首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >Method for Estimating Time to Collision at Braking in Real-World, Lead Vehicle Stopped Rear-End Crashes for Use in Pre-Crash System Design
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Method for Estimating Time to Collision at Braking in Real-World, Lead Vehicle Stopped Rear-End Crashes for Use in Pre-Crash System Design

机译:估计在现实世界中用于前碰撞系统设计的铅车辆停止的后端碰撞时的碰撞时间的方法

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摘要

This study presents a method for determining the time to collision (TTC) at which a driver of the striking vehicle in a real-world, lead vehicle stopped (LVS) rear-end collision applied the brakes. The method employs real-world cases that were extracted from the National Automotive Sampling System/Crashworthiness Data System (NASS/CDS) years 2000 to 2009. Selected cases had an Event Data Recorder (EDR) recovered from the striking vehicle that contained pre-crash vehicle speed and brake application. Of 59 cases with complete EDR records, 12 cases (20%) of drivers appeared not to apply the brakes at all prior to the collision. The method was demonstrated using 47 rear-end cases in which there was driver braking. The average braking deceleration for those cases with sufficient vehicle speed information was found to be 0.52 g's. The average TTC that braking was initiated at was found to vary in the sample population from 1.1 to 1.4 seconds. As more automakers provide commercial tools to retrieve their EDR data, this method can be employed to evaluate TTC in real-world crash situations. This is especially pertinent to the design of crash mitigating components of PCS (i.e. brake assist and automatic braking) that rely on driver reaction in crash imminent situations.
机译:这项研究提出了一种确定碰撞时间(TTC)的方法,在该时间中,在现实世界中,领先的车辆停止(LVS)追尾碰撞中,打击车辆的驾驶员施加了制动。该方法采用了从2000年到2009年的国家汽车采样系统/耐撞性数据系统(NASS / CDS)中提取的真实案例。选定的案例具有从撞击前车辆中恢复的包含事前碰撞的事件数据记录器(EDR)。车辆速度和制动应用。在具有完整EDR记录的59例中,有12例(20%)驾驶员似乎在撞车前根本没有踩刹车。该方法在47个具有驾驶员制动功能的后端情况下得到了证明。对于那些具有足够的车速信息的情况,平均制动减速度为0.52 g's。发现开始制动的平均TTC在样本群体中从1.1秒到1.4秒变化。随着越来越多的汽车制造商提供商业工具来检索他们的EDR数据,该方法可用于评估实际碰撞情况下的TTC。这与PCS的减轻碰撞组件(即制动辅助和自动制动)的设计尤其相关,后者在即将发生碰撞的情况下依赖于驾驶员的反应。

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