空中交通管制
自由飞行
国家空域系统
遗传算法
空中交通管理
计算机科学
灵活性(工程)
工作量
空中交通管制员
分离(统计)
实时计算
模拟
工程类
航空航天工程
机器学习
操作系统
统计
数学
作者
Marina Sergeeva,Daniel Delahaye,Catherine Mancel,Andrija Vidosavljević
标识
DOI:10.1016/j.jtte.2017.05.002
摘要
With the continuous air traffic growth and limits of resources, there is a need for reducing the congestion of the airspace systems. Nowadays, several projects are launched, aimed at modernizing the global air transportation system and air traffic management. In recent years, special interest has been paid to the solution of the dynamic airspace configuration problem. Airspace sector configurations need to be dynamically adjusted to provide maximum efficiency and flexibility in response to changing weather and traffic conditions. The main objective of this work is to automatically adapt the airspace configurations according to the evolution of traffic. In order to reach this objective, the airspace is considered to be divided into predefined 3D airspace blocks which have to be grouped or ungrouped depending on the traffic situation. The airspace structure is represented as a graph and each airspace configuration is created using a graph partitioning technique. We optimize airspace configurations using a genetic algorithm. The developed algorithm generates a sequence of sector configurations for one day of operation with the minimized controller workload. The overall methodology is implemented and successfully tested with air traffic data taken for one day and for several different airspace control areas of Europe.
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