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A real-time traffic control method for the intersection with pre-signals under the phase swap sorting strategy

机译:相位交换排序策略下带预信号交叉口的实时交通控制方法

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摘要

To deal with the conflicts between left-turn and through traffic streams and increase the discharge capacity, this paper addresses the pre-signal which is implemented at a signalized intersection. Such an intersection with pre-signal is termed as a tandem intersection. For the tandem intersection, phase swap sorting strategy is deemed as the most effective phasing scheme in view of some exclusive merits, such as easier compliance of drivers, and shorter sorting area. However, a major limitation of the phase swap sorting strategy is not considered in previous studies: if one or more vehicle is left at the sorting area after the signal light turns to red, the capacity of the approach would be dramatically dropped. Besides, previous signal control studies deal with a fixed timing plan that is not adaptive with the fluctuation of traffic flows. Therefore, to cope with these two gaps, this paper firstly takes an in-depth analysis of the traffic flow operations at the tandem intersection. Secondly, three groups of loop detectors are placed to obtain the real-time vehicle information for adaptive signalization. The lane selection behavior in the sorting area is considered to set the green time for intersection signals. With the objective of minimizing the vehicle delay, the signal control parameters are then optimized based on a dynamic programming method. Finally, numerical experiments show that average vehicle delay and maximum queue length can be reduced under all scenarios.
机译:为了处理左转交通与通行交通之间的冲突并增加通行能力,本文介绍了在信号交叉口实施的预信号。这种与预信号的交点称为串联交点。对于串联交叉路口,鉴于一些独有的优点(例如,更容易遵循驾驶员要求和更短的分拣区域),相交换分拣策略被认为是最有效的分相方案。但是,以前的研究没有考虑相交换分类策略的主要局限性:如果在信号灯变为红色后,将一辆或多辆车辆留在分类区域,该方法的能力将大大降低。此外,先前的信号控制研究处理的是固定的时序计划,该计划无法适应交通流量的波动。因此,为解决这两个差距,本文首先对串联路口的交通流运行进行了深入分析。其次,放置三组环路检测器以获得用于自适应信号化的实时车辆信息。考虑在分类区域中的车道选择行为来设置交叉路口信号的绿色时间。为了最小化车辆延迟,然后基于动态编程方法来优化信号控制参数。最后,数值实验表明,在所有情况下均可以减少平均车辆延迟和最大排队长度。

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  • 期刊名称 other
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  • 年(卷),期 -1(12),5
  • 年度 -1
  • 页码 e0177637
  • 总页数 22
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