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Trajectory Assessment and Modification Tools for Next Generation Air Traffic Management Operations

机译:下一代空中交通管理运营的轨迹评估和修改工具

摘要

This paper reviews three Next Generation Air Transportation System (NextGen) based high fidelity air traffic control human-in-the-loop (HITL) simulations, with a focus on the expected requirement of enhanced automated trajectory assessment and modification tools to support future air traffic flow management (ATFM) planning positions. The simulations were conducted at the National Aeronautics and Space Administration (NASA) Ames Research Centers Airspace Operations Laboratory (AOL) in 2009 and 2010. The test airspace for all three simulations assumed the mid-term NextGenEn-Route high altitude environment utilizing high altitude sectors from the Kansas City and Memphis Air Route Traffic Control Centers. Trajectory assessment, modification and coordination decision support tools were developed at the AOL in order to perform future ATFM tasks. Overall tool usage results and user acceptability ratings were collected across three areas of NextGen operatoins to evaluate the tools. In addition to the usefulness and usability feedback, feasibility issues, benefits, and future requirements were also addressed. Overall, the tool sets were rated very useful and usable, and many elements of the tools received high scores and were used frequently and successfully. Tool utilization results in all three HITLs showed both user and system benefits including better airspace throughput, reduced controller workload, and highly effective communication protocols in both full Data Comm and mixed-equipage environments.
机译:本文回顾了三个基于下一代航空运输系统(NextGen)的高保真空中交通管制在环(HITL)仿真,重点关注增强的自动轨迹评估和修改工具对支持未来空中交通的预期要求流程管理(ATFM)规划职位。这些模拟是在2009年和2010年在美国国家航空航天局(NASA)艾姆斯研究中心空域运营实验室(AOL)进行的。所有三个模拟的测试空域均假设了利用高空扇区的中期NextGenEn-Route高空环境来自堪萨斯城和孟菲斯航空交通管制中心。 AOL开发了轨迹评估,修改和协调决策支持工具,以执行未来的ATFM任务。跨NextGen操作集的三个区域收集了工具的总体使用结果和用户可接受程度,以评估工具。除了有用性和可用性反馈之外,还讨论了可行性问题,收益和未来需求。总体而言,工具集被评为非常有用和可用,并且工具的许多元素都获得了很高的评分,并且被频繁且成功地使用。所有三个HITL的工具利用率结果均显示出用户和系统的好处,包括在完整的Data Comm和混合设备环境中更好的空域吞吐量,减少的控制器工作量以及高效的通信协议。

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