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首页> 外文期刊>Journal of Transportation Engineering >Methods for Defining Spatiotemporal Influence Areas and Secondary Incident Detection in Freeways
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Methods for Defining Spatiotemporal Influence Areas and Secondary Incident Detection in Freeways

机译:高速公路时空影响区的确定方法和二次事故检测

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摘要

The likelihood of the occurrence of secondary incidents is usually linked to primary incidents by using predefined spatial and temporal criteria. This paper extends past research on secondary incident detection by defining the dynamic thresholds of the influence area of a primary incident, using detailed freeway traffic data from upstream loop detectors. The dynamic thresholds are defined by using both analytical and empirical approaches. Results that use analytical approaches to track the spatiotemporal boundaries of the influence upstream of a primary incident offer influence curves of different characteristics (influence duration and maximum spatial extent) with respect to the prevailing traffic conditions. To accurately detect secondary incidents, an empirical method based on spatiotemporal speed evolution is applied that imprints influence areas with respect to their dissipation patterns. The results of the proposed approach are compared to those of five commonly used static and dynamic methods for detecting secondary incidents. Their differences are identified and discussed.
机译:通常通过使用预定义的空间和时间标准将发生次要事件的可能性与主要事件相关联。本文通过使用上游环路检测器提供的详细高速公路交通数据来定义一次事件影响区域的动态阈值,从而扩展了对二次事件检测的研究范围。动态阈值是通过分析和经验方法定义的。使用分析方法跟踪主要事件上游影响的时空边界的结果提供了相对于主要交通状况而言不同特征(影响持续时间和最大空间范围)的影响曲线。为了准确地检测二次事件,应用了一种基于时空速度演变的经验方法,该方法针对影响区域的消散模式施加了影响。将该方法的结果与用于检测次要事件的五个常用静态和动态方法的结果进行了比较。确定并讨论了它们之间的差异。

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