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Driving style indicator using UDRIVE NDS data

机译:使用UDRIVE NDS数据驾驶风格指示器

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Objective: In order to analyze specific events while driving (such as a safety critical event [SCE] or secondary task), we were interested in studying whether driving behavior was unusual around the event. An indicator characterizing driving style (driving style indicator [DSI]) was estimated for each driver by using naturalistic data. The analysis of the gap in driving style could be calculated for a specific trip or even a time window and could help characterize events: a more risky situation when DSI was above average, increase in safety margins when under average.Methods: Lateral acceleration and longitudinal acceleration were used for DSI calculation. The first step consisted in filtering the signal acquired by the inertial measurement unit (60Hz). The noise was filtered out with an eighth order, phase-compensated digital low-pass Butterworth filter with a cut-out frequency of 5Hz and offsets were compensated for. The second step consisted in calculating the jerk of the acceleration in lateral and longitudinal directions for each trip. The third step summarized the distribution of these jerks for all trips of each driver. Finally, the DSI was defined as the standard deviation of this distribution. A driver was represented by lateral DSI and longitudinal DSI.Results: The indicator was used on French pilot data (10 drivers) and on UK data (30 drivers) from the UDRIVE project. To assess this indicator, tests on track were conducted by professional drivers simulating two opposite driving style. The first results were promising and discriminated a smooth from a rough driving style. Indeed, in the pilot data, the classification was in accordance with our expectations and confirmed by videos. The same kind of distribution was observed in the UK data and needs to be confirmed when the UDRIVE database is complete.Conclusion: DSI is a new parameter that will be used to define clusters of drivers and study variation of driving parameters in each class during selected events (SCE, secondary task, etc.) in the UDRIVE project.
机译:目标:为了在驾驶时分析特定事件(例如安全关键事件[SCE]或二次任务),我们有兴趣研究驾驶行为是否在此次活动中是不寻常的。使用自然主义数据估计每个驱动器的指示灯表征驾驶风格(驱动样式指示灯[DSI])。可以对特定旅行甚至时间窗口计算驾驶风格间隙的分析,并且可以帮助表征事件:当DSI高于平均水平时,更有危险的情况,在平均值下降。方法:横向加速度和纵向加速用于DSI计算。在过滤由惯性测量单元(60Hz)获取的信号中的第一步。用第八顺序滤除噪声,相位补偿的数字低通巴特韦尔滤波器,截止频率为5Hz和偏移。第二步包括计算每个行程的横向和纵向方向上的加速度的混凝剂。第三步总结了每个驱动程序的所有旅行的这些混蛋的分布。最后,DSI被定义为该分布的标准偏差。驾驶员由横向DSI和纵向DSI.Results表示:指标用于法国导频数据(10个驱动程序)和来自UDRIVE项目的英国数据(30个驱动程序)。为了评估该指标,专业司机正在模拟两个相反的驾驶风格的专业司机进行测试。第一个结果与粗暴的驾驶风格有望和歧视。实际上,在试点数据中,分类符合我们的期望并通过视频确认。在英国数据中观察到同样的分布,需要在UDRIVE数据库完成时确认。配置:DSI是一个新参数,用于定义所选过程中每个类中的驱动器参数的群集和研究变化UDRIVE项目中的事件(SCE,二级任务等)。

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