探索基于飞行甲板尾流湍流态势感知工具

C. Lunsford, M. Koch, H. Stassen, S. Estes, B. Hogan
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摘要

随着下一代概念向增加航线和终端吞吐量的方向发展,尾流湍流分离可能成为追求容量改进的限制因素。更好地了解尾流的可能位置(对空中交通管制员和飞行员来说)可以帮助提供与尾流湍流的安全隔离,同时避免对操作造成不必要的限制。尾流湍流避免自动化(WTAA)研究项目由MITRE为美国联邦航空管理局(FAA)开展的任务导向调查和实验(MOIE)工作进行,演示了使用现有的FAA和美国国家航空航天局(NASA)尾流湍流研究和算法来估计给定特定飞机和气象数据的尾流特性。该功能用于驱动驾驶员座舱交通信息显示(CDTIs)上的尾流信息显示。本文概述了现有的FAA和NASA尾流研究,并描述了尾流工具的发展以及用于向飞行机组提供尾流态势感知的方法。讨论了从人在环(HITL)模拟中获得的反馈,并提出了进一步发展和纳入FAA和NASA尾流研究进展的建议。对于研究期间开发的一个到达程序,分析了各个机场的容量影响,并估计了这些尾流工具可能实现的到达程序对系统范围的延迟影响。
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Exploring a flight deck based wake turbulence situational awareness tool
As NextGen concepts move toward increasing en route and terminal throughput, wake turbulence separation may become a limiting factor in the pursuit of capacity improvements. Better knowledge of the probable location of wakes (for air traffic controllers as well as pilots) could help provide safe separation from wake turbulence while avoiding unnecessary restrictions to operations. The Wake Turbulence Avoidance Automation (WTAA) research project, performed under MITRE's Mission Oriented Investigation and Experimentation (MOIE) work for the Federal Aviation Administration (FAA), demonstrated the use of existing FAA and the National Aeronautics and Space Administration (NASA) wake turbulence research and algorithms to estimate wake characteristics given specific aircraft and meteorological data. This capability was used to drive displays of wake information on pilot Cockpit Displays of Traffic Information (CDTIs). This paper provides an overview of the existing FAA and NASA wake research that was leveraged and describes the development of the wake tool and the methods used to provide wake situational awareness to flight crews. Feedback obtained from the human in the loop (HITL) simulations is discussed and recommendations for further development and incorporation of FAA and NASA advances in wake research are provided. For one arrival procedure developed during the research, an analysis of the capacity impact at individual airports and an estimate of the system-wide delay impact of possible arrival procedures enabled by these wake tools is presented.
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