论文标题

从飞机跟踪数据到网络延迟模型:一种以数据为基础的方法,考虑了拥塞

From Aircraft Tracking Data to Network Delay Model: A Data-Driven Approach Considering En-Route Congestion

论文作者

Lin, Yu, Li, Lishuai, Ren, Pan, Wang, Yanjun, Szeto, W. Y.

论文摘要

途中的拥塞会导致空中交通网络的延迟,并且随着空中交通需求将继续增加,但空域量无法增长。但是,大多数现有关于飞行延迟建模的研究并未明确考虑交通拥堵。在这项研究中,我们提出了一种新的飞行延迟模型,多层空中交通网络延迟(MATND)模型,以捕获途中拥塞对空中交通网络上飞行延误的影响。该模型是通过数据驱动的方法开发的,将飞机跟踪数据和飞行时间表作为表征国家空中交通网络以及系统级模型方法的输入,并根据排队理论对延迟过程进行建模。这两种方法结合在一起,使网络延迟模型成为现实的密切表示,并易于实现方案分析。拟议的MATND模型包括1)一种数据驱动的方法,该方法是学习由机场,途中拥堵点和飞机跟踪数据的空气走廊组成的网络,2)一种随机且动态的排队网络模型,以计算飞行延迟,以计算飞行延迟并在机场和途中进行交通,并在该地区进行了交通,该模型可以通过太空进行了一个时间来计算一个方法。使用一个月的历史飞机跟踪中国空中交通网络的数据,MATND进行了测试,并表明可以准确量化国家空中交通网络的延迟。进行了“假设”方案分析,以证明如何将提出的模型用于评估空中交通网络改进策略,在这种情况下,对现实的操纵是不可能的。结果表明,MATND在计算上是有效的,非常适合评估策略替代方案对宏观级别范围延迟的影响。

En-route congestion causes delays in air traffic networks and will become more prominent as air traffic demand will continue to increase yet airspace volume cannot grow. However, most existing studies on flight delay modeling do not consider en-route congestion explicitly. In this study, we propose a new flight delay model, Multi-layer Air Traffic Network Delay (MATND) model, to capture the impact of en-route congestion on flight delays over an air traffic network. This model is developed by a data-driven approach, taking aircraft tracking data and flight schedules as inputs to characterize a national air traffic network, as well as a system-level model approach, modeling the delay process based on queueing theory. The two approaches combined make the network delay model a close representation of reality and easy-to-implement for what-if scenario analysis. The proposed MATND model includes 1) a data-driven method to learn a network composed of airports, en-route congestion points, and air corridors from aircraft tracking data, 2) a stochastic and dynamic queuing network model to calculate flight delays and track their propagation at both airports and in en-route congestion areas, in which the delays are computed via a space-time decomposition method. Using one month of historical aircraft tracking data over China's air traffic network, MATND is tested and shows to give an accurate quantification of delays of the national air traffic network. "What-if" scenario analyses are conducted to demonstrate how the proposed model can be used for the evaluation of air traffic network improvement strategies, where the manipulation of reality at such a scale is impossible. Results show that MATND is computationally efficient, well suited for evaluating the impact of policy alternatives on system-wide delay at a macroscopic level.

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