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理解城市网络的交通容量。

Understanding traffic capacity of urban networks.

机构信息

Institute for Transport Planning and Systems, ETH Zurich, Switzerland.

Division of Engineering, NYU Abu Dhabi, UAE.

出版信息

Sci Rep. 2019 Nov 8;9(1):16283. doi: 10.1038/s41598-019-51539-5.

Abstract

Traffic in an urban network becomes congested once there is a critical number of vehicles in the network. To improve traffic operations, develop new congestion mitigation strategies, and reduce negative traffic externalities, understanding the basic laws governing the network's critical number of vehicles and the network's traffic capacity is necessary. However, until now, a holistic understanding of this critical point and an empirical quantification of its driving factors has been missing. Here we show with billions of vehicle observations from more than 40 cities, how road and bus network topology explains around 90% of the empirically observed critical point variation, making it therefore predictable. Importantly, we find a sublinear relationship between network size and critical accumulation emphasizing decreasing marginal returns of infrastructure investment. As transportation networks are the lifeline of our cities, our findings have profound implications on how to build and operate our cities more efficiently.

摘要

一旦城市网络中的车辆数量达到临界值,交通就会变得拥堵。为了改善交通运行、制定新的缓解拥堵策略以及减少负面交通外部性,了解控制网络中临界车辆数量和网络交通容量的基本规律是必要的。然而,到目前为止,人们对这一关键点还缺乏全面的理解,也无法对其驱动因素进行经验量化。在这里,我们通过来自 40 多个城市的数十亿辆汽车的观测数据,展示了道路和公交网络拓扑结构如何解释了大约 90%的经验观察到的临界点变化,从而使其具有可预测性。重要的是,我们发现网络规模和临界累积之间呈次线性关系,这强调了基础设施投资的边际收益递减。由于交通网络是城市的生命线,我们的研究结果对如何更有效地建设和运营城市具有深远的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab02/6841661/b6f7f5f9aebc/41598_2019_51539_Fig1_HTML.jpg

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