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The role of optimization to control traffic signals setting on capacity and flow at peak hours at intersections

机译:通过优化来控制交通信号灯在交叉路口高峰时段的通行能力和流量

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Control the pre timing of traffic signals has many advantages because of its responsiveness to traffic demands, short cycles, and effective use of capacity leading to and recovering from oversaturation and amenability to aggressive transit priority. Traffic congestion in urban road and freeway networks leads to a strong degradation of the network infrastructure and accordingly reduced throughput, which can be countered via suitable control measures and strategies. Coordination between intersections in a central system increases capacity, appropriate traffic flow and reduce total delays of vehicles. Scats system has been installed in many world intersections, and many researchers have done about the advantages of it to decrease delays and travel times at intersection. SCATS is a modular system and development of this is possible. Now in Tehran's this system is used and traffic conditions matches on it. Traffic signal timing schedule gives in this system as default and although this system is capable of adapting to the moment traffic but in terms of super saturation and during peak hours due to the lack of optimization, default program around intersection has caused widespread congestion at intersection. In this paper, two intersections of East and West of Tehran have been selected, and in two different situations, the flow to capacity ratio of traffic signal timing has been investigated before and after optimization. Simulation by AIMSUN and optimization by SYNCHRO software is done. After optimization can be observed that if before the pre-defined schedule for SCATS, this plan for each intersection of the volume of traffic at peak hours has been optimized, a great reduction in delay and increase in capacity can be observed at intersections. For example, delay time reduction has been occurred about 14.77 in AM peak time and 12.65 in PM peak time at GOLBARG-DARDASHT intersection.
机译:控制交通信号的预定时具有许多优势,因为它对交通需求的响应能力强,周期短,并且可以有效使用容量,从而导致过饱和和可适应性以及主动性优先转换。城市道路和高速公路网络中的交通拥堵会导致网络基础设施的严重退化,从而导致吞吐量降低,这可以通过适当的控制措施和策略来解决。中央系统交叉口之间的协调可增加通行能力,适当的交通流量并减少车辆的总延误。 Scats系统已安装在许多世界交叉路口,许多研究人员已经完成了它的优点,以减少交叉路口的延误和旅行时间。 SCATS是一个模块化系统,因此有可能进行开发。现在,在德黑兰的系统中使用了该系统,并且交通状况与之匹配。交通信号定时时间表在该系统中默认提供了该功能,尽管该系统能够适应当下的交通状况,但是由于缺乏优化,在超饱和和高峰时段,路口周围的默认程序已导致路口普遍拥堵。本文选择了德黑兰东西方的两个交叉口,并在两种不同情况下,对优化前后交通信号定时的流量容量比进行了研究。完成了AIMSUN的仿真和SYNCHRO软件的优化。经过优化后,可以发现,如果在SCATS的预定时间表之前,针对每个交叉路口在高峰时间的交通量的计划已得到优化,则可以观察到交叉路口的交通延误和通行能力大大降低。例如,在GOLBARG-DARDASHT交叉口的AM高峰时间和PM高峰时间分别发生了大约14.77和12.65的延迟时间减少。

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