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Performance Comparison of Interval Management Concepts Using an Optimization-Based Scheduler in Terminal Airspace

机译:终端空域中基于优化调度程序的间隔管理概念的性能比较

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A rapid increment in the amount of air traffic flows in aviation markets causes severe problems of flight delays. As part of an effort to resolve the problems, advanced Interval Management (IM) concept for Air Traffic Management (ATM) has drawn attentions. It focuses on reducing aircraft separation amount by fully taking advantages of modern avionics of flight management system and ADS-B (Automatic Dependent Surveillance-Broadcasting) capabilities. The main purpose of this paper is to understand the multidirectional performance metrics including the efficiency of airspace usage and aircraft scheduling performance, which should be balanced when the advanced IM concepts are applied to the practical demand set of flights which composed of different classes. To impove the scheduling performance, the optimization-based scheduling planner is utilized and predicts the optimum Scheduled Times of Arrival (STAs) at the pre-defined scheduling points in a given route structure. The scheduling planner is integrated in a dynamic planner (DP) by interacting with the real-time simulation algorithm to emulate the flight time advancement in a series of update cycles until all aircraft arrive at the runways. The realtime simulation produces the Actual Times of Arrival (ATAs) in consideration of the uncertainties during flight, and the computed ATAs become the initial conditions of the scheduling planner for the next cycle. Combined with the various IM concepts, the DP computes the relative efficiency of the flight scenarios that have different IM strategies corresponding to the level of equipage of the aircraft.
机译:航空市场中空中交通流量的迅速增加导致航班延误的严重问题。为了解决这些问题,空中交通管理(ATM)的高级间隔管理(IM)概念引起了人们的注意。它致力于充分利用飞行管理系统的现代航空电子设备和ADS-B(自动相关监视-广播)功能来减少飞机分离量。本文的主要目的是了解多方向性能指标,包括空域使用效率和飞机调度性能,当将高级IM概念应用于由不同类别组成的实际航班需求集时,应该平衡这些性能指标。为了提高调度性能,利用了基于优化的调度计划器,并预测了给定路由结构中预定义调度点的最佳到达时间(STA)。通过与实时仿真算法进行交互,将调度计划器集成到动态计划器(DP)中,以模拟一系列更新周期中的飞行时间进度,直到所有飞机到达跑道为止。考虑到飞行过程中的不确定性,实时仿真会生成实际到达时间(ATA),而计算出的ATA成为下一个周期的计划制定者的初始条件。结合各种IM概念,DP计算具有与飞机装备水平相对应的不同IM策略的飞行场景的相对效率。

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