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Increasing Pilot's Understanding of Future Automation State – An Evaluation of an Automation State and Trajectory Prediction System

机译:增加飞行员对未来自动化状态的理解-对自动化状态和轨迹预测系统的评估

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A pilot in the loop flight simulation study was conducted at NASA Langley Research Center to evaluate a trajectory prediction system. The trajectory prediction system computes a five-minute prediction of the lateral and vertical path of the aircraft given the current and intent state of the automation. The prediction is shown as a graphical representation so the pilots can form an accurate mental model of the future state. Otherwise, many automation changes and triggers are hidden from the flight crew or need to be consolidated to understand if a change will occur and the exact timing of the change. Varying dynamic conditions like deceleration can obscure the future trajectory and the ability to meet constraints, especially in the vertical dimension. Current flight deck indications of flight path assume constant conditions and do not adequately support the flight crew to make correct judgments regarding constraints. The study was conducted using ten commercial airline crews from multiple airlines, paired by airline to minimize procedural effects. Scenarios spanned a range of conditions that provided evaluation in a realistic environment with complex traffic and weather conditions. In particular, scenarios probed automation state and loss of state awareness. The technology was evaluated and contrasted with current state-of-the-art flight deck capabilities modeled from the Boeing 787. Objective and subjective data were collected from aircraft parameters, questionnaires, audio/video recordings, head/eye tracking data, and observations. This paper details findings about the trajectory prediction system including recommendations about further study.
机译:在NASA兰利研究中心进行了一次环形飞行仿真研究的飞行员,以评估轨迹预测系统。给定自动化的当前状态和意图状态,轨迹预测系统会计算出飞机横向和垂直路径的五分钟预测。预测以图形表示形式显示,因此飞行员可以形成未来状态的准确心智模型。否则,许多自动化更改和触发器对机组人员来说是隐藏的,或者需要合并以了解是否会发生更改以及更改的确切时间。诸如减速之类的变化的动态条件会掩盖未来的轨迹和满足约束的能力,尤其是在垂直方向上。当前飞行路线的飞行甲板指示假设为恒定条件,不能充分支持飞行机组对限制条件做出正确的判断。该研究是由来自多家航空公司的十名商业航空公司的机组人员进行的,并与航空公司配对以最大程度地减少程序上的影响。场景涵盖了一系列条件,这些条件可以在交通和天气条件复杂的现实环境中提供评估。尤其是,方案探查了自动化状态和状态意识的丧失。对该技术进行了评估,并与从波音787建模的当前最先进的驾驶舱功能进行了对比。从飞机参数,调查表,音频/视频记录,头部/眼睛跟踪数据和观察数据中收集了客观和主观数据。本文详细介绍了有关轨迹预测系统的发现,包括有关进一步研究的建议。

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