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Visual scan patterns reflect to human-computer interactions on processing different types of messages in the flight deck

机译:可视扫描模式反映了在飞行甲板中处理不同类型信息的人机交互

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摘要

The flight deck of commercial aircraft is sophisticated and searching for the necessary information at the right time is sometimes challenging. This research investigates pilot's visual parameters while interacted with two different designs of crew alerting system by eye tracking technology. There are 24 aviation professionals that participated in this experiment including commercial pilots, private pilots and avionic engineers. Compared with traditional design, the new integrated design applied proximity compatibility principles to assist pilots in searching necessary information to deal with urgent situations. The results demonstrated that the integrated design is superior to traditional design in providing accurate instructions as determined by visual behaviors. However, the integrated design increases pilot's situation awareness by redirecting attention from current task to the most critical task with the cost of a longer total fixation duration time. Pilot's visual parameters demonstrated significant differences while interacting with PFD mainly numeric, ND mostly by symbols and EICAS with presented text messages. Therefore, flight deck design has to adopt a holistic approach as pilot's visual attentions is shifting among all types of different displays to gain situation awareness rather than focus on only one display. The design of integrated EICAS can provide detailed instructions to deal with urgent situations which induced higher cognitive loads as pilot's pupil dilation is significant bigger than interacted with traditional design. By eye tracking technology, it is applicable to design human-centred flight decks to improve safety and human performance in aviation.
机译:商用飞机的飞行甲板复杂,并在正确的时间搜寻必要的信息有时是有挑战性的。本研究调查了试点的视觉参数,同时通过眼跟踪技术与船员警报系统的两种不同设计进行了互动。有24个航空专业人士参与了这个实验,包括商业飞行员,私人飞行员和航空工程师。与传统设计相比,新的集成设计应用了邻近兼容性原则,以协助飞行员寻找必要的信息来处理紧急情况。结果表明,集成设计优于传统设计,以提供通过视觉行为所确定的准确说明。然而,集成的设计通过将注意力从当前任务重定向到最关键的任务中的最关键任务来提高导频的情况,以较长的总固定持续时间。导频的可视参数展示了显着的差异,同时与PFD以PFD交互,主要是数字,ND主要由带有呈现短信的符号和EICAS。因此,飞行甲板设计必须采用整体方法,因为飞行员的视觉关注在各种类型的不同显示器中转化,以获得情况意识,而不是专注于一个显示器。集成EICAS的设计可以提供详细说明,以处理紧急情况,诱导更高的认知载荷,因为飞行员的瞳孔扩张大于与传统设计互动的大幅度。通过眼睛跟踪技术,适用于设计人以人为本的飞行甲板,以改善航空中的安全性和人类性能。

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