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Analysis of the driving behaviour at weaving section using multiple traffic surveillance data

机译:用多种交通监控数据分析编织段的驾驶行为

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摘要

Weaving sections are formed when a merge area is closely followed by a diverging area, or when an entry slip road is closely followed by an exit slip road and the two are joined by an auxiliary lane. Driving in the weaving section involves complex car-following and lane-changing interactions. This paper presents two empirical data collection and data extraction processes based on traffic surveillance camera and loop detector measurements. It examines the quality of the extracted data, and highlights the possible sources of measurement errors considering that the speed and acceleration are varied significantly. This paper proposes locally weighted regression method for data cleaning and presents example results to demonstrate the method by combining the two data sources. The study succeeds in identifying some key driving characteristics of vehicles in the weaving section. We found that 25.25% of the weaving movements took place in the first 50-100 meters from the point of merge. Around 30% of the total traffic involved in one lane-changing movement. Meanwhile, the transit time for the driver with more than one lane-changing is 4.09 sec in average. The appearance of auxiliary lane in the weaving section provides further opportunity to delay the lane-changing, which affects the traffic performance.
机译:当合并区域紧跟在分支区域之后,或者当入口支路紧跟在出口支路之后,并且两者通过辅助车道汇合时,形成编织部分。在织造区驾驶涉及复杂的跟车和变道交互。本文介绍了两种基于交通监控摄像头和环路检测器测量的经验数据收集和数据提取过程。它检查提取数据的质量,并考虑到速度和加速度的显着变化,突出显示可能的测量误差源。本文提出了用于数据清洗的局部加权回归方法,并通过结合两个数据源给出了实例结果来说明该方法。该研究成功地确定了织造区车辆的一些关键驾驶特性。我们发现25.25%的编织运动发生在从合并点开始的前50-100米。大约30%的交通量涉及一次换道运动。同时,换道不止一个的驾驶员的平均通过时间为4.09秒。编织区中辅助车道的出现为延迟换车道提供了更多机会,这会影响交通性能。

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