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An analysis of automation for monitoring Area Navigation (RNAV) and required navigation performance (RNP) terminal operations

机译:监控区域导航(RNAV)的自动化分析和所需导航性能(RNP)终端操作

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摘要

As stated in the Roadmap for Performance-Based Navigation, the Federal Aviation Administration (FAA) is committed to implementing Area Navigation (RNAV) and Required Navigation Performance (RNP) procedures throughout the National Airspace System (NAS) [1]. RNAV and RNP procedures provide lateral guidance as well as vertical and speed restrictions at waypoints where necessary along arrival or departure procedures. As compared to conventional vectoring operations where the terminal controller issues heading, speed, and altitude clearances, RNAV procedures reduce the number of clearances issued by air traffic control (ATC). The MITRE Corporation’s Center for Advanced Aviation System Development (CAASD) in coordination with ATC subject matter experts from FAA operational facilities has conducted research to define automation needs for monitoring RNAV and RNP operations. The needs focus on ensuring controllers maintain situation awareness in environments with high RNAV and RNP participation and increasing traffic levels. One major function of the automation is to provide an alert to a radar controller when an aircraft is deviating from its assigned RNAV or RNP procedure. This paper presents the automation needs associated with monitoring RNAV and RNP operations, and the results from human-in-the-loop experiments that measured latency times in detecting deviation events in simulated RNAV and RNP environments with and without the alerting automation. Results indicate that latency times associated with detecting pilot deviations were reduced in conditions with the monitoring automation. Subjective workload measures were not different in any significant way.
机译:正如基于绩效的绩效导航的路线图所述,联邦航空管理局(FAA)致力于在全国航空公司系统(NAS)中实施区域导航(RNAV)和所需的导航性能(RNP)程序[1]。 RNAV和RNP程序提供横向指导以及在抵达或离开程序所必需的航点处的垂直和速度限制。与终端控制器发出标题,速度和高度间隙的传统矢量操作相比,RNAV程序减少了空中交通管制(ATC)发出的间隙数。仲裁公司的先进航空系统开发中心(CAASD)与FAA运营设施的ATC主题专家协调,已经进行了研究,以定义监测RNAV和RNP运营的自动化需求。需求重点是确保控制器在高RNAV和RNP参与的环境中保持情况,并增加流量水平。自动化的一个主要功能是当飞机偏离其分配的RNAV或RNP程序时向雷达控制器提供警报。本文介绍了与监控RNAV和RNP操作相关的自动化需求,以及来自循环实验的结果,这些实验测量了在模拟RNAV和RNP环境中的偏差事件中有和没有警报自动化的延迟时间。结果表明,在监测自动化的条件下,减少了与检测导频偏差相关的延迟时间。主观工作负载措施没有任何重要的方式不同。

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