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Complementary strengths of airlines under network disruptions

机译:网络中断下航空公司的互补优势

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Disruptions of air transportation systems, caused by events such as, extreme weather conditions or human-intended attacks, can lead to huge economic losses. Existing studies have modeled and estimated the robustness of air transportation networks under node/link failures, and found that networks disintegrate quickly under targeted attacks. The robustness of airline networks, however, has been largely neglected in the past, with investigating strongly spatially constrained regions and few airlines only.In this study, we first investigate the robustness of more than 200 global airline networks, which cover almost 95% of worldwide air passenger transportation. We find that the robustness depends largely on the structure of the airline network. Second, we estimate how much these disruptions can be absorbed by other airlines using the notion of static complementary strength. In addition, with passenger data and rerouting considerations, we analyze how much of an airline disruption can be compensated by other airlines in reality. Results show that the traditional complementary strength clearly overestimates the robustness of the network; according to our more realistic model, many airlines are indeed easy to fail and the consequences of failures are not readily compensated by other airlines. Our work contributes towards improving air transportation systems, by understanding the hidden threats of airline disruptions.
机译:由诸如极端天气条件或人类预期攻击等事件引起的空运系统的中断,可能导致巨大的经济损失。现有的研究已经建模并估计了节点/链接故障下的空运网络的鲁棒性,并发现网络在目标攻击下快速崩解。然而,过去的航空公司网络的稳健性在很大程度上被忽视了,在这项研究中调查了强烈空间约束的地区和少数航空公司,我们首先调查了200多个全球航空公司网络的稳健性,占地面积近95%全球航空客运。我们发现稳健性很大程度上取决于航空公司网络的结构。其次,我们估计使用静态互补强度的概念可以通过其他航空公司吸收这些中断的程度。此外,通过乘客数据和重新路由考虑,我们分析了现实中其他航空公司可以补偿的航空公司中断的大部分。结果表明,传统的互补强度明显高估了网络的鲁棒性;根据我们更现实的模型,许多航空公司确实很容易失败,而失败的后果也没有被其他航空公司易于补偿。通过了解航空公司中断的隐藏威胁,我们的工作有助于改善空运系统。

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