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Spatiotemporal Analysis of Traffic Congestion Caused by Rubbernecking at Freeway Accidents

机译:高速公路事故中橡胶瓶颈引起的交通拥堵时空分析

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摘要

In this paper, we present a well-specified analytical methodology for estimating capacity reduction that is attributable to accidents in the opposite direction of accident—the condition whereby drivers in the opposite direction of an accident, by virtue of their curiosity, tend to be distracted by the accident. The methodology is based on a binary integer programming formulation that is used to identify the spatiotemporal region that is affected by the influence of the accident. Thresholds measured against control sample readings from inductance loop detectors are used to determine the patterns and magnitudes of the delay. A key feature of the methodology is its ability to separate nonrecurrent delay from any recurrent delay that is present on the road at the time and place of a reported accident, to estimate the contribution of nonrecurrent delay caused by the specific accident. A case study that is based on historical inductance loop detector data from six major freeways in Orange County, California, is presented. Potential factors contributing to delay, including accident characteristics, geometric characteristics, environmental condition, traffic characteristics, and congestion characteristics, are analyzed for their effects by using the semiparametric Cox proportional-hazards model.
机译:在本文中,我们提供了一种规范的分析方法,用于估算可归因于事故相反方向的事故的容量减少-一种情况,由于驾驶员的好奇心,事故相反方向的驾驶员趋向于分散注意力偶然地该方法基于二进制整数编程公式,该公式用于识别受事故影响的时空区域。根据电感环路检测器的控制样本读数测得的阈值用于确定延迟的模式和幅度。该方法的关键特征是它能够将非经常性延迟与报告的事故发生的时间和地点在道路上出现的任何经常性延迟分开,以估计由特定事故引起的非经常性延迟的影响。提出了一个案例研究,该案例基于加利福尼亚橙县的六条主要高速公路的历史电感环路检测器数据。使用半参数Cox比例风险模型分析了导致延误的潜在因素,包括事故特征,几何特征,环境条件,交通特征和拥堵特征,以评估其影响。

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