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Hysteresis Phenomena of a Macroscopic Fundamental Diagram in Freeway Networks

机译:高速公路网络中宏观基本图的滞后现象

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Observations of traffic pairs of flow vs. density or occupancy for individual locations in freeways or arterials are usually scattered about an underlying curve. Recent observations from empirical data in arterial networks showed that in some cases by aggregating the highly scattered plots of flow vs. density from individual loop detectors, the scatter almost disappears and well-defined macroscopic relations exist between space-mean network flow and network density. Despite these findings for the existence of well-defined relations with low scatter, these curves should not be universal. In this paper we investigate if well-defined macroscopic relations exist for freeway network systems, by analyzing real data from Minnesota?s freeways. We show that freeway network systems not only have curves with high scatter, but they also exhibit hysteresis phenomena, where higher network flows are observed for the same average network density in the onset and lower in the offset of congestion. The mechanisms of traffic hysteresis phenomena at the network level are analyzed in this paper and they have dissimilarities to the causes of the hysteresis phenomena at the micro/meso level. The explanation of the phenomenon is dual. The first reason is that there are different spatial and temporal distributions of congestion for the same level of average density. Another reason is the synchronized occurrence of transitions from individual detectors during the offset of the peak period, with points remain beneath the equilibrium curve. Both the hysteresis phenomenon and its causes are consistently observed for different spatial aggregations of the network.
机译:高速公路或动脉中各个位置的流量对密度或占用率的交通对观测值通常散布在基本曲线周围。最近从动脉网络的经验数据中观察到的结果表明,在某些情况下,通过汇总来自各个环路检测器的流量与密度的高度散布图,散射几乎消失并且空间均值网络流量与网络密度之间存在明确定义的宏观关系。尽管有这些发现表明存在关系明确,散乱程度低,但这些曲线不应通用。在本文中,我们通过分析明尼苏达州高速公路的真实数据,研究高速公路网络系统是否存在定义明确的宏观关系。我们显示高速公路网络系统不仅具有高分散的曲线,而且还表现出滞后现象,其中在开始时观察到较高的网络流量(对于相同的平均网络密度)和较低的拥堵偏移。本文分析了网络级别的流量滞后现象的机理,它们与微观/中观级别的滞后现象的成因有所不同。这种现象的解释是双重的。第一个原因是,对于相同水平的平均密度,拥塞的时空分布是不同的。另一个原因是在峰值周期的偏移过程中,各个检测器的跃迁同步发生,点保持在平衡曲线下方。对于网络的不同空间聚集,始终观察到磁滞现象及其原因。

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