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Impact of Pilot Delay and Non-Responsiveness on the Safety Performance of Airborne Separation

机译:飞行员的延误和无反应性对空降安全性能的影响

摘要

Assessing the safety effects of prediction errors and uncertainty on automationsupported functions in the Next Generation Air Transportation System concept of operations is of foremost importance, particularly safety critical functions such as separation that involve human decision-making. Both ground-based and airborne, the automation of separation functions must be designed to account for, and mitigate the impact of, information uncertainty and varying human response. This paper describes an experiment that addresses the potential impact of operator delay when interacting with separation support systems. In this study, we evaluated an airborne separation capability operated by a simulated pilot. The experimental runs are part of the Safety Performance of Airborne Separation (SPAS) experiment suite that examines the safety implications of prediction errors and system uncertainties on airborne separation assistance systems. Pilot actions required by the airborne separation automation to resolve traffic conflicts were delayed within a wide range, varying from five to 240 seconds while a percentage of randomly selected pilots were programmed to completely miss the conflict alerts and therefore take no action. Results indicate that the strategicAirborne Separation Assistance System (ASAS) functions exercised in the experiment can sustain pilot response delays of up to 90 seconds and more, depending on the traffic density. However, when pilots or operators fail to respond to conflict alerts the safety effects are substantial, particularly at higher traffic densities.
机译:在下一代航空运输系统的运营概念中,评估预测误差和不确定性对自动化支持功能的安全影响至关重要,尤其是安全关键功能,例如涉及人为决策的分离。无论是地面上的还是空中的,分离功能的自动化都必须设计成能解决信息不确定性和人类反应的变化并减轻其影响。本文描述了一个实验,该实验解决了与分离支持系统进行交互时操作员延迟的潜在影响。在这项研究中,我们评估了由模拟飞行员操作的机载分离能力。实验运行是机载分离安全性能(SPAS)实验套件的一部分,该套件检查了机载分离辅助系统的预测误差和系统不确定性的安全隐患。机载分离自动化解决交通冲突所需的飞行员行动被延迟了很长时间,范围从5到240秒不等,而一部分随机选择的飞行员被编程为完全错过冲突警报,因此不采取任何行动。结果表明,根据交通密度,实验中使用的战略空降分离辅助系统(ASAS)功能可以维持飞行员响应延迟长达90秒或更长时间。但是,当飞行员或操作员未能对冲突警报做出响应时,安全影响将是巨大的,尤其是在较高的交通密度下。

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