最小偏离间隔条件下地面计量的战术调度

Yeonju Eun, Daekeun Jeon, Hyounkyoung Kim, Y. Jung, Hanbong Lee, Zhifan Zhu, Vaishali Hosagrahara
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引用次数: 0

摘要

MDI (Minimum Departure Interval)和MIT (Miles-In-Trail)是常用的交通管理工具。它们都要求最小的发车间隔,以满足特定的交通条件。MDI限制是起飞之间的时间间隔要求,通常在相同的标准仪表起飞(SID)上,而MIT限制是飞机之间的距离间隔要求,包括但不限于起飞航班,以满足与飞行路径或目的地相关的特定标准。在韩国仁川国际机场(IATA代码:ICN), 92%的出发航班都要安装mdi。它们涉及具体的标准,不仅包括具有相同的SID,还包括满足飞行路线和目的地所规定的其他条件。为了解决复杂的MDI限制,韩国航空航天研究所(KARI)一直在开发和改进ICN地面计量的战术调度程序,为MDI下的起飞和起飞提供适当的目标时间。本文描述了ICN的MDI要求,开发了一种启发式调度算法来处理MDI限制,并通过快速仿真对算法的性能进行了评估。性能评价结果表明,提出的启发式算法能够提供符合MDI限制的表面计量方案,且性能没有明显下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Tactical Scheduler for Surface Metering under Minimum Departure Interval Restrictions
Minimum Departure Interval (MDI) and Miles-In-Trail (MIT) are common traffic management tools. They both require minimum separation between departures to meet specific traffic conditions. The MDI restriction is a time separation requirement between departures, usually on the same Standard Instrument Departure (SID), whereas the MIT restriction is a distance separation requirement between aircraft, including but not limited to departure flights, to meet specific criteria associated with flight path or destination. At Incheon International Airport (IATA code: ICN) in South Korea, MDIs are imposed on 92% of departure flights. They involve specific criteria including not only having identical SID, but also satisfying other conditions, imposed on the flight path and destination. To address complicated MDI constraints, Korea Aerospace Research Institute (KARI) has been developing and improving a tactical scheduler for surface metering at ICN to provide appropriate target times for pushbacks and takeoffs for departure flights under MDIs. This paper describes the MDI requirements at ICN, the development of a heuristic scheduling algorithm to work with the MDI restrictions, and the performance evaluation of the algorithm through fast-time simulations. The performance evaluation results indicate that the proposed heuristic algorithm can provide the surface metering schedules that comply with the MDI restrictions without significant performance degradation.
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