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Potential benefits of controlled vehicle braking to reduce pedestrian ground contact injuries

机译:控制车辆制动以减少行人地面接触伤害的潜在好处

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摘要

Protecting struck pedestrians during the ground contact phase has been a challenge for decades. Recent studies have shown how ground related injury is influenced by pedestrian kinematics. In this paper we further developed this approach by assessing the potential of controlling vehicle braking to reduce pedestrian ground contact injuries. Applying a recently proposed Simulation Test Sample, a series of simulations were run using the MADYMO software environment. The approach considered 6 vehicle shapes, 4 pedestrian models, 3 impact velocities and 2 pedestrian gaits and each case was considered with two different vehicle braking approaches. The first was full braking, while the second applied controlled braking, for which a strategy based on pedestrian kinematics was applied. The effect of vehicle braking was evaluated using the Weighted Injury Cost (WIC) of overall pedestrian injuries and the pedestrian-ground impact velocity change. The proximity of the vehicle and pedestrian at the instant of ground contact was also evaluated to assess the potential of future vehicle based intervention methods to cushion the ground contact. Finally real-world videos of pedestrian collisions were analyzed to estimate the available free vehicle stopping distances. Results showed substantial median reductions in WIC and head impact velocity for all vehicle shapes except the Van. The proximity of the pedestrian to the vehicle front at the instant of ground contact under controlled braking is less than 1.5 m in most cases, and the required stopping distance for the vehicle under controlled braking was within the available stopping distance estimated from the video footage in about 74% of cases. It is concluded that controlled braking has significant potential to reduce the overall burden of pedestrian ground contact injuries, but future efforts are required to establish an optimized braking strategy as well as a means to handle those cases where controlled braking is not beneficial or even harmful.
机译:数十年来,在地面接触阶段保护被撞行人一直是一项挑战。最近的研究表明,与地面相关的伤害如何受到行人运动学的影响。在本文中,我们通过评估控制车辆制动以减少行人地面接触伤害的潜力,进一步开发了这种方法。应用最近提出的模拟测试样本,使用MADYMO软件环境运行了一系列模拟。该方法考虑了6种车辆形状,4种行人模型,3种撞击速度和2种行人步态,并且每种情况都考虑了两种不同的车辆制动方法。第一种是完全制动,第二种是受控制动,为此应用了基于行人运动学的策略。使用总体行人伤害的加权伤害成本(WIC)和行人对地面的撞击速度变化来评估车辆制动的效果。还评估了车辆与行人在地面接触时的接近程度,以评估未来基于车辆的干预方法来缓冲地面接触的潜力。最后,对现实世界中行人碰撞的视频进行了分析,以估计可用的免费车辆停车距离。结果表明,除厢式货车外,所有其他形状的车辆的WIC和头部碰撞速度均大幅下降。在大多数情况下,在受控制动下的地面接触时刻,行人到车辆前部的距离小于1.5 m,并且受控制动下的车辆所需的停止距离在根据的视频录像估算的可用停止距离之内。约有74%的情况。结论是,受控制动具有减轻行人与地面接触伤害的总体负担的巨大潜力,但是需要未来的努力来建立优化的制动策略,以及处理那些受控制动无益甚至有害的情况的方法。

著录项

  • 来源
    《Accident Analysis & Prevention》 |2019年第8期|94-107|共14页
  • 作者单位

    Changsha Univ Sci & Technol, Sch Automobile & Mech Engn, Changsha 410114, Hunan, Peoples R China|Trinity Coll Dublin, Sch Engn, Ctr Bioengn, Dublin 2, Ireland|Key Lab Safety Design & Reliabil Technol Engn Veh, Changsha 410114, Hunan, Peoples R China;

    Trinity Coll Dublin, Sch Engn, Ctr Bioengn, Dublin 2, Ireland;

    Trinity Coll Dublin, Sch Engn, Ctr Bioengn, Dublin 2, Ireland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pedestrian vehicle accident; Ground contact; Braking; Weighted injury cost;

    机译:行人交通事故;地面接触;制动;重伤成本;

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