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An experimental comparison of conservative versus optimal collision avoidance warning system thresholds

机译:保守避碰预警系统和最佳避撞预警系统阈值的实验比较

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摘要

In the distributed signal detection theoretic (DSDT) model, the human operator and the warning mechanism are independent decision makers who work together as a team. The DSDT demonstrates that the optimal warning threshold, in general, differs from the signal detection theoretic (SDT) threshold, which assumes a single decision maker. This prediction was tested in an experiment where drivers received monetary rewards for making safe passing decisions on a driving simulator. The experiment focused on evaluating the quality of the decision making of the drivers, and not on perceptual issues. A collision avoidance system provided a warning when the probability of an inadequate overtaking gap exceeded a threshold. Three thresholds were tested. The control threshold resulted in no detections or false alarms. The DSDT threshold resulted in some misses but no false alarms. The SDT threshold resulted in no misses but frequent false alarms. As predicted, (1) drivers performed the best when the warning system used the DSDT threshold, and (2) use of the SDT threshold improved performance over the control threshold, even though four of the 10 drivers occasionally ignored the warning and made risky passing attempts in the SDT conditions, possibly because of earlier false alarms. These findings support the conclusion that the DSDT model is a useful, quantitative tool that should be used by warning designers.
机译:在分布式信号检测理论(DSDT)模型中,操作员和警告机制是独立的决策者,他们作为一个团队一起工作。 DSDT表明,最佳警告阈值通常与信号检测理论(SDT)阈值不同,后者假设一个决策者。在一项实验中测试了此预测,在该实验中,驾驶员通过在驾驶模拟器上做出安全通过决策而获得金钱奖励。实验的重点是评估驾驶员决策的质量,而不是感知问题。当超车间隙不足的可能性超过阈值时,防撞系统会发出警告。测试了三个阈值。控制阈值未导致检测到或错误警报。 DSDT阈值导致一些未命中但没有错误警报。 SDT阈值不会导致遗漏,而会导致频繁的误报。如预期的那样,即使10个驾驶员中有4个人偶尔忽略警告并冒着风险通过,警告系统使用DSDT阈值时,(1)驾驶员的表现最佳;(2)使用SDT阈值可提高性能,超过控制阈值。在SDT条件下进行尝试,可能是由于较早的错误警报所致。这些发现支持以下结论:DSDT模型是警告设计者应使用的有用的定量工具。

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