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Simulation Results for Airborne Precision Spacing along Continuous Descent Arrivals

机译:沿连续下降到达的机载精密间隔的仿真结果

摘要

This paper describes the results of a fast-time simulation experiment and a high-fidelity simulator validation with merging streams of aircraft flying Continuous Descent Arrivals through generic airspace to a runway at Dallas-Ft Worth. Aircraft made small speed adjustments based on an airborne-based spacing algorithm, so as to arrive at the threshold exactly at the assigned time interval behind their Traffic-To-Follow. The 40 aircraft were initialized at different altitudes and speeds on one of four different routes, and then merged at different points and altitudes while flying Continuous Descent Arrivals. This merging and spacing using flight deck equipment and procedures to augment or implement Air Traffic Management directives is called Flight Deck-based Merging and Spacing, an important subset of a larger Airborne Precision Spacing functionality. This research indicates that Flight Deck-based Merging and Spacing initiated while at cruise altitude and well prior to the Terminal Radar Approach Control entry can significantly contribute to the delivery of aircraft at a specified interval to the runway threshold with a high degree of accuracy and at a reduced pilot workload. Furthermore, previously documented work has shown that using a Continuous Descent Arrival instead of a traditional step-down descent can save fuel, reduce noise, and reduce emissions. Research into Flight Deck-based Merging and Spacing is a cooperative effort between government and industry partners.
机译:本文介绍了快速仿真实验和高保真仿真器验证的结果,该仿真验证了将连续下降降落的飞机流从通用空域汇入达拉斯-沃思堡的跑道的情况。飞机根据基于机载的间隔算法进行了小幅度的速度调整,以便准确地在其跟随流量之后的指定时间间隔内达到阈值。这40架飞机在四个不同航线之一上以不同的高度和速度进行了初始化,然后在飞行连续下降到达时在不同的点和高度合并。使用飞行甲板设备和程序来增强或实施空中交通管理指令的这种合并和间隔称为基于飞行甲板的合并和间隔,这是较大的机载精确间隔功能的重要子集。这项研究表明,在巡航高度以及在终端雷达进场控制进入之前就进行的基于飞行甲板的合并和间隔可以极大地有助于飞机在指定的时间间隔内以较高的精度和一定的速度到达跑道入口。减少了飞行员的工作量。此外,先前记录的工作表明,使用连续下降下降代替传统的下降下降可以节省燃料,减少噪音并减少排放。基于飞行甲板的合并和间距研究是政府与行业合作伙伴之间的合作。

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