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A Segmented Signal Progression Model for the Modern Streetcar System

机译:现代有轨电车系统的分段信号进行模型

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This paper is on the purpose of developing a segmented signal progression model for modern streetcar system. The new method is presented with the following features: (1) the control concept is based on the assumption of only one streetcar line operating along an arterial under a constant headway and no bandwidth demand for streetcar system signal progression; (2) the control unit is defined as a coordinated intersection group associated with several streetcar stations, and the control joints must be streetcar stations; (3) the objective function is built to ensure the two-way streetcar arrival times distributing within the available time of streetcar phase; (4) the available time of streetcar phase is determined by timing schemes, intersection structures, track locations, streetcar speeds, and vehicular accelerations; (5) the streetcar running speed is constant separately whether it is in upstream or downstream route; (6) the streetcar dwell time is preset according to historical data distribution or charging demand. The proposed method is experimentally examined in Hexi New City Streetcar Project in Nanjing, China. In the experimental results, the streetcar system operation and the progression impacts are shown to affect transit and vehicular traffic. The proposed model presents promising outcomes through the design of streetcar system segmented signal progression, in terms of ensuring high streetcar system efficiency and minimizing negative impacts on transit and vehicular traffic.
机译:本文旨在为现代有轨电车系统开发分段信号进行模型。该新方法具有以下特点:(1)该控制概念基于这样的假设:仅一条有轨电车在恒定的车速下沿一条动脉运行,并且对有轨电车系统信号的传播没有带宽需求; (2)将控制单元定义为与多个有轨电车站相关联的协调交叉路口组,并且控制接头必须为有轨电车站; (3)建立目标函数,以确保双向有轨电车的到达时间在有轨电车相的可用时间内分配; (4)有轨电车相位的可用时间由计时方案,交叉路口结构,轨道位置,有轨电车速度和车辆加速度确定; (5)有轨电车的行驶速度无论是在上游还是在下游,都应保持恒定; (6)有轨电车的停留时间是根据历史数据分配或计费需求预先设定的。在中国南京的河西新城有轨电车项目中,对提出的方法进行了实验检验。在实验结果中,有轨电车系统的运行及其对行进的影响表明会影响过境和车辆交通。提出的模型通过确保有轨电车系统的高效率并最大程度地减少对过境和车辆交通的负面影响,通过有轨电车系统分段信号级联的设计提出了可喜的成果。

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