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Effect of Driver Posture on Driving Characteristics when Control is Passed from an Autonomous Driving System to a Human Driver

机译:驱动器姿势对控制当从自主驱动系统传递给人司机时的驾驶特性的影响

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SAE International defines six levels of autonomous driving system, four of which include a change of control from the system to the driver in certain conditions. When vehicle control changes from the system to a human driver, a safe transition time is necessary. The present study focuses on level 3 automation, in which the system controls driving in ordinary conditions, but the human driver is expected to intervene in emergency situations. The aim of this study was to investigate the relationship between driver posture and transition time. Driver posture included four components: backrest angle, seat position, foot position, and arm position. These were adjusted to investigate a total of 30 posture patterns. In addition, the situation in which the driver was not watching the road, but instead using a tablet computer was investigated. The driver’s braking and steering reaction times were measured for a highway-driving scenario in which a truck dropped cargo in front of the vehicle. Acoustic and optical warnings were presented to the driver when the autonomous driving system was disengaging. The results showed that the driver’s foot position most strongly affected braking reaction time. The driver resting their chin on their hands most strongly affected steering reaction time. This research clarified the effect of relaxed driver posture on reaction time and, thus, transition time.
机译:SAE International定义了六个级别的自主驱动系统,其中四个包括在某些条件下从系统控制到驾驶员的控制。当车辆控制从系统到人驾驶员的变化时,需要安全的过渡时间。本研究重点介绍3级自动化,其中系统控制在普通条件下驾驶,但预计人员驾驶员将在紧急情况下进行干预。本研究的目的是调查驾驶员姿势与过渡时间之间的关系。司机姿势包括四个组件:靠背角度,座椅位置,脚位置和臂位置。调整这些以调查总共30个姿势模式。此外,驾驶员未观看道路的情况,而是使用平板电脑进行了调查。测量驾驶员的制动和转向反应时间,用于高速驾驶场景,其中卡车在车辆前面丢弃货物。当自动驾驶系统脱离时,声音和光学警告呈现给驾驶员。结果表明,驾驶员的脚位置最强烈影响制动反应时间。司机在他们的手上休息下巴最强烈影响转向反应时间。本研究阐明了宽松驱动器姿势对反应时间的影响,从而阐述了过渡时间。

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