通过电子显示器进行程序性海洋空中交通管制

B. Wise
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引用次数: 0

摘要

由于在广阔的海洋上没有雷达或其他主动位置监测手段,海洋空中交通管制(ATC)的操作以程序分离技术为基础。海洋分离技术是在雷达出现之前发展起来的国内分离技术。他们严重依赖于使用纸质飞行条来监控飞行进度,确定分离,识别潜在的冲突,并计划未来的许可。这些纸条最初由海洋显示和规划系统(ODAPS)打印,该系统为管制员提供飞行数据处理、数据通信和情况显示。但是,管制员必须手动维护纸质飞行单上的飞行数据和ODAPS数据库中包含的信息。在繁忙的交通情况下,这些手动密集型任务消耗了控制器的大量可用时间,并且由于输入错误而引入了错误的可能性,并增加了数据不一致的可能性。为了减少或消除对纸质飞行条的要求,以及管制员对这些纸条的手工标记,系统必须提供功能,以取代或补充目前飞行条所支持的流程。本文确定了图形显示和控制器工具,这些工具将减少或消除对纸质飞行纸条的需求,以便在程序上与玻璃环境分离,监控飞机的飞行进度及其存档的飞行计划。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Procedural oceanic air traffic control via electronic displays
Since radar or other means of active position monitoring are not available over the large expanses of the ocean, oceanic air traffic control (ATC) operations are based on procedural separation techniques. Oceanic separation techniques are derived from the techniques developed for domestic separation prior to the advent of radar. They are heavily dependent upon the use of paper flight strips to monitor flight progress, determine separation, identify potential conflicts, and plan future clearances. The strips are initially printed by the oceanic display and planning system (ODAPS) which provides flight data processing, data communications, and a situation display for the controller. The controller, however, must manually maintain both the flight data on the paper flight strips and the information contained in ODAPS database. These manually intensive tasks consume much of the controller's available time during heavy traffic situations, and introduce the possibility of error due to entry mistakes and increase the potential for inconsistent data. To reduce or remove the requirements for paper flight strips, and the manual markings of these strips by the controller, a system must provide functionality that will replace or supplement the processes presently supported by the flight strips. This paper identifies graphical displays and controller tools that would reduce or eliminate the need for paper flight strips to monitor the progress of an aircraft with its filed flight plan in a procedural separation from the glass environment.
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