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Simulation study of traffic circle intersection with traffic lights

机译:交通灯交通灯与交通灯的仿真研究

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摘要

Using the Nagel-Schreckenberg model, we investigate the flow characteristics in a traffic circle system, where the entry lanes are controlled by traffic lights operating in a fixed-time (T). We considered four different strategies to control traffic coming from N entry lanes. We found that depending on the strategy used, four distinct traffic phases can appear in the circulating lane of the traffic circle, namely free flow, congestion, maximum current, and gridlock. Also, we investigate the origin of the gridlock phase in both cases (i.e. with/without traffic lights). Furthermore, the lengths of queues of stopped vehicles in the entry lanes were studied. We found that the traffic flow behavior on the exit/entry lanes depends strongly on the flow characteristics at the circulating lane as well as traffic lights strategy. To improve the operation of the traffic circle system, we have studied the time delay between the traffic lights to switch where all entry lanes go red, which allowing vehicles to clear the circulating lane.
机译:使用Nagel-Schreckenberg模型,我们研究了交通圈系统中的流动特性,其中入口通道由在固定时间(T)中运行的交通信号灯控制。我们考虑了四种不同的战略来控制来自N入口通道的流量。我们发现,根据所用的策略,交通圈的循环通道中出现四个不同的交通阶段,即自由流动,拥塞,最大电流和栅格。此外,我们研究了两种情况下栅格阶段的起源(即,带有/没有交通信号灯)。此外,研究了入口通道中停止车辆的队列的长度。我们发现出口/入口通道上的交通流量行为在循环通道的流动特性以及交通灯策略中强烈取决于流动特性。为了改善交通圈系统的运行,我们研究了交通灯之间的时间延迟,将所有入口通道的红色转换为红色,这使得车辆能够清除循环通道。

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