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Experimental investigation of spatial breakdown evolution on congested freeways

机译:拥挤高速公路空间破坏演化的实验研究

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摘要

Although urban and suburban freeways are designed to enable smooth flow with high speed, they experience traffic congestion during peak day periods especially when traffic demand is high but also during unexpected incidents. Traffic breakdown is identified when there is a rapid drop in speed level and a simultaneous steep rise in density level during the phase transition from free-flow to breakdown flow. The recovery from traffic breakdown is achieved after speed and density return to their pre-breakdown level in the uncongested conditions. This paper evaluates the spatial dependency of breakdown and investigates the consistency of time of breakdown between weekdays, based on data collected from a suburban section of Interstate 66 in Virginia. The identification of location and weekday effects is conducted by experimental design techniques. The spatial dependency of the transition times is evaluated through raw data in the speed-time plane and further examined by the Shockwave linear propagation principle. Both approaches are generally consistent and produce similar results.
机译:尽管市区和郊区的高速公路旨在实现高速顺畅的交通流量,但它们在高峰时段会遇到交通拥堵的情况,尤其是在交通需求较高时以及意外事件中。当从自由流到故障流的相变过程中,速度水平快速下降而密度水平同时急剧上升时,便会识别出交通故障。在不拥挤的情况下,速度和密度恢复到故障前的水平后,即可从流量故障中恢复。本文基于从弗吉尼亚州66号州际公路郊区采集的数据,评估了故障的空间依赖性,并研究了工作日之间故障时间的一致性。位置和工作日影响的识别是通过实验设计技术进行的。过渡时间的空间依赖性通过速度-时间平面中的原始数据进行评估,并通过Shockwave线性传播原理进行进一步检查。两种方法通常是一致的,并且会产生相似的结果。

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