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Cue-utilisation typologies and pilots' pre-flight and in-flight weather decision-making

机译:提示使用类型和飞行员的飞行前和飞行中天气决策

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摘要

In complex, high consequence environments such as aviation, the capacity to acquire, integrate, and respond to task-related cues is critical for accurate situation assessment and to avoid plan-continuation errors. The aim of the present study was to establish whether differences in performance on a series of aviation-related, cue-based tasks corresponded to differences in decision selection during simulated pre-flight and in-flight weather-related decision-making. In Phase 1 (pre-flight decisions), 57 participants were categorised into one of two typologies based on their performance on the cue-based tasks. These typologies reflected behaviour that was consistent with relatively greater or lesser levels of cue utilisation, and corresponded to whether the pilots elected to make an immediate decision or wait for additional information during a simulated pre-flight decision task. In Phase 2, a cohort of 20 pilots was selected on the basis that they represented one of the two cue-based typologies established in Phase 1. They undertook a simulated flight during which the weather conditions deteriorated progressively en-route. Those pilots who demonstrated a relatively greater level of cue utilisation were more likely to continue the flight as planned, while those pilots who demonstrated a relatively lesser level of cue utilisation were more likely to descend or divert from the planned track. The implications are discussed in terms of targeted training and explanations of plan-continuation errors in the context of weather-related decision-making.
机译:在复杂的,具有严重后果的环境(例如航空)中,获取,整合和响应与任务相关的线索的能力对于准确的情况评估和避免计划继续错误至关重要。本研究的目的是确定在模拟飞行前和飞行中与天气相关的决策过程中,一系列与航空有关的,基于提示的任务的性能差异是否对应于决策选择上的差异。在第1阶段(飞行前的决策)中,根据他们在基于提示的任务中的表现,将57名参与者分为两种类型之一。这些类型反映的行为与相对较高或较低的提示使用水平相一致,并且与飞行员是否选择在模拟飞行前决策任务中选择立即做出决定或等待其他信息相对应。在阶段2中,选择了20名飞行员,作为他们代表阶段1中建立的两种基于提示的类型之一。他们进行了一次模拟飞行,在此过程中天气状况逐渐恶化。那些提示使用率相对较高的飞行员更有可能按计划继续飞行,而那些提示使用率相对较低的飞行员则更有可能从计划航迹下降或转移。本文将针对有针对性的培训以及在与天气有关的决策中对计划继续错误的解释进行讨论。

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