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Design and Evaluation of Vertical Situation Display Reflecting Configuration Changes

机译:反映配置变化的垂直状况显示的设计和评估

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Loss of control is the largest contributor to the yearly aviation death toll, with energy mismanagement in low-energy conditions as one of its main causal factors. This has led to a large emphasis from both scientific and aviation safety communities on the prevention of aircraft upset conditions. Changes in aircraft configuration largely impact performance, and improved insight therein should allow pilots to better predict potentially dangerous situations, maintain suitable safety margins and more effectively react to unforeseen events. This paper presents the design and experimental evaluation of a Vertical Situation Display (VSD) with enhancements visualizing changes in the flight performance envelope. Sixteen pilots were tasked to fly approach and go-around scenarios with both a baseline and an ecological VSD, some of the scenarios containing flight control failures. Results show that the new display makes pilots maintain larger margins in velocity, thus spending less time below the advised minimum speed limit in final approach. However, these larger velocity margins also led to larger errors with respect to target velocities. Flight control failures were more often and more quickly discovered, and pilots reported feeling better able to predict dangerous situations. No significant differences in workload were recorded. These results conclude that the new VSD design enhances safety performance, but simultaneously raise the question whether the effect of enlarged safety margins is desirable if it causes a reduction in velocity tracking.
机译:失控是造成每年航空死亡人数的最大原因,在低能耗条件下的能源管理不善是其主要原因之一。这导致科学界和航空安全界都非常重视防止飞机失稳的情况。飞机配置的变化在很大程度上影响了性能,而对飞机性能的了解也将使飞行员能够更好地预测潜在的危险情况,保持适当的安全裕度并更有效地应对不可预见的事件。本文介绍了垂直状态显示(VSD)的设计和实验评估,并具有可视化的飞行性能范围变化的增强功能。 16名飞行员的任务是使用基准和生态VSD进行进近和复飞,其中一些场景包含飞行控制故障。结果表明,新的显示使飞行员能够保持更大的速度裕度,从而在最终进场中花费的时间少于建议的最小速度限制。然而,这些较大的速度裕度也导致相对于目标速度的较大误差。飞行控制故障被发现的频率更高且更快,并且飞行员报告说感觉到能够更好地预测危险情况。记录的工作量无明显差异。这些结果得出结论,新的VSD设计增强了安全性能,但同时提出了一个问题,如果它会导致速度跟踪降低,则是否需要扩大安全裕度的效果。

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