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基于主动与被动安全系统相结合的智能车辆行人头部损伤分层预测方法

A Hierarchical Prediction Method for Pedestrian Head Injury in Intelligent Vehicle with Combined Active and Passive Safety System.

作者信息

Shi Liangliang, Zhang Honghao, Wu Lintao, Liu Yu, Cheng Kuo, Han Yong, Wang Danqi

机构信息

State Key Laboratory of Vehicle NVH and Safety Technology, China Automotive Engineering Research Institute Co., Ltd., Chongqing 401122, China.

Key Laboratory of High Efficiency and Clean Mechanical Manufacture (Ministry of Education), School of Mechanical Engineering, Shandong University, Jinan 250061, China.

出版信息

Biomimetics (Basel). 2024 Feb 21;9(3):124. doi: 10.3390/biomimetics9030124.

Abstract

With the development of intelligent vehicle technology, the probability of road traffic accidents occurring has been effectively reduced to a certain extent. However, there is still insufficient research on head injuries in human vehicle collisions, making it impossible to effectively predict pedestrian head injuries in accidents. To study the efficacy of a combined active and passive safety system on pedestrian head protection through the combined effect of the exterior airbag and the braking control systems of an intelligent vehicle, a "vehicle-pedestrian" interaction system is constructed in this study and is verified by real collision cases. On this basis, a combined active and passive system database is developed to analyze the cross-influence of the engine hood airbag and the vehicle braking curve parameters on pedestrian HIC (head injury criterion). Meanwhile, a hierarchy design strategy for a combined active and passive system is proposed, and a rapid prediction of HIC is achieved via the establishment of a fitting equation for each grading. The results show that the exterior airbag can effectively protect the pedestrian's head, prevent the collision between the pedestrian's head and the vehicle front structure, and reduce the HIC. The braking parameter is significantly correlated with head injury, and when is less than 1.8, the HIC value is less than 1000 in nearly 90% of cases. The hierarchy design strategy and HIC prediction method of the combined active and passive system proposed in this paper can provide a theoretical basis for rapid selection and parameter design.

摘要

随着智能车辆技术的发展,道路交通事故发生的概率在一定程度上得到了有效降低。然而,对于人车碰撞中头部损伤的研究仍显不足,无法有效预测事故中行人的头部损伤情况。为了通过智能车辆的外部安全气囊和制动控制系统的联合作用,研究主动与被动安全系统组合对行人头部保护的效果,本研究构建了“车辆 - 行人”交互系统,并通过实际碰撞案例进行了验证。在此基础上,开发了主动与被动系统组合数据库,以分析发动机罩安全气囊和车辆制动曲线参数对行人头部损伤准则(HIC)的交叉影响。同时,提出了主动与被动系统组合的分层设计策略,并通过建立各分级的拟合方程实现了对HIC的快速预测。结果表明,外部安全气囊能够有效保护行人头部安全,防止行人头部与车辆前部结构发生碰撞,并降低HIC值。制动参数与头部损伤显著相关,当制动参数小于1.8时,近90%的情况下HIC值小于1000。本文提出的主动与被动系统组合的分层设计策略和HIC预测方法可为快速选型和参数设计提供理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7c5/10968425/fb09920a20f1/biomimetics-09-00124-g001.jpg

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