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Pedestrian/Bicyclist Limb Motion Analysis from 110-Car TASI Video Data for Autonomous Emergency Braking Testing Surrogate Development

机译:110辆车TASI视频数据的行人/自行车肢体运动分析自主应急制动测试代理开发

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Many vehicles are currently equipped with active safety systems that can detect vulnerable road users like pedestrians and bicyclists, to mitigate associated conflicts with vehicles. With the advancements in technologies and algorithms, detailed motions of these targets, especially the limb motions, are being considered for improving the efficiency and reliability of object detection. Thus, it becomes important to understand these limb motions to support the design and evaluation of many vehicular safety systems. However in current literature, there is no agreement being reached on whether or not and how often these limbs move, especially at the most critical moments for potential crashes. In this study, a total of 832 pedestrian walking or cyclist biking cases were randomly selected from one large-scale naturalistic driving database containing 480,000 video segments with a total size of 94TB, and then the 832 video clips were analyzed focusing on their limb motions. We modeled the pedestrian/bicyclist limb motions in four layers: (1) the percentages of pedestrians and bicyclists who have limb motions when crossing the road; (2) the averaged action frequency and the corresponding distributions on when there are limb motions; (3) comparisons of the limb motion behavior between crossing and non-crossing cases; and (4) the effects of seasons on the limb motions when the pedestrians/bicyclists are crossing the road. The results of this study can provide empirical foundations supporting surrogate development, benefit analysis, and standardized testing of vehicular pedestrian/bicyclist detection and crash mitigation systems.
机译:许多车辆目前都配备了有源安全系统,可以检测弱势道路用户,如行人和​​骑自行车的人,以减轻与车辆的相关冲突。随着技术和算法的进步,正在考虑这些目标的详细运动,尤其是肢体运动,以提高物体检测的效率和可靠性。因此,了解这些肢体动作变得重要,以支持许多车辆安全系统的设计和评估。然而,在目前的文献中,无论是否以及这些四肢移动,都没有达成协议,特别是在潜在崩溃的最关键时刻。在这项研究中,共有832个行人步行或骑车人骑自行车盒从一个大规模的自然主义的行驶数据库中随机选择,其中总大小为94TB,然后分析了832个视频剪辑的关注在肢体运动上。我们在四层中建模了行人/骑自行车的肢体运动:(1)在过马路时,有肢体运动的行人和骑自行车者的百分比; (2)当存在肢体运动时平均动作频率和相应的分布; (3)交叉和非过交叉病例之间的肢体运动行为的比较; (4)当行人/骑自行车者穿过道路时,季节对肢体运动的影响。本研究的结果可以提供支持替代开发,益处分析和车辆行人/自行车检测和碰撞缓解系统的标准化测试的实证基础。

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