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Evaluation of Arterial and Freeway Interaction for Determining the Feasibility of Traffic Diversion

机译:评价主干路和高速公路相互作用以确定交通转移的可行性

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摘要

Traffic congestion is a common phenomenon in our daily lives that greatly costs society. A better understanding of the interaction between freeways and arterial streets may help traffic engineers and researchers improve the operation of existing facilities and deploy feasible traffic diversion plans to improve the usage of existing road capacity within a traffic network. This paper proposes a novel two-step approach to evaluate the interaction between freeways and arterial streets by comparing their performances. The first step is to identify freeway and arterial travel time pattern similarities via template matching techniques commonly used in computer vision. The interaction is quantified in the second step by using conditional probability theory. The result of the two-step process allows analysts to determine whether traffic diversion is possible or likely between freeways and parallel arterials. The city of Bellevue, Washington was selected as a case study site because of the availability of traffic sensor data. The results demonstrate that the analysis approach allows traffic analysts to more comprehensively observe the interaction between freeway and arterial performance by using existing data collection facilities. The quantitative interaction results provide a better understanding of diversion potential and are useful in incident response, individual route planning, and integrated corridor management. This approach can be applied to any city's freeway-arterial network if reliable sources of travel time data are available.
机译:交通拥堵是我们日常生活中的一种普遍现象,给社会造成了极大的损失。更好地了解高速公路与主干道之间的相互作用可能有助于交通工程师和研究人员改善现有设施的运营,并部署可行的交通改道计划,以改善交通网络中现有道路通行能力的使用。本文提出了一种新颖的两步法,通过比较高速公路和干道的性能来评估高速公路和干道之间的相互作用。第一步是通过计算机视觉中常用的模板匹配技术来识别高速公路和动脉旅行时间模式的相似性。在第二步中,使用条件概率理论对交互进行了量化。通过两步过程的结果,分析人员可以确定高速公路或平行动脉之间是否可能进行交通转移。由于交通传感器数据的可用性,华盛顿州贝尔维尤市被选为案例研究地点。结果表明,该分析方法使交通分析员可以通过使用现有的数据收集工具来更全面地观察高速公路与干道性能之间的相互作用。定量相互作用的结果可以更好地了解转移的可能性,并有助于事件响应,个别路线规划和综合走廊管理。如果有可靠的出行时间数据来源,则该方法可以应用于任何城市的高速公路干线网络。

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