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Accuracy of Speed Change Measured by Event Data Recorders during Oblique Offset Frontal Impacts

机译:在倾斜偏移额的影响期间,事件数据记录器测得的速度变化的准确性

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摘要

Data downloaded from event data recorders (EDRs) integrated into the airbag systems of passenger vehicles can be key evidence for collision investigators. Often the EDR data includes information about the severity of the collision in terms of the longitudinal and lateral speed changes experienced by the vehicle. Previous studies have shown that for collisions with small lateral speed changes, the accuracy of the reported longitudinal speed change varies with manufacturer and magnitude. The goal of this study was to quantify the accuracy of EDR-reported speed changes in high-speed angled collisions with larger lateral speed change components. Data from 25 crash tests conducted for the National Highway Traffic Safety Administration's (NHTSA's) Oblique Offset Frontal Impact Research and Development Program were used in this study. The accuracy of the EDR-reported speed change was evaluated by comparing it to the longitudinal and lateral speed changes integrated from the independent reference accelerometers at the vehicle's center of gravity. For vehicles with EDRs that also reported acceleration data, the speed change calculated by integrating the EDR-reported acceleration data was also compared to the speed change integrated from the reference accelerometers. The largest errors were seen in the two 2015 Honda Fit tests that under reported the longitudinal speed change by about 10 km/h. Although the average differences between the EDR-based speed change and the reference speed change were not significantly different from zero, the range of errors was large and varied between the different methods of extracting speed change and between the different components of the speed change The errors on EDR-reported longitudinal and lateral speed changes led to errors on the resultant speed change of up to 12 km/h under or 5 km/h over the actual speed change. The absolute errors for the longitudinal and lateral components of the speed change were similar but their relative errors were not. The speed changes computed by integrating the EDR's acceleration data were on average less accurate than the speed changes reported and tabled in the EDR reports. The errors on the resultant speed change calculated from integrating the EDR-reported accelerations were up to 18 km/h under or 10 km/h over the actual speed change. There was considerable variation in the accuracy for different vehicle makes and models, with the largest errors observed in some Honda vehicles. The results of this study improve our understanding of the accuracy of EDR-reported speed change in high-severity angled collisions.
机译:从集成到乘用车的安全气囊系统的事件数据记录器(EDRS)下载的数据可能是碰撞调查人员的关键证据。通常,EDR数据包括有关车辆所经历的纵向变化和横向速度变化的信息。先前的研究表明,对于横向速度变化较小的碰撞,报告的纵向速度变化的准确性随制造商和幅度而变化。这项研究的目的是量化EDR报告的高速变化碰撞速度变化的准确性,并具有较大的侧向速度变化组件。本研究使用了针对国家公路交通安全管理局(NHTSA)的倾斜偏移额局部影响研发计划进行的25项崩溃测试的数据。通过将EDR报告的速度变化的准确性与从车辆重心的独立参考加速度计集成的纵向和横向速度变化进行了比较来评估。对于还报告了加速数据的EDR的车辆,还将通过整合EDR报告的加速度数据计算的速度变化与参考加速度计集成的速度变化进行了比较。在2015年本田拟合测试中,最大的错误是在报告纵向速度变化约10 km/h的情况下。尽管基于EDR的速度变化和参考速度变化之间的平均差异与零没有显着差异,但误差范围很大,并且在不同的提取速度变化的不同方法之间以及速度的不同组件之间的变化变化。在EDR报告的纵向和横向速度变化上,导致在实际速度变化以下最多12 km/h或5 km/h的最大速度变化上。速度变化的纵向和横向成分的绝对误差相似,但它们的相对误差却不相似。通过集成EDR的加速度数据计算得出的速度变化的准确性要比报告的速度变化不足,而在EDR报告中提出的速度变化。通过集成EDR报告的加速度计算出的最终速度变化的误差在实际速度更改以下或10 km/h以下或10 km/h以下最高18 km/h。不同车辆制造和型号的准确性有很大的差异,在某些本田汽车中观察到最大的错误。这项研究的结果提高了我们对EDR报告的高度角度碰撞速度变化准确性的理解。

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