Incorporating controller intent into a runway incursion prevention system

K. Feigh, D. Bruneau
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引用次数: 3

Abstract

This work presents a solution to prevent and reduce the severity of runway incursions. This solution, called the Controller Clearance Broadcast System (CCBS), addresses the root causes of many runway incursions as well as mitigating the impact of those that do occur. Specifically, the CCBS design incorporates controller intent, by serving as an intermediary system to capture controller clearances, vet them for appropriateness, and then broadcast them via both analog radio channels and digitally via ADS-B. CCBS is anticipated to benefit the air transportation system by: 1) increasing operational efficiency; 2) decreasing the numbers of pilot deviation and operational errors; 3) decreasing radio channel congestion; and 4) increasing the ability to ‘remote tower’ smaller airports. The CCBS includes visual displays for tower controllers and pilots, an expert system to improve operational efficiency, a critiquing system to prevent erroneous clearances, and an alerting system to provide warnings to both pilots and controllers about clearance deviations. The system is highly flexible, and accommodates various levels of aircraft and airport equipage, to allow a gradual transition from analog to digital based clearances. A software prototype of the CCBS has been created and shown the feasibility of the basic clearance capture functionality. Further research into the creation of a fully functional CCBS prototype is warranted as it will address a number of areas of research important for use in NextGen.
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将管制员意图纳入跑道入侵预防系统
这项工作提出了一个解决方案,以防止和减少严重的跑道入侵。这一解决方案被称为管制员清场广播系统(CCBS),它解决了许多跑道入侵的根本原因,并减轻了确实发生的影响。具体来说,CCBS设计结合了控制器意图,作为一个中介系统来捕获控制器间隙,审查它们的适当性,然后通过模拟无线电频道和ADS-B数字广播它们。预计CCBS将通过以下方式使航空运输系统受益:1)提高运营效率;2)减少飞行员偏差和操作错误的次数;3)减少无线电信道拥塞;4)提高“远程塔台”较小机场的能力。CCBS包括塔台管制员和飞行员的视觉显示,一个提高操作效率的专家系统,一个防止错误放行的批评系统,以及一个向飞行员和管制员提供有关放行偏差警告的警报系统。该系统高度灵活,可适应不同级别的飞机和机场设备,允许从模拟到基于数字的通关逐步过渡。建立了CCBS的软件原型,并展示了基本间隙捕获功能的可行性。进一步研究创建功能齐全的CCBS原型是有必要的,因为它将解决NextGen中重要的一些研究领域。
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