论文标题

美国国内航空运输网络的研究:2001年至2016年网络拓扑和鲁棒性的时间演变

A study of the U.S. domestic air transportation network: Temporal evolution of network topology and robustness from 2001 to 2016

论文作者

Siozos-Rousoulis, Leonidas, Robert, Dimitri, Verbeke, Wouter

论文摘要

美国航空运输网络(ATN)对美国的流动性和运作至关重要。因此,有必要确保其连接良好,高效和稳健。尽管对其拓扑的研究进行了广泛的研究,但网络稳健性和耐受性的时间演变仍未得到探索。在本文中,根据1996年至2016年的年度飞行数据进行了对美国国内ATN的时间研究,并使用网络分析来检查9/11事件之后的重组效果以及系统的当前状态。计算了中心度度量以评估系统的拓扑及其全球鲁棒性。应用节点删除方法来通过模拟目标攻击方案来评估网络的公差。研究表明,9/11恐怖袭击在效率和安全方面引发了网络的广泛重组。由于引入了新的机场和航线,空中交通不断扩大。航空公司重新考虑了他们的战略并优化了其运营,从而使网络能够迅速恢复并变得更加有效。安全问题导致网络的鲁棒性有了显着改善。自2001年以来,由于网络的扩展,美国ATN的全球交通和拓扑特性已显示出持续的增长。另一方面,系统的鲁棒性并未显示出改善的趋势。调查结果表明,尽管该系统在极端情况下维持其运营水平的能力最近有所提高,但其对目标攻击的容忍度却恶化了。提出的方法可以应用于不同的网络级别或不同的运输网络,以提供系统漏洞的一般视角。

The U.S. air transportation network (ATN) is critical to the mobility and the functioning of the United States. It is thus necessary to ensure that it is well-connected, efficient, and robust. Despite extensive research on its topology, the temporal evolution of the network's robustness and tolerance remains largely unexplored. In the present paper, a temporal study of the domestic U.S. ATN was performed based on annual flight data from 1996 to 2016 and network analytics were used to examine the effects of restructuring that followed the 9/11 events along with the current state of the system. Centrality measures were computed to assess the system's topology and its global robustness. A node deletion method was applied to assess the network's tolerance by simulating a targeted attack scenario. The study showed that the 9/11 terrorist attacks triggered vast restructuring of the network, in terms of efficiency and security. Air traffic expanded, as new airports and air routes were introduced. Airlines reconsidered their strategy and optimized their operations, thus allowing the network to recover rapidly and become even more efficient. Security concerns resulted in significant improvement of the network's robustness. Since 2001, the global traffic and topological properties of the U.S. ATN have displayed continuous growth, due to the network's expansion. On the other hand, the robustness of the system has not shown an improving tendency. Findings suggest that although the system's ability to sustain its operational level under extreme circumstances has lately improved, its tolerance to targeted attacks has deteriorated. The presented methodology may be applied on different network levels or different transportation networks, to provide a general perspective of the system's vulnerabilities.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源