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Simulated Flight Testing of an Adaptive Loss-of-Control Avoidance Pilot Advisory Display

机译:自适应失控回避飞行员咨询显示器的模拟飞行测试

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Loss-of-Control has been consistently deemed the primary contributor to air accidents globally. Systems capable of alerting pilots when impending control loss is predicted to occur have the potential to promote safer flight. To this end, the General Aviation Flight Lab at Wichita State University has developed an early warning guidance technology for loss-of-control avoidance that adaptively predicts an aircraft's safe control envelope and warns of future impending entry into control loss given current aircraft state information. The prediction architecture analytically determines critical control deflections that would drive the aircraft into control loss n-seconds ahead of time, and the predicted control boundaries are presented to the pilot in real-time in the form of aural alerts and visual displays. Pilot-in-the-loop testing is conducted to validate the effectiveness of the prediction architecture and the guidance technologies, in an effort to determine whether the early prediction of control loss reduces the duration and magnitude of excursions outside of the safe flight envelope. The prediction architecture is implemented and evaluated through pilot-in-the-loop simulated flight testing in the three forms: an aural-only alert, a head-down display, and an augmented-reality head-up display using the Microsoft HoloLens. These are evaluated against the no-assistance condition, and results from testing indicate that the guidance technologies have the potential to reduce the occurrences and magnitudes of excursion of the safe flight envelope.
机译:失控一直被认为是全球航空事故的主要诱因。能够在预计即将发生控制损失时向飞行员发出警报的系统具有促进更安全飞行的潜力。为此,威奇托州立大学的通用航空飞行实验室开发了一种用于避免失控的预警指导技术,该技术可以自适应地预测飞机的安全控制范围,并根据当前的飞机状态信息,警告将来可能会进入失控状态。预测架构可以分析性地确定关键控制偏差,该偏差将使飞机提前n秒钟进入控制损失状态,并且预测的控制边界以听觉警报和视觉显示的形式实时呈现给飞行员。进行在环试验以验证预测架构和制导技术的有效性,从而确定对控制损失的早期预测是否会减少安全飞行范围之外的旅行持续时间和幅度。通过采用三种形式的在环飞行员模拟飞行测试来实施和评估预测体系结构:使用Microsoft HoloLens的仅听觉警报,低头显示和增强现实抬头显示。这些都是在无辅助条件下进行评估的,测试结果表明,制导技术具有减少安全飞行包线偏移发生和幅度的潜力。

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