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A Methodology for the Geometric Standardization of Vehicle Hoods to Compare Real-World Pedestrian Crashes

机译:汽车引擎盖几何标准化的方法论以比较现实世界中的行人碰撞

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摘要

This paper describes a standardization method that allows injury researchers to directly compare pedestrian hood contact points across a variety of hood sizes and geometries. To standardize hood contact locations a new coordinate system was created at the geometric center of the hood. Standardizing hood contact locations was done by turning each coordinate location into a ratio of the entire length or width of the hood. The standardized pedestrian contact locations could then be compared for various hood sizes. The standardized hood was divided into a three-by-three grid to aggregate contact points into hood regions. Data was obtained from the National Highway Traffic Safety Administration’s Pedestrian Crash Data Study from 1994 to 1998. To understand injury severity with respect to pedestrian hood contact location, the injuries were narrowed to the single most severe Abreviated Injury Scale injury to the pedestrian and hood location at which that injury was sustained. Of the 97 pedestrian/vehicle cases, pedestrians received 270 injuries from 141 unique hood contact locations. After standardization, 36%, 28%, 36% of all contact points were located on the left, center and right side of the hood respectively. Vertically, 26%, 45%, 28% of contacts occurred at the front, middle, and rear regions of the hood respectively. The middle passenger side of the hood contained the most number of AIS 3+ injuries. By using real-world crash data, engineers can make evidence based decisions to decease the severity of pedestrian injuries.
机译:本文介绍了一种标准化方法,该方法可使伤害研究人员直接比较各种尺寸和几何形状的行人引擎盖接触点。为了使引擎盖接触位置标准化,在引擎盖的几何中心创建了一个新的坐标系。通过将每个坐标位置转换为引擎盖整个长度或宽度的比例,可以实现引擎盖接触位置的标准化。然后可以比较标准的行人接触位置,以了解各种尺寸的引擎盖。标准化的引擎盖分为三乘三网格,以将接触点聚集到引擎盖区域。数据来自1994年至1998年美国国家公路交通安全管理局的行人碰撞数据研究。为了了解与行人引擎盖接触位置有关的伤害严重程度,将伤害范围缩小到行人和引擎盖位置的单一最严重的轻度伤害等级伤害在那个伤害持续。在97个行人/车辆案件中,行人从141个单独的引擎盖接触位置受伤270人。标准化后,所有接触点的36%,28%,36%分别位于引擎盖的左侧,中央和右侧。在垂直方向上,分别有26%,45%和28%的接触发生在引擎盖的前部,中部和后部。引擎盖的中间乘客侧受到的AIS 3+伤害最多。通过使用真实的碰撞数据,工程师可以做出基于证据的决策,以降低行人受伤的严重性。

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