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Aircraft Configuration and Flight Crew Compliance with Procedures While Conducting Flight Deck Based Interval Management (FIM) Operations

机译:进行基于驾驶舱的间隔管理(FIM)操作时,飞机配置和飞行机组人员遵守程序

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摘要

Flight deck based Interval Management (FIM) applications using ADS-B are being developed to improve both the safety and capacity of the National Airspace System (NAS). FIM is expected to improve the safety and efficiency of the NAS by giving pilots the technology and procedures to precisely achieve an interval behind the preceding aircraft by a specific point. Concurrently but independently, Optimized Profile Descents (OPD) are being developed to help reduce fuel consumption and noise, however, the range of speeds available when flying an OPD results in a decrease in the delivery precision of aircraft to the runway. This requires the addition of a spacing buffer between aircraft, reducing system throughput. FIM addresses this problem by providing pilots with speed guidance to achieve a precise interval behind another aircraft, even while flying optimized descents. The Interval Management with Spacing to Parallel Dependent Runways (IMSPiDR) human-in-the-loop experiment employed 24 commercial pilots to explore the use of FIM equipment to conduct spacing operations behind two aircraft arriving to parallel runways, while flying an OPD during high-density operations. This paper describes the impact of variations in pilot operations; in particular configuring the aircraft, their compliance with FIM operating procedures, and their response to changes of the FIM speed. An example of the displayed FIM speeds used incorrectly by a pilot is also discussed. Finally, this paper examines the relationship between achieving airline operational goals for individual aircraft and the need for ATC to deliver aircraft to the runway with greater precision. The results show that aircraft can fly an OPD and conduct FIM operations to dependent parallel runways, enabling operational goals to be achieved efficiently while maintaining system throughput.
机译:正在开发使用ADS-B的基于驾驶舱的间隔管理(FIM)应用程序,以提高国家空域系统(NAS)的安全性和容量。 FIM有望通过为飞行员提供技术和程序,以精确地将前一架飞机落后特定点的间隔提供给飞行员,从而提高NAS的安全性和效率。同时但独立地,正在开发优化轮廓下降(OPD)以帮助减少燃料消耗和噪音,但是,飞行OPD时可用的速度范围会导致飞机向跑道的交付精度下降。这就要求在飞机之间增加一个间隔缓冲器,从而降低系统吞吐量。 FIM通过为飞行员提供速度指导来解决这一问题,即使在飞行最佳下降时也能在另一架飞机之后实现精确的间隔。具有平行从属跑道间距的间隔管理(IMSPiDR)在环实验采用了24名商业飞行员来探索FIM设备的使用,以在两架到达平行跑道的飞机后进行间隔操作,同时在高空飞行期间驾驶OPD密度运算。本文描述了试点业务变化的影响;特别是配置飞机,遵守FIM操作程序以及对FIM速度变化的响应。还讨论了飞行员错误使用的显示FIM速度的示例。最后,本文研究了实现单个飞机的航空公司运营目标与ATC将飞机更精确地交付至跑道的需求之间的关系。结果表明,飞机可以驾驶OPD并在相关的平行跑道上进行FIM操作,从而在保持系统吞吐量的同时有效地实现了操作目标。

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