一种基于飞机轨迹确定机场跑道使用/配置的算法

Raúl Torres, P. C. Álvarez-Esteban, Nicolás Peña
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引用次数: 0

摘要

航空运输增长是由不同的来源(例如世界银行[1],最新的Eurocontrol报告[2])描述的一个现实。在保持或提高安全性的同时提高空中交通运力,一项必不可少的举措是引入预测分析,使航空公司能够以先发制人的方式动态适应不断变化的环境。这项任务的一个重要部分是模拟机场的运作和相应的计划。特别是跑道的使用和/或配置是这些操作的重要方面。例如,跑道使用的先验知识可以改善飞行计划优化器的输出。当然,要创建任何模型或预测器,都需要真实数据。然而,大多数时候,关于跑道历史使用/配置的详细信息是不可访问的,不可靠的,或者属于国家ATC服务提供商。然后,考虑到大多数机场缺乏可行的目标,采用大规模预测方法有一个重要的缺点。因此,这项工作的目标是引入一种可访问的、易于实现的算法,允许基于飞机通过雷达或ADS- B技术传输的数据对任何机场的跑道使用/配置进行历史重建,即使在轨迹数据不一致的情况下也是如此。我们研究了算法的两个输出所执行的评估质量:1)与西班牙空管服务提供商(ENAIRE)提供的2016年10月期间在马德里巴拉哈斯和巴塞罗那埃尔普拉特两个西班牙机场降落或起飞的每个航班的报告相比,测量跑道使用准确性。2)比较荷兰空域监管机构(LVNL)在2018年2月、4月和8月三个不同月份报告的荷兰-史基浦机场跑道配置。结果为这两种类型的评估提供了97%以上的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Algorithm to Determine Airport Runway Usage/Configuration Based on Aircraft Trajectories
Air transportation growth is a reality described by different sources (e.g. The World Bank [1], the latest Eurocontrol report [2]). One essential initiative required to improve air traffic capacity while maintaining or increasing safety is to introduce predictive analytics that enable a dynamic adaptation of airline operations in a preemptive manner to an ever changing environment. An important part of this task is to model airport operations and plan accordingly. Particularly runway usage and/or configuration are important aspects of these operations. For example, prior knowledge of runway usage could improve flight plan optimizers outputs. Of course, to create any model or predictor, ground truth data is required. However most of the time, detailed information about runway historical usage/configuration is inaccessible, unreliable or it belongs to national ATC services providers. Then, thinking on a high-scale forecast methodology there is an important drawback given the lack of a feasible target for most of the airports. Thus, the goal of this work is to introduce an accessible, easy to implement algorithm that allows historical reconstruction of runway usage/configuration for any airport based on data transmitted from aircrafts through either Radar or ADS- B technologies, even when the track data is not consistent. We study the quality of the assessment performed by the two outputs of the algorithm: 1) Measuring runway usage accuracy in comparison to the report given by the Spanish ATC service provider (ENAIRE) for each flight landing to or taking off from two Spanish airports, Madrid-Barajas and Barcelona-El Prat, during October 2016. 2) Comparing the Netherlands-Schiphol runway configuration reported by the Netherlands airspace regulator (LVNL) for three different months: February, April and August 2018. The results provide values above 97% of accuracy for both types of assessment.
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