飞行甲板表面弹道作战(STBO)。

David C Foyle, Becky L Hooey, Deborah L Bakowski, Christina L Kunkle
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引用次数: 5

摘要

介绍了三种基于飞行甲板表面轨迹作战(STBO)的仿真结果。商业运输机的飞行员在初级飞行显示器(PFD)上获得了时间和速度组件的滑行许可,并被要求滑行到离港跑道或中间交叉路口。结果表明,当提供给飞行员仅限速度的滑行许可时,飞行员要么在可接受的注意力分布和安全估计方面的RTA一致性较差,要么在不可接受的注意力分布和安全估计方面的RTA一致性较好。驾驶舱误差消除算法/显示允许飞行员在保持安全的同时准确地符合滑行RTA许可。结果讨论了在繁忙的机场地面操作环境中的飞行员多任务处理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Flight-deck Surface Trajectory-Based Operations (STBO).

Flight-deck Surface Trajectory-Based Operations (STBO).

Flight-deck Surface Trajectory-Based Operations (STBO).

Flight-deck Surface Trajectory-Based Operations (STBO).

The results of three piloted simulations investigating flight-deck surface trajectory-based operations (STBO) are presented. Commercial transport pilots were given taxi clearances with time and speed components on the Primary Flight Display (PFD) and were required to taxi to the departing runway or intermediate intersections. Results show that when pilots were provided with speed-only taxi clearances, pilots either had poor required time of arrival (RTA) conformance with acceptable estimates of attentional distribution and safety, or had good RTA conformance with unacceptable attentional distribution and safety estimates. A flight-deck Error-Nulling Algorithm/Display allowed pilots to conform accurately with taxi RTA clearances while maintaining safety. Results are discussed in terms of pilot multitasking in the busy airport surface operations environment.

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