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Traffic Signal Synchronization in the Saturated High-Density Grid Road Network

机译:饱和高密度网格路网中的交通信号同步

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摘要

Most existing traffic signal synchronization strategies do not perform well in the saturated high-density grid road network (HGRN). Traffic congestion often occurs in the saturated HGRN, and the mobility of the network is difficult to restore. In order to alleviate traffic congestion and to improve traffic efficiency in the network, the study proposes a regional traffic signal synchronization strategy, named the long green and long red (LGLR) traffic signal synchronization strategy. The essence of the strategy is to control the formation and dissipation of queues and to maximize the efficiency of traffic flows at signalized intersections in the saturated HGRN. With this strategy, the same signal control timing plan is used at all signalized intersections in the HGRN, and the straight phase of the control timing plan has a long green time and a long red time. Therefore, continuous traffic flows can be maintained when vehicles travel, and traffic congestion can be alleviated when vehicles stop. Using the strategy, the LGLR traffic signal synchronization model is developed, with the objective of minimizing the number of stops. Finally, the simulation is executed to analyze the performance of the model by comparing it to other models, and the superiority of the LGLR model is evident in terms of delay, number of stops, queue length, and overall performance in the saturated HGRN.
机译:现有的大多数交通信号同步策略在饱和高密度网格公路网(HGRN)中的性能都不理想。流量拥塞通常发生在饱和HGRN中,并且网络的移动性很难恢复。为了缓解网络拥塞并提高网络流量效率,本研究提出了一种区域交通信号同步策略,即长绿色和长红色(LGLR)交通信号同步策略。该策略的本质是控制队列的形成和消散,并最大化饱和HGRN中信号交叉口的交通流效率。使用这种策略,在HGRN中的所有信号交叉口都使用相同的信号控制时序计划,并且控制时序计划的直线相位具有较长的绿色时间和较长的红色时间。因此,当车辆行驶时可以保持连续的交通流量,并且当车辆停止时可以缓解交通拥堵。使用该策略,开发了LGLR交通信号同步模型,其目的是最大程度地减少停车次数。最后,执行仿真以通过与其他模型进行比较来分析模型的性能,并且LGLR模型的优势在延迟,停止次数,队列长度和饱和HGRN的整体性能方面显而易见。

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