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Traffic Characterization on Airport Surface Using Aircraft Ground Trajectories

机译:利用飞机地面轨迹在机场表面进行交通流量表征

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The continuous increase in air traffic is pressuring airport operators to augment their capacity while still complying with safety regulations. To achieve this goal, operators need a thorough knowledge of how the airport surface is put to use (i.e., how aircraft are routed) under various conditions. We propose an approach to characterizing traffic in an airport from radar-collected aircraft ground trajectories. The approach does not require prior knowledge of the airport's topology (since it reconstructs it from the available data) and uses network-constrained trajectory clustering to produce groups of similar trajectories that represent frequently traveled routes in the airport. Our main findings from experimental results on real data from the Paris-Charles-de-Gaulle airport (France) indicate that the retrieved routes are highly linked to exploitation constraints (maneuver undertaken by the aircraft, runway, and configuration) and that the approach can help uncover the existence of less traveled alternative routes that can be useful for rerouting purposes.
机译:空中交通流量的不断增加迫使机场运营商在保持其安全性的同时增加了运力。为了实现这一目标,运营商需要全面了解如何在各种条件下使用机场地面(即,如何对飞机进行航线布置)。我们提出了一种根据雷达收集的飞机地面轨迹来表征机场交通流量的方法。该方法不需要事先了解机场的拓扑结构(因为它是从可用数据中重建的),并且使用网络约束的轨迹聚类来生成代表机场中经常旅行的路线的相似轨迹组。我们对来自法国巴黎戴高乐机场的真实数据的实验结果的主要发现表明,检索到的路线与开发限制(飞机,跑道和配置所采取的机动)高度相关,并且该方法可以帮助发现存在较少人走的替代路线,这些路线可用于重新路由。

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