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Issues and challenges for pedestrian active safety systems based on real world accidents

机译:基于现实世界事故的行人主动安全系统的问题和挑战

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摘要

The purpose of this study was to analyze real crashes involving pedestrians in order to evaluate the potential effectiveness of autonomous emergency braking systems (AEB) in pedestrian protection. A sample of 100 real accident cases were reconstructed providing a comprehensive set of data describing the interaction between the vehicle, the environment and the pedestrian all along the scenario of the accident. A generic AEB system based on a camera sensor for pedestrian detection was modelled in order to identify the functionality of its different attributes in the timeline of each crash scenario. These attributes were assessed to determine their impact on pedestrian safety. The influence of the detection and the activation of the AEB system were explored by varying the field of view (FOV) of the sensor and the level of deceleration. A FOV of 35 was estimated to be required to detect and react to the majority of crash scenarios. For the reaction of a system (from hazard detection to triggering the brakes), between 0.5 and 1 s appears necessary.
机译:这项研究的目的是分析涉及行人的实际碰撞,以评估自动紧急制动系统(AEB)在行人保护中的潜在效力。重建了100个实际事故案例的样本,提供了描述事故过程中车辆,环境和行人之间相互作用的全面数据。对基于行人检测的摄像头传感器的通用自动包围曝光系统进行了建模,以便在每个碰撞场景的时间轴中识别其不同属性的功能。对这些属性进行评估,以确定它们对行人安全的影响。通过改变传感器的视场(FOV)和减速水平来探索检测和自动包围曝光系统激活的影响。估计需要35 FOV才能检测大多数碰撞情况并对其做出反应。对于系统的反应(从危险检测到触发制动器),需要在0.5到1 s之间。

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