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How to quantitatively evaluate safety of driver behavior upon accident? A biomechanical methodology

机译:如何定量评估驾驶员在发生事故时的行为安全性?生物力学方法

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摘要

How to evaluate driver spontaneous reactions in various collision patterns in a quantitative way is one of the most important topics in vehicle safety. Firstly, this paper constructs representative numerical crash scenarios described by impact velocity, impact angle and contact position based on finite element (FE) computation platform. Secondly, a driver cabin model is extracted and described in the well validated multi-rigid body (MB) model to compute the value of weighted injury criterion to quantitatively assess drivers’ overall injury under certain circumstances. Furthermore, based on the coupling of FE and MB, parametric studies on various crash scenarios are conducted. It is revealed that the WIC (Weighted Injury Criteria) value variation law under high impact velocities is quite distinct comparing with the one in low impact velocities. In addition, the coupling effect can be elucidated by the fact that the difference of WIC value among three impact velocities under smaller impact angles tends to be distinctly higher than that under larger impact angles. Meanwhile, high impact velocity also increases the sensitivity of WIC under different collision positions and impact angles. Results may provide a new methodology to quantitatively evaluate driving behaviors and serve as a significant guiding step towards collision avoidance for autonomous driving vehicles.
机译:如何以量化方式评估驾驶员在各种碰撞模式下的自发反应,是车辆安全中最重要的主题之一。首先,基于有限元(FE)计算平台,构造了具有代表性的数值碰撞场景,由碰撞速度,碰撞角度和接触位置来描述。其次,提取驾驶室模型并在经过充分验证的多刚体(MB)模型中进行描述,以计算加权伤害标准的值,从而在某些情况下定量评估驾驶员的整体伤害。此外,基于FE和MB的耦合,对各种碰撞情况进行了参数研究。结果表明,高冲击速度下的WIC(加权伤害准则)值变化规律与低冲击速度下的WIC值变化规律非常不同。另外,可以通过以下事实来阐明耦合效果:在较小的冲击角下,三个冲击速度之间的WIC值差异往往明显大于在较大的冲击角下的WIC值差异。同时,高碰撞速度还提高了WIC在不同碰撞位置和碰撞角度下的灵敏度。结果可能提供一种定量评估驾驶行为的新方法,并且可以作为自动驾驶汽车避免碰撞的重要指导步骤。

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