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An Arterial Signal Coordination Optimization Model for Trams Based on Modified AM-BAND

机译:基于改进的AM带的电车动脉信号协调优化模型

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摘要

Modern trams are developing fast because of their characteristics like medium capability and energy saving. Exclusive way is always set in practice to avoid interruption from general vehicles, while trams have to stop at intersections frequently due to signal rules in the road network. Therefore, signal optimization has great effects on operational efficiency of trams system. In this paper, an arterial signal coordination optimization model is proposed for trams progression based on the Asymmetrical Multi-BAND (AM-BAND) method. The AM-BAND is modified from the following aspects. Firstly, BAM-BAND is developed by supplementing active bandwidth constraints to AM-BAND. Assisted by the IBM ILOG CPLEX Optimization Studio, two arterial signals plans with eight intersections are achieved from AM-BAND and BAM-BAND for comparison. Secondly, based on the modified BAM-BAND, a BAM-TRAMBAND model is presented, which incorporates three constraints regarding tram operations, including dwell time at stations, active signal priority, and minimum bandwidth value. The case study and VISSIM simulation results show that travel times of trams decrease with signal plan from BAM-TRAMBAND comparing with the original signal plan. Moreover, traffic performance indicators such as stops and delay are improved significantly.
机译:由于其特征如中等能力和节能等特点,现代电车正在快速发展。独家方式总是在实践中设置,以避免从一般车辆中断,而电车必须由于道路网络中的信号规则经常停止交叉路口。因此,信号优化对电车系统的操作效率具有很大的影响。本文提出了一种基于非对称多频段(AM带)方法的动脉信号协调优化模型。从以下方面修改了AM带。首先,通过将有效带宽约束补充到AM带,开发BAM频带。由IBM ILOG CPLEX优化工作室辅助,从AM带和BAM频段实现两个有八个交叉点的动脉信号计划进行比较。其次,基于修改的BAM频带,提出了一种BAM - 轨线用于模型,其包括三个关于电车操作的约束,包括在站的停留时间,有源信号优先级和最小带宽值。案例研究和Vissim仿真结果表明,与原始信号计划的BAM - 电车绑带的信号计划,电路的行驶时间随着与原始信号计划的比较而降低。此外,诸如停止和延迟之类的交通绩效指标显着提高。

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