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Design LRT Signal Priority Strategy to Improve Arterial Traffic Mobility

机译:设计LRT信号优先级策略,以提高动脉交通流动性

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In this research we studied the impact of Transit Signal Priority (TSP) on the arterial mobility. For the purpose of experiment we have chosen the 111' Street corridor in Edmonton. Recently the LRT extension was carried out and the LRT passes through this intersection. What is peculiar to this intersection is that shopping mall, the LRT and transit bus stations are all located close-by. Moreover, the transit buses have to cross the LRT tracks for entry and exit from the station. For the purpose of analysis and optimizing the LRT crossing signals, we used the Ring Barrier Controller (RBC) and Vehicle Actuated Programming (VAP) in VIS SIM. The three options explored were (a) LRT preemption, (b) LRT prediction priority (c) LRT/Transit Bus priority. In options (b) and (c), the arrival time of the LRT is predicted in advance and the signal phases are modified to ensure uninterrupted passage of the LRT. This leads to better performance as there is lesser number of signal changes compared to the first option. In the absence of dedicated bus lanes option (b) was found to be most beneficial.
机译:在本研究中,我们研究了过境信号优先权(TSP)对动脉移动性的影响。为了实验的目的,我们选择了埃德蒙顿的111'街道走廊。最近进行了LRT延伸,并通过这种交叉来通过了LRT。这种交叉路口特有的是,购物中心,LRT和Transit Sustations都是靠近的。此外,运输总线必须越过LRT轨道进入并从车站退出。为了分析和优化LRT交叉信号,我们使用VIS SIM中的环形屏障控制器(RBC)和车辆致动编程(VAP)。探索的三种选项是(a)LRT抢占,(b)LRT预测优先权(c)LRT / Transit总线优先权。在选项(b)和(c)中,预先预测LRT的到达时间,并修改信号相以确保LRT的不间断通道。这导致更好的性能,因为与第一个选项相比,信号变化较少。在没有专门的公共汽车通道选项(B)的情况下被发现是最有益的。

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