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车辆转向策略对行人头部损伤严重程度的影响

Impact of Vehicle Steering Strategy on the Severity of Pedestrian Head Injury.

作者信息

Wang Danqi, Deng Wengang, Wu Lintao, Xin Li, Xie Lizhe, Zhang Honghao

机构信息

State Key Laboratory of Automotive Simulation and Control, Jilin University, Changchun 130012, China.

School of Automobile and Mechanical Engineering, Changsha University of Science and Technology, Changsha 410114, China.

出版信息

Biomimetics (Basel). 2024 Sep 30;9(10):593. doi: 10.3390/biomimetics9100593.

Abstract

In response to the sudden violation of pedestrians crossing the road, intelligent vehicles take into account factors such as the road conditions in the accident zone, traffic rules, and surrounding vehicles' driving status to make emergency evasive decisions. Thus, the collision simulation models for pedestrians and three types of vehicles, i.e., sedans, Sport Utility Vehicles (SUVs), and Multi-Purpose Vehicle (MPVs), are built to investigate the impact of vehicle types, vehicle steering angles, collision speeds, collision positions, and pedestrian orientations on head injuries of pedestrians. The results indicate that the Head Injury Criterion (HIC) value of the head increases with the increase in collision speed. Regarding the steering angles, when a vehicle's steering direction aligns with a pedestrian's position, the pedestrian remains on top of the vehicle's hood for a longer period and moves together with the vehicle after the collision. This effectively reduces head injuries to pedestrians. However, when the vehicle's steering direction is opposite to the pedestrian's position, the pedestrian directly collides with the ground, resulting in higher head injuries. Among them, MPVs cause the most severe injuries, followed by SUVs, and sedans have the least impact. Overall, intelligent vehicles have great potential to reduce head injuries of pedestrians in the event of sudden pedestrian-vehicle collisions by combining with Automatic Emergency Steering (AES) measures. In the future, efforts need to be made to establish an optimized steering strategy and optimize the handling of situations where steering is ineffective or even harmful.

摘要

针对行人突然违规横穿马路的情况,智能车辆会综合考虑事故区域的道路状况、交通规则以及周围车辆的行驶状态等因素,做出紧急避让决策。因此,构建了行人与轿车、运动型多用途汽车(SUV)和多用途汽车(MPV)这三种车辆的碰撞仿真模型,以研究车辆类型、车辆转向角度、碰撞速度、碰撞位置和行人方向对行人头部损伤的影响。结果表明,头部的头部损伤准则(HIC)值随碰撞速度的增加而增大。关于转向角度,当车辆的转向方向与行人位置对齐时,行人会在车辆引擎盖上停留更长时间,并在碰撞后与车辆一起移动。这有效地减少了对行人的头部损伤。然而,当车辆的转向方向与行人位置相反时,行人会直接与地面碰撞,导致更高的头部损伤。其中,MPV造成的损伤最严重,其次是SUV,轿车的影响最小。总体而言,智能车辆通过结合自动紧急转向(AES)措施,在行人与车辆突然碰撞的情况下,具有极大的潜力减少行人的头部损伤。未来,需要努力建立优化的转向策略,并优化转向无效甚至有害情况下的应对措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55ec/11506353/b316fd4630f5/biomimetics-09-00593-g001.jpg

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