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Phase based jam warnings: an analysis of synchronized flow with floating car data

机译:阶段基于果酱警告:一个分析同步与浮动车数据流

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Based on an empirical study of floating car data (probe vehicle data), we have found the following microscopic features of empirical synchronized flow that are relevant for jam warning methods: (i) In accordance with Kerner's three-phase traffic theory, the empirical speed decrease (speed drop) denoted by Delta v that occurs due to vehicle deceleration at the upstream front of synchronized flow is a complex time function. (ii) The empirical function Delta v can be considered a "jam wall" at which different vehicles exhibit sometimes very different speed drops Delta v occurring at different road locations. Because each of the vehicles decelerates within the "jam wall" at different road locations, the "jam wall" moves in space and in time. (iii) The spatiotemporal structure of the empirical "jam wall" is determined by alternations of the synchronized flow and wide moving jam traffic phases at the upstream front of a congested traffic pattern. (iv) During some time intervals, the "jam wall" can disappear and then it can appear once more, and so on; during "jam wall" disappearance, one or a few vehicles can pass a bottleneck while moving in free flow. These empirical findings can be important for the development of reliable jam warning methods as well as other ITS-applications.
机译:基于浮动车数据的实证研究(探测车辆数据),我们发现以下经验同步的微观特征流与果酱预警相关的方法:依照肯纳(i)的三相交通理论,实证的速度减少(速度下降)由于用δv在上游的车辆减速同步流动是一个复杂的时间函数。(2)实证函数δv认为是一个“果酱墙”的不同汽车展览有时非常不同的速度δv下降发生在不同的道路的位置。在“果酱墙”在不同的减慢道路位置、空间和“果酱墙”举措在时间。经验是由“果酱墙”交替变化的同步流和宽移动堵塞交通阶段上游面前拥挤的交通模式。时间间隔,“果酱墙”可以和消失然后它会出现一次,等等;“果酱墙”消失,一个或几个车辆可以通过一个瓶颈而朝着自由流动。这些实证结果可能是重要的开发可靠的果酱预警方法以及其他应用。

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