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Queue discharge patterns at signalized intersections with green signal countdown device and long cycle length

机译:队列放电模式在带有绿色信号倒计时设备和长周期长度的信号交叉点

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摘要

Two apparent features that prevail at signalized intersections in China are green signal countdown device and long cycle lengths. The objective of this study is to investigate the impacts of green signal countdown device and long cycle length on queue discharge patterns and to discuss its implications on capacity estimation in the context of China's traffic. At five typical large intersections in Shanghai and Tianjin, 11 through lanes were observed, and 9251 saturation headways were obtained as valid samples. Statistical analyses indicate that the discharge process of queuing vehicles can be divided into three distinct stages according to the discharge flow rate: a start-up stage, a steady stage, and a rush stage. The average time for queuing vehicles to reach a stationary saturation flow rate, that is, the start-up stage, was found to be approximately 20–30 seconds; the rush stage usually occurs during the phase transition period. The finding is contrary to the conventional assumption that the discharge rate reaches a maximum value after the fourth vehicle is discharged and then remains constant during the green time until the queue is completely dissolved. The capacity estimation errors that might arise from the conventional methods are discussed through a comparative study and a sensitivity analysis that are based on the identified queue discharge patterns. In addition, a piecewise linear regression method was proposed in order to reduce such errors. The proposed method can be used for capacity estimation at signalized intersections with the identified queue discharge patterns.
机译:在中国的信号交叉点处以绿色信号倒计时设备和长周期长度的两个表观特征。本研究的目的是研究绿色信号倒计时装置和长周期长度对队列放电模式的影响,并讨论其对中国交通背景下的对能力估计的影响。在上海和天津的五个典型的大交叉点,观察到11个穿过车道,并获得9251次饱和头部作为有效样品。统计学分析表明排队车辆的放电过程可以根据排出流速分为三个不同的阶段:启动阶段,稳定阶段和急转阶段。发现排队车辆达到静止饱和流量的平均时间,即启动阶段,是大约20-30秒;急转阶段通常发生在阶段过渡期间。该发现与传统假设相反,即排出速率在排出第四车辆之后的最大值,然后在绿色时间内保持恒定,直到队列完全溶解。通过比较研究和基于所识别的队列放电模式的敏感性分析讨论了从传统方法中产生的容量估计误差。此外,提出了一种分段线性回归方法,以减少这种误差。该方法可用于与所识别的队列放电模式的信用交叉点处的容量估计。

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