Trajectory Specification for Terminal Air Traffic Control: Conflict Detection and Resolution.

Q2 Social Sciences Journal of Air Transportation Pub Date : 2019-01-31 DOI:10.2514/1.D0132
Russell A Paielli, Heinz Erzberger
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Abstract

Trajectory Specification is a method of specifying aircraft trajectories with tolerances such that the position at any given time in flight is constrained to a precisely defined bounding space. The bounding space is defined by tolerances relative to a reference trajectory that specifies position as a function of time. The tolerances are dynamic and are based on the aircraft navigation capabilities and the Traffic situation. Trajectory Specification can guarantee safe separation for an arbitrary period of time even in the event of an air Traffic control (ATC) system or datalink failure. It can help to achieve the high level of safety and reliability needed for ATC automation, and it can also reduce the reliance on tactical ATC backup systems during normal operation. This paper presents algorithms and software for detecting and resolving conflicts between specified trajectories in the terminal airspace serving a major airport. In a fast-time simulation of a full day of Traffic in a major terminal airspace, all conflicts were resolved in near real time, demonstrating the computational feasibility and the preliminary operational feasibility of the concept.

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终端空中交通管制的轨迹规范:冲突检测与解决
轨迹规范是一种利用公差指定飞机轨迹的方法,从而将飞行中任何给定时间的位置限制在一个精确定义的边界空间内。边界空间由相对于参考轨迹的公差定义,参考轨迹将位置指定为时间函数。公差是动态的,以飞机导航能力和交通状况为基础。即使在空中交通管制(ATC)系统或数据链路发生故障的情况下,轨迹规范也能保证在任意时间段内的安全分离。它有助于实现空管自动化所需的高度安全性和可靠性,还能减少正常运行期间对战术空管备份系统的依赖。本文介绍了用于检测和解决服务于某大型机场的终端空域内指定轨迹之间冲突的算法和软件。在对主要航站空域全天交通进行的快速模拟中,所有冲突都在近乎实时的时间内得到了解决,证明了这一概念在计算上的可行性和在运行上的初步可行性。
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来源期刊
Journal of Air Transportation
Journal of Air Transportation Social Sciences-Safety Research
CiteScore
2.80
自引率
0.00%
发文量
16
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