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Improving spatial awareness in the aircraft cockpit: partially supporting evidence for the concept of scene-linking

机译:提高飞机驾驶舱的空间意识:部分支持场景链接概念的证据

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Flying an aircraft is an often targeted domain for the study of skilled human performance in general and for applied problems of spatial cognition in particular. The flight-deck crew’s spatial awareness is mainly informed by the outside view and the primary flight instruments (PFI) with the latter becoming the sole source of spatial information in low-visibility weather conditions. The transparent and collimated head-up display (HUD) and the 3-D perspective pathway-in-the-sky representation format are two well-studied innovative display concepts with proven evidence of promoting improved spatial awareness of pilots. However, there is also evidence that both display concepts are associated with a sub-optimal distribution of the pilot’s visual attention resources between PFI and outside view. In case of the HUD, a delayed or even missing detection of unanticipated events in the outside view has been found. This deficiency has been attributed to attention fixation to the HUD triggered by the presence of differential motion between the static near domain PFI and the dynamic far domain outside world. A pathway-induced attention fixation to head-down views, likewise occurring at the expense of event detection in the outside, has been attributed to the very compelling character of the pathway attracting an undue amount of the pilot’s attention resources. These findings raise the question whether a combined pathway-HUD amplifies attention fixation problems with the effect of potentially offsetting the independent and conclusively established benefits of both display concepts. The aim of the present study was to test the hypothesis that HUD symbology that is presented scene-linked, thus moves as virtual instrument gauges in the outside scene can promote a better distribution of attention between both visual domains. Such an advantage has been substantiated in simulated aircraft operation on the airport surface where a pathway of runway route markers was overlaid to the existing runway edges. We developed a part-task simulation to investigate an airborne application of this concept using the pathway-in-the-sky as an outside-world referent for the projection of virtual PFI in the world. Experienced pilots (N = 14) flew a series of low-altitude curved trajectories through mountainous terrain and had to detect display events (discrete changes in a command speed indicator to be matched with current speed) and outside scene events (hostile SAM stations on ground). The speed indicator was either superimposed with a fixed HUD-location or attached to the pathway, thus underwent the same visual transformation as the object elements of the pathway during the dynamics of the flight. Outside scene event detection was superior using PFI with a scene-linked HUD location as compared to a fixed-HUD location, however, flight-path tracking was markedly deteriorated. Reasons for and means to cope with this performance trade-off will be discussed.
机译:通常,飞行器是通常研究人类熟练技术表现的目标领域,尤其是空间认知的应用问题。驾驶舱人员的空间意识主要来自于外部视野和主要飞行仪表(PFI),后者在低能见度的天气条件下成为空间信息的唯一来源。透明且准直的平视显示器(HUD)和3-D透视空中显示格式是两种经过充分研究的创新显示概念,具有可促进飞行员提高空间意识的成熟证据。但是,也有证据表明,这两种显示概念都与飞行员在PFI和外部视图之间的视觉注意力资源的次优分配有关。对于HUD,在外部视图中发现了意外事件的延迟甚至丢失的检测。该缺陷归因于静态近域PFI与动态远域外部世界之间存在差异运动而触发的对HUD的注意力固定。通路引起的对头顶视线的注意力凝视,同样以牺牲外部事件检测为代价而发生,归因于该通路非常引人注目的特性,吸引了飞行员过多的注意力资源。这些发现提出了一个问题,即联合途径HUD是否会放大注意力固定问题,并可能抵消两种展示概念的独立和最终确定的利益。本研究的目的是检验以下假设:HUD符号系统是与场景关联的,因此随着虚拟仪器仪表在外部场景中的移动而移动,可以促进两个视觉域之间更好的注意力分配。这种优势已在机场表面上的模拟飞机操作中得到了证实,其中跑道路线标记的路径被覆盖到现有跑道边缘。我们开发了部分任务模拟,以研究这种概念在空中的应用,并使用天空中的路径作为世界上虚拟PFI投影的外部参考。经验丰富的飞行员(N = 14)在山区穿越一系列低空弯曲轨迹,不得不检测显示事件(与当前速度匹配的命令速度指示器的离散变化)和外部场景事件(地面上敌对的SAM站) )。速度指示器要么与固定的HUD位置叠加在一起,要么附加到路径上,因此在飞行过程中进行了与路径对象元素相同的视觉转换。与固定HUD位置相比,使用具有现场链接的HUD位置的PFI进行外部场景事件检测要好,但是,飞行路径跟踪明显变差。将讨论这种性能折衷的原因和手段。

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