对商用运输机操作中减少机组人员和单一飞行员操作的评估

R. Bailey, L. Kramer, Kellie D. Kennedy, C. Stephens, T. Etherington
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引用次数: 47

摘要

未来商业航空公司和按需移动应用中减少机组人员操作甚至单个飞行员操作是一个活跃的研究领域。这些变化将减少人为因素,从而威胁到“训练有素的合格飞行员是飞机系统安全的关键中心点,是整个商业航空系统不可或缺的安全组成部分”这一原则。NASA最近与美国联邦航空管理局(FAA)合作完成了一项飞行员环内高保真运动模拟研究,试图量化飞行员在正常飞行和飞机系统故障时对飞行安全的贡献。受试者间设计采用乘员补体作为实验自变量。这些数据表明,与两名机组人员相比,单飞行员操作的工作量显著增加,对安全性和性能的主观评估也显著降低。尽管如此,在所有情况下,飞行员都能够克服所有机组配置的故障模式影响。这些数据反映了当前的飞行甲板设备,并有助于确定可能改善双机组操作和/或可能实现未来减少机组人员和/或单飞行员操作的技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An assessment of reduced crew and single pilot operations in commercial transport aircraft operations
Future reduced crew operations or even single pilot operations for commercial airline and on-demand mobility applications are an active area of research. These changes would reduce the human element and thus, threaten the precept that “a well-trained and well-qualified pilot is the critical center point of aircraft systems safety and an integral safety component of the entire commercial aviation system.” NASA recently completed a pilot-in-the-loop high fidelity motion simulation study in partnership with the Federal Aviation Administration (FAA) attempting to quantify the pilot's contribution to flight safety during normal flight and in response to aircraft system failures. Crew complement was used as the experiment independent variable in a between-subjects design. These data show significant increases in workload for single pilot operations, compared to two-crew, with subjective assessments of safety and performance being significantly degraded as well. Nonetheless, in all cases, the pilots were able to overcome the failure mode effects in all crew configurations. These data reflect current-day flight deck equipage and help identify the technologies that may improve two-crew operations and/or possibly enable future reduced crew and/or single pilot operations.
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