首页> 外文期刊>Traffic Injury Prevention >Evaluation of an Autonomous Braking System in Real-World PTW Crashes
【24h】

Evaluation of an Autonomous Braking System in Real-World PTW Crashes

机译:实际PTW碰撞中的自主制动系统评估

获取原文
获取原文并翻译 | 示例
           

摘要

Objectives: Powered 2-wheelers (PTWs) are becoming increasingly popular in Europe. They have the ability to get around traffic queues, thus lowering fuel consumption and increasing mobility. The risk of rider injury in a traffic crash is however much higher than that associated with car users. The European project, Powered Two Wheeler Integrated Safety (PISa), identified an autonomous braking system (AB) as a priority to reduce the injury consequences of a PTW crash. The aim of this study was to assess the potential effectiveness of the AB system developed in PISa, taking into account the specific system characteristics that emerged during the design, development and testing phases. Methods: Fifty-eight PTW cases representing European crash configurations were examined, in which 43 percent of riders sustained a Maximum Abbreviated Injury Scale (MAIS) 2+ injury. Two of the most common crash types were a PTW impacting a stationary object (car following scenario) 16% and an object pulling across the PTW path (crossing scenario) 54%. An expert team analysed the in-depth material of the sample crashes and determined a posteriori to what extent the AB would have affected the crash. For those cases where the AB was evaluated as applicable, a further quantitative evaluation of the benefits was conducted by considering a set of different possible rider reactions in addition to that exhibited in the actual crash. Results: In 67 percent of cases, the application of AB could have mitigated the crash outcome. Analysis of those real crash cases showed the potential for an expert rider to avoid the collision. An early reaction of the rider, associated with a correct application of the brakes would have avoided 18 of the 37 car following/crossing scenarios. Conversely, according to the analysis, an expert rider would not have been able to avoid 19 of the 37 cases. In 14 of those 19 cases, the AB would have contributed to mitigating the crash outcome. Conclusions: This study demonstrated significant potential for application of the autonomous braking system in car following and crossing scenarios. In addition, the theoretical benefit curves for the AB globally, were able to provide good quantitative indications of its benefits in real cases where the AB was considered applicable. Further analysis with larger databases is suggested in order to confirm the magnitude of benefits in the PTW crash population. Supplemental materials are available for this article. Go to the publisher's online edition of Traffic Injury Prevention to view the supplemental file.
机译:目标:电动两轮车(PTW)在欧洲变得越来越受欢迎。他们具有绕过交通队列的能力,从而降低了油耗并提高了机动性。然而,在交通事故中造成车手受伤的风险远高于与汽车使用者相关的风险。欧洲项目“两轮车安全集成动力系统”(PISa)将自动制动系统(AB)确定为优先任务,以减少PTW碰撞造成的伤害。这项研究的目的是评估在PISa中开发的AB系统的潜在有效性,同时考虑到在设计,开发和测试阶段出现的特定系统特性。方法:检查了58例代表欧洲碰撞情况的PTW案例,其中43%的骑手遭受了最大程度减量表(MAIS)2+伤害。两种最常见的碰撞类型是:PTW撞击固定物体(跟随车辆的情况)为16%,而拉过PTW路径的物体(穿越情况)为54%。一个专家小组分析了样本碰撞的深入资料,并确定了后验对AB将在多大程度上影响碰撞的后果。对于那些AB评估为适用的情况,除了考虑实际碰撞中表现出的骑手反应外,还考虑了一组其他可能的骑手反应,对收益进行了进一步的定量评估。结果:在67%的情况下,AB的应用可能会减轻碰撞结果。对那些实际的撞车事故的分析表明,专业骑手有可能避免撞车。与正确使用制动器相关的骑手的早期反应将避免在37个汽车追随/穿越情况中使用18个。相反,根据分析,专家骑手将无法避免37例中的19例。在这19个案例中的14个案例中,AB将有助于减轻坠机事故的后果。结论:这项研究证明了自动制动系统在汽车追随和穿越场景中的巨大潜力。此外,AB的全球理论收益曲线能够在认为AB适用的实际案例中提供良好的量化指标。建议使用更大的数据库进行进一步分析,以便确定PTW坠机事故所带来的好处。补充材料可用于本文。转到发布者的在线交通伤害预防在线版本以查看补充文件。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号