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Study of the Measurement of Generation 2 Toyota Event Data Recorders in Low-Speed Side Impacts

机译:研究低速侧面撞击的第2代丰田事件数据记录器的测量研究器

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Automotive Event Data Recorders (EDRs) are often utilized to determine or validate the severity of vehicle collisions. Several studies have been conducted to determine the accuracy of the longitudinal change in velocity (ΔV) reported by vehicle EDRs. However, little has been published regarding the measurement of EDRs that are capable of reporting lateral ΔVs in low-speed collisions. In this study, two 2007 Toyota Camrys with 04EDR ECU Generation modules (GEN2) were each subjected to several vehicle-to-vehicle lateral impacts. The impact angles ranged from approximately 45 to 135 degrees and the stationary target vehicles were impacted at the frontal, central, and rear aspects of both the driver and passenger sides. The impact locations on the bullet vehicles were the front and rear bumpers and the impact speeds ranged from approximately 7.9 to 16.1 km/h. Instrumentation was mounted at the approximate center of gravity (CG) of the target vehicles, as well as on the front reinforcement bar, rear body panel, airbag ECU, B-pillars, and C-pillars to evaluate the varying lateral ΔV (ΔV_y) readings from the 3 sensor locations (ECU, B-pillar, C-pillar) represented in the Toyota EDR and to account for rotational (yaw) effects on the data. The lateral ΔVs reported by the Toyota EDRs were then compared to the recorded ΔV_ys from the reference instrumentation mounted within the test vehicles. A comparison of the data revealed a general under-reporting of impact severity from the Toyota EDRs at the ECU sensor when compared to reference instrumentation at the vehicle CG for impacts near the center of the target vehicle where the vehicle typically rotated about its frontal aspect. There was a general over-reporting of impact severity from the Toyota EDRs at the ECU sensor when compared to reference instrumentation at the vehicle CG for impacts near the front (heavy) axle of the target vehicle where the vehicle rotated about its rear aspect. Rotational data from the reference instrumentation and the distance between the ECU and reference instrumentation at the CG was also utilized to calculate the corresponding ΔV_y at the ECU location for a direct comparison to the Toyota EDR measurement at the ECU (maximum of 12.0% difference). A comparison of the data recorded at the Toyota ECU sensors and the reference instrumentation mounted to the ECUs revealed accurate measurements by the Toyota ECU sensor (maximum of 7.6% difference). Differences in reported values between the 3 aforementioned Toyota sensor locations, as well as non-recordings and longitudinal ΔV recordings from the Toyota EDRs were also evaluated.
机译:汽车事件数据记录器(EDRS)通常用于确定或验证车辆碰撞的严重性。已经进行了几项研究,以确定车辆EDRS报告的纵向变化(ΔV)的准确性。但是,关于能够在低速碰撞中报告横向ΔV的EDR的测量,几乎没有发表。在这项研究中,两个具有04EDR ECU生成模块(GEN2)的2007年丰田凯美瑞(Toyota Camrys)均受到多个车辆对车的横向撞击。冲击角度的范围约为45至135度,固定目标车辆受到驾驶员和乘客侧的额叶,中央和后方的影响。子弹车辆的冲击位置是前保险杠和后保险杠,冲击速度约为7.9至16.1 km/h。仪器安装在目标车辆的重心(CG),以及前加固杆,后身体面板,安全气囊ECU,B柱和C柱上,以评估不同的侧向ΔV(ΔV_Y) Toyota EDR中代表的3个传感器位置的读数(ECU,B柱,C柱),以说明对数据的旋转(YAW)效应。然后将丰田EDR报告的侧向ΔV与来自测试车辆中安装的参考仪器的记录ΔV_YS进行了比较。数据的比较表明,与车辆CG处的参考仪器相比,Toyota EDRS的影响严重程度的总体报道不足,因为在目标车辆中心附近的撞击中,车辆通常围绕其前部旋转。与车辆CG处的参考仪器相比,Toyota EDRS的影响严重程度普遍报告了,因为在车辆CG处的参考仪器在目标车辆的前轴附近(重)轴附近的撞击,该车辆在其后部旋转了车辆。还利用了来自参考仪器的旋转数据以及CG处的ECU和参考仪器之间的距离来计算ECU位置的相应ΔV_Y,以直接与ECU的Toyota EDR测量直接比较(最大差异为12.0%)。丰田ECU传感器记录的数据和安装在ECUS上的参考仪器的比较揭示了Toyota ECU传感器的准确测量(最大差异为7.6%)。还评估了来自Toyota EDRS的未录制和纵向ΔV记录之间的3个上述丰田传感器位置之间报告值的差异。

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