在基于性能的ATM操作中使用飞机意图数据

D. Kirk, W. Arthur
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引用次数: 2

摘要

随着飞行甲板技术的进步,提高了通信、导航和监视性能,以及地面自动化的进步,未来的国家空域系统(NAS)操作可以基于比今天的NAS更精确的飞机轨迹。基于轨迹的操作产生的精度将提高交通流量管理(TFM)和空中交通管制(ATC)操作的效率,以及TFM和ATC服务提供商的生产力。基于性能的空中交通管理(P-ATM)是NAS的一套能力、验证活动和操作概念,可促进并利用驾驶舱和地面自动化的进步。这是向下一代航空运输系统(NextGen)迈出的一步,该系统已经在模拟环境中得到了验证,作为一种必要的、理想的、可实现的可扩展解决方案,它展现了巨大的前景。向NextGen发展的关键改进是飞机意图信息的传输及其在空中和地面系统中的使用,以支持基于轨迹的操作。本文讨论了在P-ATM功能上下文中支持这种增强的三个研究和开发领域。这些领域是:(1)开发用于提供目标状态意图数据的航空电子接口定义。(2)将飞机空速的计划过渡作为其意图信息的一部分的重要性。(3)有效编码意图信息的机制,以支持其在P-ATM时间框架内的传递。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Use of aircraft intent data for Performance-based ATM operations
With the advancement of flight deck technologies that improve communication, navigation, and surveillance performance, as well as advancements in ground automation, future National Airspace System (NAS) operations can be based on more accurate aircraft trajectories than are available in today's NAS. The precision that results from trajectory-based operations will improve the efficiency of traffic flow management (TFM) and air traffic control (ATC) operations, as well as the productivity of TFM and ATC service providers. Performance-based air traffic management (P-ATM) is a set of capabilities, validation activities, and an operational concept for the NAS that promotes and takes advantage of flight deck and ground automation advancements. It is a step toward Next Generation Air Transportation System (NextGen) that has been demonstrated in a simulation environment and shows great promise as a scalable solution that is necessary, desirable, and achievable. A key enhancement in the progression towards NextGen is the transmission of aircraft intent information and its use in both air and ground-based systems to support trajectory-based operations. This paper addresses three areas of research and development to support this enhancement in the context of the P-ATM capabilities. These areas are: (1) Development of avionics interface definitions for the provision of target state intent data. (2) Importance of including planned transitions in the aircraft's airspeed as part of its intent information. (3) Mechanisms for efficiently encoding intent information to support its delivery in the P-ATM timeframe.
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