4D continuous descent operations supported by an electronic flight bag: A human-in-the-loop study

X. Prats, Bianca Bendris, Ramon Dalmau, J. Montolio, Brent Day, H. Lenz, R. Kohrs
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引用次数: 8

Abstract

This paper describes a set of flight simulation experiments carried out with the DLR's Generic Cockpit Simulator (GECO). A new concept named time and energy managed operations (TEMO), which aims to enable advanced four dimensional (4D) continuous descent operations (CDO), was evaluated after three full days of experiments with qualified pilots. The experiment focused to investigate the possibility of using a 4D-controller on a modern aircraft with unmodified or only slightly modified avionic systems. This was achieved by executing the controller in an Electronic Flight Bag (EFB) and using the pilot to “close the loop” by entering speed and other advisories into the autopilot Flight Control Unit (FCU). The outcome of the experiments include subjective (questionnaires answered by pilots) and objective (trajectory logs) data. Data analysis showed a very good acceptance (both in terms of safety and operability of the procedure) from the participating crews, only with minor suggestions to be improved in future versions of the controller and the speed advisories update rates. Good time accuracy all along the descent trajectory was also observed.
电子飞行包支持的4D连续下降操作:人在环研究
本文介绍了一套在DLR通用座舱模拟器(GECO)上进行的飞行仿真实验。一种名为时间和能量管理操作(TEMO)的新概念,旨在实现先进的四维(4D)连续下降操作(CDO),在合格的飞行员进行了整整三天的实验后进行了评估。实验的重点是研究在现代飞机上使用未修改或仅稍微修改的航空电子系统的4d控制器的可能性。这是通过执行电子飞行包(EFB)中的控制器,并使用飞行员通过将速度和其他建议输入自动驾驶飞行控制单元(FCU)来“关闭回路”来实现的。实验结果包括主观(飞行员回答的问卷)和客观(轨迹日志)数据。数据分析显示,参与的机组人员接受度很高(无论是在程序的安全性还是可操作性方面),只有少量建议需要在未来版本的控制器和速度通知更新率中进行改进。在整个下降轨迹上也观察到良好的时间精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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