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Automated Driving System Collisions: Early Lessons

机译:自动驾驶系统碰撞:早期教训

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摘要

Objective: This research evaluated Automated Driving Systems (ADSs) involved collisions to identify factors relevant to future ADS research and development. Background: Rapidly developing ADSs promise improved safety, among other benefits. Properly applied collision research can inform ADS development, to minimize future collisions. Errors and failures that result in collisions come from sources including the system, ADS operators, and external factors including other drivers. Partially automated systems incorporate new equipment and procedures creating new sources of human error. Fully autonomous systems represent a new class of drivers that interact in unique ways. Method: ADS collision reports from the California Department of Motor Vehicles and the National Transportation Safety Board were collected. An expert in human factors and collision investigation analyzed and categorized the crashes while extracting common factors. Results: ADS vehicles were never at fault but were often affected from the rear during braking, turning, and gap acceptance maneuvers. Side impacts to ADS vehicles were related to passing vehicles and lane keeping behaviors. Unique incidents also provided additional insights. ADS collision rates cannot yet be determined with confidence. Conclusion: Conflicts that lead to collision-involvement with ADSs may be caused by differences between ADS and human driving behavior. Conservative ADS behavior may violate the expectations of other nearby human road users. Application: The findings from this work help inform the future development of ADS, as well as potentially the testing of ADS and the formation of policy to guide their future deployment.
机译:目的:本研究评估了涉及碰撞的自动驾驶系统(ADS),以确定与未来ADS研发相关的因素。背景:快速开发的ADS有望带来更高的安全性以及其他好处。正确应用碰撞研究可以为ADS开发提供信息,以最大程度地减少未来的碰撞。导致冲突的错误和故障来自系统,ADS操作员和其他驱动程序等外部因素。部分自动化的系统结合了新的设备和程序,从而创造了新的人为错误来源。完全自治的系统代表了以独特方式交互的新型驱动程序。方法:收集了来自加利福尼亚机动车局和美国国家运输安全委员会的ADS碰撞报告。人为因素和碰撞调查的专家在提取常见因素的同时对碰撞进行了分析和分类。结果:ADS车辆从不出故障,但在制动,转弯和间隙接纳操作中经常受到后部的影响。 ADS车辆的副作用与过往车辆和行车道行为有关。独特的事件还提供了其他见解。尚无法确定ADS碰撞率。结论:导致与ADS发生碰撞的冲突可能是由于ADS与人类驾驶行为之间的差异引起的。保守的ADS行为可能违反其他附近人道使用者的期望。应用:这项工作的发现有助于为ADS的未来发展提供信息,并有可能对ADS进行测试并制定指导其未来部署的政策。

著录项

  • 来源
    《Human Factors》 |2020年第2期|249-259|共11页
  • 作者

  • 作者单位

    Touchstone Evaluat Inc 440 Burroughs St 25 Detroit MI 48202 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    accident reconstruction; collision analysis; self-driving; autonomous vehicle;

    机译:事故重建;碰撞分析;自动驾驶;自动驾驶汽车;

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