首页> 外文期刊>SAE International Journal of Passenger Cars - Electronic and Electrical Systems >Extension of the Honda-DRI 'Safety Impact Methodology' (SIM) for the NHTSA Advanced Crash Avoidance Technology (ACAT) II Program and Application to the Evaluation of a Pre-Production Head-On Crash Avoidance Assist System - Progress Report
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Extension of the Honda-DRI 'Safety Impact Methodology' (SIM) for the NHTSA Advanced Crash Avoidance Technology (ACAT) II Program and Application to the Evaluation of a Pre-Production Head-On Crash Avoidance Assist System - Progress Report

机译:NHTSA高级防撞技术(ACAT)II程序的本田DRI“安全影响方法”(SIM)的扩展,以及在生产前的防撞辅助系统评估中的应用-进展报告

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This paper reports on the interim progress of the Honda-DRI ACAT-II program initiated by the National Highway Traffic Safety Administration (NHTSA). The objectives of the ACAT-II program were further development of a formalized Safety Impact Methodology (SIM) for estimating the capability of advanced technology applications installed in vehicles to address specific types of motor vehicle crashes, and to evaluate driver acceptance of the technologies. This particular ACAT study extended earlier work by Honda and DRI in the NHTSA ACAT-I program by extending the SIM so as to be able to analyze head-on crashes more completely, and by using the extended SIM to evaluate of a pre-production version of a Honda Head-on Crash Avoidance Assist System (HCAAS). More than 25 substantial SIM extensions and refinements were implemented, including: updated and extended FARS and NASS database extractions; improving the accident reconstruction process for NASS/CDS cases and developing a new special purpose reconstruction algorithm applicable to head-on cases with low lateral acceleration "drifts;" extending the driver-vehicle-ACAT environment simulation to include a post-conflict recovery phase; and further automating the overall safety benefits evaluation steps. The extended SIM and results from objective tests were used to evaluate the safety impact of Honda's pre-production H-CAAS based on a large number of simulations of a sample of reconstructed real-world head-on crashes. The effectiveness of the H-CAAS in reducing the number of two-vehicle "Same Trafficway, Opposite Direction" crashes (including non-H-CAAS technology relevant crashes) and fatalities if the H-CAAS were installed on one of the crash involved vehicles were estimated based on simulation results. The overall benefits of the H-CAAS, in terms of reduction in number of crashes and fatalities, when projected to the US level were also determined. Overall, this ACAT-II program was successful in extending a methodology that can be used to estimate the safety benefits and driver acceptance of frontal crash avoidance and mitigation countermeasures.
机译:本文报告了由国家公路交通安全管理局(NHTSA)发起的Honda-DRI ACAT-II计划的中期进展。 ACAT-II计划的目标是进一步开发正式的安全影响方法论(SIM),以评估安装在车辆中的先进技术应用程序解决特定类型的机动车碰撞并评估驾驶员对该技术的接受程度。这项特殊的ACAT研究扩展了本田汽车公司和DRI在NHTSA ACAT-I程序中的早期工作,方法是扩展SIM卡,以便能够更全面地分析正面碰撞,并使用扩展的SIM卡评估预生产版本本田正面碰撞避免辅助系统(HCAAS)的示意图。实施了25多项重要的SIM扩展和改进,包括:更新和扩展的FARS和NASS数据库提取;改进NASS / CDS案例的事故重建过程,并开发一种适用于低横向加速度“漂移”的正面案例的新的专用重建算法;扩展驾驶员-车辆-ACAT环境模拟,以包括冲突后恢复阶段;并进一步自动化总体安全效益评估步骤。扩展的SIM卡和来自客观测试的结果用于对本田试生产的H-CAAS的安全性进行评估,该模拟基于对重构的现实世界正面碰撞示例的大量模拟。 H-CAAS在减少两辆“同一车道,相反方向”碰撞(包括与非H-CAAS技术相关的碰撞)中撞车的数量上的有效性以及如果将H-CAAS安装在其中一辆涉及撞车的车辆上而导致的死亡人数根据模拟结果进行估算。还确定了H-CAAS在减少到坠机和死亡人数方面的总体优势(预计达到美国水平)。总体而言,该ACAT-II计划成功地扩展了一种方法,该方法可用于评估安全性以及驾驶员对避免正面碰撞和缓解对策的接受程度。

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