Optimizing Flight Departure Delay and Route Selection Under En Route Convective Weather

A. Mukherjee, B. Sridhar, S. Grabbe
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引用次数: 2

Abstract

*† ‡ This paper presents a linear Integer Programming model for managing air traffic flow in the United States. The decision variables in the model are departure delays and predeparture reroutes of aircraft whose trajectories are predicted to cross weather-impacted regions of the National Airspace System. The model assigns delays to a set of flights while ensuring their trajectories are free of any conflicts with weather. In a deterministic setting, there is no airborne holding due to unexpected weather incursion in a flight’s path. The model is applied to solve a large-scale traffic flow management problem with realistic weather data and flight schedules. Experimental results indicate that allowing rerouting can reduce departure delays by nearly 57%, but it is associated with an increase in total airborne time due to longer routes flown by aircraft. The computation times to solve this problem were significantly lower than those reported in the earlier studies.
航路对流天气下航班延误与航路选择优化研究
*††本文提出了一个用于管理美国空中交通流量的线性整数规划模型。模型中的决策变量是飞机的起飞延误和起飞前航线,其轨迹被预测将穿过国家空域系统的天气影响区域。该模型将延误时间分配给一组航班,同时确保它们的飞行轨迹不受天气影响。在确定性环境中,由于飞行路径上的意外天气入侵,不存在空中滞留。该模型用于解决具有真实天气数据和航班时刻表的大规模交通流管理问题。实验结果表明,允许改变航线可以减少近57%的起飞延误,但由于飞机飞行的路线更长,这与总飞行时间的增加有关。求解该问题的计算时间明显低于早期研究报告的计算时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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