实现空中交通管理态势和操作感知的4D轨迹协商

Xiaodong Lu, K. Morioka, N. Kanada, T. Koga
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引用次数: 0

摘要

为了提高安全性、运营经济性和环境可持续性,国际民用航空组织(ICAO)建立了一个协作环境,不仅在地对地系统之间,而且在飞机和相应的空中交通管理系统之间,促进全面信息的共享。然而,现有的空中交通管制系统严重依赖于语音通信,难以有效地协调各系统和利益相关者之间的四维轨迹(4DT),以满足基于轨迹的操作(TBO)的需求。本文确定了互联飞机的概念,概述了潜在的实施挑战,并探索了可以增强态势和作战感知的附加功能。在现场飞行实验的基础上,提出了利用所提出的系统架构和IP数据链服务验证飞机与地面系统之间的协调方法和信息交换的方法。最后,我们讨论了建立协作操作环境以通过系统范围的信息管理环境实现4DT协商需要解决的挑战和问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
4D Trajectory Negotiation to Achieve Situational and Operational Awareness for Air Traffic Management
In order to improve safety, operational economics, and environmental sustainability, the International Civil Aviation Organization (ICAO) has established a collaborative environment that promotes the sharing of comprehensive information, not only between ground-to-ground systems but also between aircrafts and corresponding air traffic management systems. However, the existing Air Traffic Control (ATC) system heavily relies on voice communication, which is difficult to satisfy the demands of Trajectory Based Operations (TBO) by effectively coordinating the 4-Dimensional Trajectory (4DT) across various systems and stakeholders. This paper identifies the concept of connected aircraft, outlines potential implementation challenges, and explores additional functional capabilities that could enhance situational and operational awareness. Moreover, based on the live flight experiment, the validation of coordination method and information exchange between the aircraft and ground systems by using proposed system architecture and IP data link service are presented. Finally, we discuss the challenges and issues that need to be addressed for establishing a collaborative operational environment to realize 4DT negotiation through a system-wide information management environment.
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