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A Experimental Study of the Cognitive Load of In-vehicle Multiscreen Connected HUD

机译:车载多屏连接HUD认知负荷的实验研究

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The large variety of information that a driver must interpret while driving has caused an increasing number of screens to appear inside vehicles, making heads-up display (HUD) multiscreen interconnections more applicable inside cars. However, human cognitive resources are limited, and too much information can easily lead to distraction. Whether HUD multiscreen interconnections can effectively reduce driver distraction is still controversial. This study investigated the information and road conditions that drivers must be alerted. Based on the types of information and scenarios obtained from a study of users, a simulated driving experiment was used to measure drivers' response times and cognitive loads when viewing driving-assistance information to complete a driving task. The study aimed to verify whether a HUD could help the driver respond more quickly and use fewer cognitive resources when driving-assistance information was shown separately from the central screen. Experimental results show that HUDs can effectively reduce a driver's cognitive load compared having information displayed on only a central screen. Additionally, HUDs can improve a driver's reaction time when displaying all types of driving assistance information. This study compared drivers' reaction times and cognitive loads when using HUDs and central control screens that display the same and different types of information. We also analysed the distribution of information displayed between screens in a multiscreen car. Results show that when the type of content between the car screens is the same, there is no significant difference in the driver's reaction time compared to the reaction time associated with the HUD alone. This study also provides ideas and suggestions for the future development of HUD-based multiscreen interconnections.
机译:驾驶员在驾驶时必须解释的大量信息导致越来越多的屏幕出现在车内,使得平视显示器(HUD)多屏幕互连更适用于车内。然而,人类的认知资源是有限的,太多的信息很容易导致分心。HUD多屏互联是否能有效减少驾驶员分心,仍存在争议。本研究调查了驾驶员必须注意的信息和路况。根据从用户研究中获得的信息类型和场景,使用模拟驾驶实验测量驾驶员在查看驾驶辅助信息以完成驾驶任务时的响应时间和认知负荷。该研究旨在验证当驾驶辅助信息与中央屏幕分开显示时,HUD是否能帮助驾驶员更快地做出反应,并使用更少的认知资源。实验结果表明,与仅在中央屏幕上显示信息相比,HUD可以有效降低驾驶员的认知负荷。此外,当显示所有类型的驾驶辅助信息时,HUD可以提高驾驶员的反应时间。这项研究比较了驾驶员在使用HUD和中央控制屏幕时的反应时间和认知负荷,这些屏幕显示相同和不同类型的信息。我们还分析了多屏幕汽车屏幕之间显示的信息分布。结果表明,当汽车屏幕之间的内容类型相同时,驾驶员的反应时间与仅与HUD相关的反应时间没有显著差异。本研究还为基于HUD的多屏幕互连的未来发展提供了想法和建议。

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