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Pilot Mental Models and Loss of Control

机译:飞行员心理模型与失控

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摘要

Loss of control events often involve erroneous pilot mental models of the aircraft state and autoflight system modes in the period leading up to the event. These mental models include their immediate situation awareness of the aircraft state, but also often include their knowledge of the autoflight system. Both aspects of these have been modeled computationally in fast-time simulations. The situation awareness of aircraft state is represented as a model-based observer (e.g. Kalman filter). The knowledge of autoflight modes is represented as a finite state machine where each state represents a different control behavior, and transitions between modes are explicitly represented to describe the conditions in which they can be commanded by the pilot and/or commanded automatically. This paper will describe the results of simulations in which the mental model is run dynamically through flight events potentially leading to loss of control.
机译:失控事件通常会在事件发生之前的这段时间中误导飞机状态和自动飞行系统模式的飞行员心理模型。这些思维模型不仅包括他们对飞机状态的即时态势感知,而且还经常包括他们对自动飞行系统的了解。这些方面均已在快速仿真中进行了计算建模。飞机状态的态势感知表示为基于模型的观察者(例如,卡尔曼滤波器)。自动飞行模式的知识表示为有限状态机,其中每个状态表示不同的控制行为,模式之间的转换明确表示为描述条件,在这些条件下可以由飞行员命令和/或自动命令。本文将描述模拟结果,其中心理模型通过可能导致失控的飞行事件动态运行。

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