自动化透明性与智能飞机发动机接口设计

Jim Nixon, Richard Clewley, Tendai Rukasha
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引用次数: 0

摘要

在本文中,我们报告了在民用飞机上实现智能发动机系统的研究进展。现代涡扇发动机在飞行过程中捕获有关其性能和健康状况的数据。直到现在,这一信息仍然对飞行甲板保密。我们的研究将研究如何最好地将这些新信息源传达给驾驶舱,从而在了解发动机健康状况方面提供智能协助,并在发动机出现影响性能的故障时提供选择,以最大限度地减少干扰。我们采用自动化透明度作为关键的设计支柱,以确保机组人员对智能系统在不同操作条件下的推理有适当的了解。以用户为中心的设计将告知不同界面元素的透明程度,告知提供必要的信息以确保安全和高效的性能之间的平衡。目前,对于自动化透明度是否在所有情况下都能带来性能优势,存在很大的不确定性。我们的研究将实证调查不同级别的自动化透明度来验证性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automation transparency and the design of intelligent aircraft engine interfaces
In this article we report progress on a programme of research to implement intelligent engine systems in civil aircraft. Modern turbofan engines capture data about their performance and health during flight. Until now, this information has remained hidden from the flight deck. Our research will examine how best to communicate these new information sources to the flight deck to deliver intelligent assistance in understanding engine health and offering choices to minimise disruption should an engine develop a fault that affects performance. We have adopted automation transparency as a key design pillar to ensure that flight crew have an appropriate understanding of the reasoning of the intelligent system under different operating conditions. User-centred design will inform the degree to which the different interface elements are transparent, informing the balance between the provision of information necessary to ensure safe and efficient performance. Currently, there is significant uncertainty as to whether automation transparency can confer a performance advantage in all cases. Our research will empirically investigate different levels of automation transparency to validate performance.
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