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Study of Bus-priority Traffic Signal Timing Strategy with Considering Resource Constraint

机译:考虑资源约束的总线优先交通信号定时策略研究

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In order to minimize the total passenger delay and fuel consumption, the bus-priority signal timing strategy for the signalized intersections with dedicated bus lanes is studied in this paper, the traffic efficiency of other vehicles and the energy utilization ratio are considered as well. Two different signal timing models of fixed and unfixed cycle are proposed respectively. Both of the models are optimized using the Genetic Algorithm (GA). The result indicates that both of the bus-priority strategies reduce the total passenger delay and fuel consumption obviously. With higher priority to public buses, the traffic efficiency of other vehicles and fuel consumption are also considered and the holistic throughput of the intersection is increased. In addition, this study shows that the bus-priority signal timing strategy of unfixed cycle is better at reducing total passenger delay and fuel consumption than that of fixed cycle. The experiment which is taken at the intersection of Huizhou Ave. and Ziyun Road in Hefei, China, shows the solution is effective under the situations of fixed or unfixed signal cycles.
机译:为了使总客运延迟和燃料消耗最小化,本文研究了与专用总线通道的信号交叉口的总线优先级信号定时策略,也考虑了其他车辆的交通效率和能量利用率。提出了两个不同信号时序模型的固定和未固定的周期。两种模型都是使用遗传算法(GA)进行优化的。结果表明,两条总线优先级策略明显降低了总客运延误和燃料消耗。对于公共公共汽车优先考虑,还考虑了其​​他车辆和燃料消耗的交通效率,并且交叉路口的整体吞吐量增加。此外,本研究表明,未固定周期的总线优先级信号定时策略更好地降低总客运延迟和燃料消耗而不是固定循环。在中国合肥市的惠州大道交叉口拍摄的实验表明该解决方案在固定或未固定的信号周期的情况下是有效的。

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