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Using Asymmetric Vibrations for Feedback on Flight Envelope Protection

机译:使用非对称振动获取飞行包络保护的反馈

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Modern aircraft use a variety of fly-by-wire control devices and combine these with a flight envelope protection system to limit pilot control inputs when approaching the aircraft limits. The current research project aims to increase pilot awareness of such a protection system through the use of force feedback on the control device, i.e., haptics. This paper describes a new iteration of a design with the specific aim to warn the pilot when approaching a limit and provide a clear direction of suggested control input. This is achieved by using vibrations asymmetric in both amplitude, i.e. the mean of the signal is non-zero, and time, i.e. a cue which has a rise time different from the fall time. An evaluation is performed where 24 active PPL/LAPL pilots flew a challenging vertical profile and encountered a windshear. The pilots are divided in two groups: one group performing four flights with haptic feedback, followed by four without, the other groups has a reversed order. Although acceptance ratings slightly improved when providing haptic feedback, the other metrics are unchanged when switching between haptic feedback conditions, due to a large training effect during the first four runs. The results do show that enabling the haptic feedback does seem to improve the learning rate over the first runs, and no after effects are present when feedback is removed. As such, next to the fact that most pilots indicated that they expect an improved safety, this experiment shows a potential training benefit of haptic feedback.
机译:现代飞机使用各种电传操纵装置,并将它们与飞行包线保护系统结合使用,以在接近飞机极限时限制飞行员的控制输入。当前的研究项目旨在通过使用控制装置上的力反馈(即触觉)来提高飞行员对这种保护系统的认识。本文描述了设计的新迭代,其特定目的是在接近极限时警告飞行员并提供建议的控制输入的清晰方向。这是通过使用振幅,即信号均值非零和时间(即提示,其上升时间与下降时间不同)的两个振幅不对称的振动来实现的。进行评估时,有24名在役的PPL / LAPL飞行员飞过具有挑战性的垂直剖面并遇到了风切变。飞行员分为两组:一组进行四次带触觉反馈的飞行,然后进行四次不带触觉反馈,另一组的顺序相反。尽管提供触觉反馈时的接受等级略有提高,但由于在前四次跑步中训练效果好,因此在触觉反馈条件之间进行切换时,其他指标不变。结果确实表明,启用触觉反馈似乎确实可以提高初次学习的学习速度,并且移除反馈后不会出现后效现象。因此,除了大多数飞行员表示他们期望改善安全性这一事实外,该实验还显示了触觉反馈的潜在训练益处。

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