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研究战术车辆控制中的认知干扰和适应性安全行为。

Examining cognitive interference and adaptive safety behaviours in tactical vehicle control.

作者信息

Horrey W J, Simons D J

机构信息

Liberty Mutual Research Institute for Safety, Hopkinton, MA, USA.

出版信息

Ergonomics. 2007 Aug;50(8):1340-50. doi: 10.1080/00140130701318889.

Abstract

Concurrent mental workload degrades some aspects of driving performance, but drivers might be able to modify their behaviour adaptively to accommodate cognitive impairments. For example, they might maintain longer vehicle headway in dual-task conditions to compensate for slowed response times. Studies documenting such adaptive behaviours typically use steady-state driving scenarios such as car following. Yet, driving often involves tactical control situations in which drivers need to monitor multiple aspects of their traffic environment and to accommodate changing goals. In two simulator experiments, this study examined the impact of mental workload on safety margins (distances) that drivers keep when engaged in a tactical control task: passing other vehicles. Although drivers did increase their headway adaptively when engaged in steady-state car following (experiment 2), they did not adapt their behaviour to accommodate cognitive load when performing tactical control manoeuvres. Implications of this difference between steady-state and tactical control driving contexts, both for driving research and for driving safety, are discussed.

摘要

同时进行的心理负荷会降低驾驶性能的某些方面,但驾驶员可能能够适应性地改变其行为以适应认知障碍。例如,他们可能在双重任务条件下保持更长的车间距,以补偿反应时间的减慢。记录此类适应性行为的研究通常使用稳态驾驶场景,如跟车。然而,驾驶通常涉及战术控制情况,在这种情况下,驾驶员需要监控交通环境的多个方面并适应不断变化的目标。在两项模拟器实验中,本研究考察了心理负荷对驾驶员在执行战术控制任务(超车)时保持的安全边际(距离)的影响。尽管驾驶员在进行稳态跟车时确实会适应性地增加车间距(实验2),但在执行战术控制操作时,他们并未调整行为以适应认知负荷。本文讨论了稳态和战术控制驾驶情境之间的这种差异对驾驶研究和驾驶安全的影响。

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