首页> 外文期刊>The Journal of Navigation >EEG-Based Analysis of Air Traffic Conflict: Investigating Controllers' Situation Awareness, Stress Level and Brain Activity during Conflict Resolution
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EEG-Based Analysis of Air Traffic Conflict: Investigating Controllers' Situation Awareness, Stress Level and Brain Activity during Conflict Resolution

机译:基于EEG的空中交通冲突分析:调查控制器的情况意识,应力水平和脑卒中在冲突中的情况

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摘要

The effects of air traffic conflict geometry have been well investigated in prior studies, particularly in the context of the pilot, though little in the context of the air traffic control officer (ATCO). No study to date has investigated the effects of conflict geometry on human factors variables of ATCOs through objective and physiological approaches. This study examines the effects of conflict geometries on ATCO situation awareness, stress level and brain activity during conflict resolution. Fifteen participants were instructed to resolve six different conflict geometries: crossing level, crossing non-level, converging level, converging non-level, overtaking level, and overtaking non-level. The results indicate that converging and crossing conflicts led to lower situation awareness (SA), higher stress level, and higher theta activation at the temporal and parietal lobes. Level conflict led to lower SA. The findings offer two implications, providing insights for the formal guidelines in ATC conflict resolution training and provision of inputs for the conflict resolution aid development.
机译:在先前的研究中,空中交通冲突几何学的影响得到了很好的研究,特别是在飞行员的背景下,虽然空中交通管制官(ATCO)的背景下少。迄今尚未研究过冲突几何体对通过客观和生理方法的人为因素变量的影响。本研究探讨了冲突几何对冲突解决过程中临时状况意识,压力水平和大脑活动的影响。指示十五个参与者解析六种不同的冲突几何形状:交叉水平,交叉非级别,融合水平,收敛非级别,超车水平和超级非级别。结果表明,会聚和交叉冲突导致较低的情况意识(SA),较高的应力水平,较高的时间和颞叶的激活。级别冲突导致降低SA。调查结果提供了两种影响,为ATC冲突解决方案培训的正式准则提供了见解,并为冲突解决援助发展提供了意见。

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