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Driver's braking behavior approaching pedestrian crossings: a parametric duration model of the speed reduction times

机译:驾驶员接近行人过路处的制动行为:减速时间的参数持续时间模型

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摘要

The driver's braking behavior while approaching zebra crossings under different safety measures (curb extensions, parking restrictions, and advance yield markings) and without treatment (baseline condition) was examined. The speed reduction time was the variable used to describe the driver's behavior. Forty-two drivers drove a driving simulator on an urban scenario in which the baseline condition and the safety measures were implemented. The speed reduction time was modeled with a parametric duration model to compare the effects on driver's braking behavior of vehicle dynamic variables and different countermeasures. The parametric accelerated failure time duration model with a Weibull distribution identified that the vehicle dynamic variables and only the countermeasure curb extensions affected, in a statistically significant way, the driver's speed reduction time in response to a pedestrian crossing. This result shows that the driver, because of the improved visibility of the pedestrian allowed by the curb extensions, was able to receive a clear information and better to adapt his approaching speed to yield to the pedestrian, avoiding abrupt maneuvers. This also means a reduction of likelihood of rear-end collision due to less aggressive braking. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:检查了驾驶员在不同安全措施(路缘延长,停车限制和提前屈服标记)下未经过处理(基线状况)时接近斑马线时的制动行为。减速时间是用来描述驾驶员行为的变量。四十二名驾驶员在实施基线条件和安全措施的城市场景中驾驶驾驶模拟器。使用参数持续时间模型对减速时间进行建模,以比较车辆动态变量和不同对策对驾驶员制动行为的影响。具有Weibull分布的参数化加速故障持续时间模型表明,车辆动态变量和对策路缘延伸仅以统计学上显着的方式影响了驾驶员对行人过路处的减速时间。该结果表明,由于路缘延长件允许行人的视野得到改善,驾驶员能够接收到清晰的信息,并且能够更好地适应行进速度以屈服于行人,从而避免了突然的操纵。这也意味着减少了由于不太积极的制动而导致的后端碰撞的可能性。版权所有(c)2016 John Wiley&Sons,Ltd.

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