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实时驾驶员困倦反馈可提高驾驶员的警觉性和自我报告的驾驶表现。

Real-time driver drowsiness feedback improves driver alertness and self-reported driving performance.

作者信息

Aidman Eugene, Chadunow Carolyn, Johnson Kayla, Reece John

机构信息

Defence Science and Technology Organisation (DSTO), Land Division, Edinburgh, South Australia 5111, Australia; University of Sydney, School of Psychology, Sydney, New South Wales 2006, Australia.

Defence Science and Technology Organisation (DSTO), Land Division, Edinburgh, South Australia 5111, Australia.

出版信息

Accid Anal Prev. 2015 Aug;81:8-13. doi: 10.1016/j.aap.2015.03.041. Epub 2015 Apr 29.

Abstract

Driver drowsiness has been implicated as a major causal factor in road accidents. Tools that allow remote monitoring and management of driver fatigue are used in the mining and road transport industries. Increasing drivers' own awareness of their drowsiness levels using such tools may also reduce risk of accidents. The study examined the effects of real-time blink-velocity-derived drowsiness feedback on driver performance and levels of alertness in a military setting. A sample of 15 Army Reserve personnel (1 female) aged 21-59 (M=41.3, SD=11.1) volunteered to being monitored by an infra-red oculography-based Optalert Alertness Monitoring System (OAMS) while they performed their regular driving tasks, including on-duty tasks and commuting to and from duty, for a continuous period of 4-8 weeks. For approximately half that period, blink-velocity-derived Johns Drowsiness Scale (JDS) scores were fed back to the driver in a counterbalanced repeated-measures design, resulting in a total of 419 driving periods under "feedback" and 385 periods under "no-feedback" condition. Overall, the provision of real-time feedback resulted in reduced drowsiness (lower JDS scores) and improved alertness and driving performance ratings. The effect was small and varied across the 24-h circadian cycle but it remained robust after controlling for time of day and driving task duration. Both the number of JDS peaks counted for each trip and their duration declined in the presence of drowsiness feedback, indicating a dynamic pattern that is consistent with a genuine, entropy-reducing feedback mechanism (as distinct from random re-alerting) behind the observed effect. Its mechanisms and practical utility have yet to be fully explored. Direct examination of the alternative, random re-alerting explanation of this feedback effect is an important step for future research.

摘要

驾驶员疲劳被认为是道路交通事故的一个主要成因。采矿和公路运输行业使用了能够对驾驶员疲劳进行远程监测和管理的工具。使用此类工具提高驾驶员自身对其疲劳程度的认知,也可能降低事故风险。本研究考察了在军事环境中,基于实时眨眼速度得出的疲劳反馈对驾驶员表现和警觉水平的影响。15名年龄在21至59岁之间(M = 41.3,SD = 11.1)的陆军预备役人员(1名女性)自愿参与实验,在他们执行日常驾驶任务(包括执勤任务以及上下班通勤)期间,使用基于红外眼动图的Optalert警觉性监测系统(OAMS)对其进行持续4至8周的监测。在大约一半的监测期内,以平衡重复测量设计的方式,将基于眨眼速度得出的约翰斯疲劳量表(JDS)分数反馈给驾驶员,从而在“反馈”条件下共有419个驾驶时段,在“无反馈”条件下有385个时段。总体而言,提供实时反馈可降低疲劳程度(JDS分数更低),并提高警觉性和驾驶表现评分。这种影响较小,且在24小时昼夜节律周期内有所变化,但在控制了一天中的时间和驾驶任务时长后,这种影响依然显著。在有疲劳反馈的情况下,每次行程中JDS峰值的数量及其持续时间均有所下降,这表明存在一种动态模式,与观察到的效果背后真正的、减少熵的反馈机制(有别于随机重新警觉)相一致。其机制和实际效用尚未得到充分探索。直接检验对这种反馈效应的另一种随机重新警觉的解释,是未来研究的重要一步。

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