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PILOT STUDY OF ACCIDENT SCENARIOS ON A DRIVING SIMULATOR

机译:驾驶模拟器上事故情景的初步研究

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This paper presents a pilot experimental study carried out by the Laboratory of Accidentology and Biomechanics PSA Peugeot Citroen - RENAULT (LAB) and the European Center of Safety Studies and Risk Analysis (CEESAR) on the RENAULT ESTER motionless driving simulator. Sixty-eight drivers were exposed to a dangerous situation in which another car failed to stop at an intersection. Three distinct configurations were tested : vehicle coming from the right either at a constant speed or decelerating, or stationary vehicle moving-off from the left. Kinematic data and a video presenting the driver's face and the field of, view were recorded. After the driving session, drivers were interviewed by a psychologist of in-depth accident investigation teams in order to analyze their interpretation of the situation.rnThe analysis carried out is based on a comparison of the behavior (perceptions, interpretations, actions) of drivers who avoided the accident with the behavior of those who crashed. It points out different kinds of difficulties according to the configuration: problems of perception (angular limitations), anticipation (no anticipation of the possible motion of the adverse vehicle) or interpretation (incorrect estimation of the danger level). It provides a basis for the determination of avoidance strategies and the design of active crash avoidance systems (intelligent collision avoidance systems as well as active braking boosters) with the specification (triggering threshold) and efficiency assessment of such systems. This study also provides data for accident reconstruction (e.g. reaction time in accident situations, motion perception threshold...).
机译:本文介绍了PSA标致雪铁龙事故与生物力学实验室-RENAULT(LAB)和欧洲安全研究与风险分析中心(CEESAR)在RENAULT ESTER静止驾驶模拟器上进行的一项试验性实验研究。 68名驾驶员面临着危险状况,其中另一辆车未能在十字路口停车。测试了三种不同的配置:以恒定速度或减速从右侧驶来的车辆,或从左侧驶出的静止车辆。记录了运动数据和呈现驾驶员面部和视野的视频。驾驶会议结束后,深入事故调查小组的心理学家对驾驶员进行了采访,以分析他们对情况的理解。rn进行的分析是基于对驾驶员行为(感知,解释,行动)的比较而得出的。通过撞车的行为避免了事故的发生。它根据配置指出了不同类型的困难:感知(角度限制),预期(对不良车辆可能的运动没有预期)或解释(对危险等级的错误估计)的问题。它为确定避免策略和设计主动碰撞避免系统(智能碰撞避免系统以及主动制动助力器)提供了基础,并具有规范(触发阈值)和此类系统的效率评估。该研究还提供了用于事故重建的数据(例如事故情况下的反应时间,运动感知阈值...)。

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