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Gap Acceptance During Lane Changes by Large-Truck Drivers—An Image-Based Analysis

机译:大型卡车驾驶员改变车道时的间隙接受度-基于图像的分析

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摘要

This paper presents an analysis of rearward gap acceptance characteristics of drivers of large trucks in highway lane change scenarios. The range between the vehicles was inferred from camera images using the estimated lane width obtained from the lane tracking camera as the reference. Six-hundred lane change events were acquired from a large-scale naturalistic driving data set. The kinematic variables from the image-based gap analysis were filtered by the weighted linear least squares in order to extrapolate them at the lane change time. In addition, the time-to-collision and required deceleration were computed, and potential safety threshold values are provided. The resulting range and range rate distributions showed directional discrepancies, i.e., in left lane changes, large trucks are often slower than other vehicles in the target lane, whereas they are usually faster in right lane changes. Video observations have confirmed that major motivations for changing lanes are different depending on the direction of move, i.e., moving to the left (faster) lane occurs due to a slower vehicle ahead or a merging vehicle on the right-hand side, whereas right lane changes are frequently made to return to the original lane after passing.
机译:本文分析了在高速公路车道变更场景下大型卡车驾驶员的后向间隙接受特性。使用从车道跟踪摄像机获得的估计车道宽度作为参考,从摄像机图像推断车辆之间的距离。从大规模的自然驾驶数据集获得了六百个车道变更事件。通过加权线性最小二乘法对来自基于图像的间隙分析的运动学变量进行滤波,以便在车道变更时间外推它们。此外,还计算了碰撞时间和所需的减速时间,并提供了潜在的安全阈值。所得的距离和距离率分布显示方向差异,即在左车道变更中,大型卡车通常比目标车道中的其他车辆慢,而在右车道变更中它们通常更快。视频观察已经证实,改变行车道的主要动机因移动方向而异,即,由于前方行驶的车辆速度较慢或右侧的车辆合并而向左(较快)行车线移动,而右行车道则为右行车道经过更改后,通常会进行更改以返回到原始车道。

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