局网络变得难以导航,但子网络的可导航性可以得到改善。我们进一步提出了经验搜索信息与理论搜索信息之间的通用线性关系,这使得这两个指标能够相互预测。我们的研究结果展示了大规模观测如何量化现实世界中的导航行为,并有助于评估交通规划。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f571/9896943/a5e6275e488b/pgac126fig1.jpg

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