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Traffic flow behavior at a single-lane urban roundabout

机译:单车道城市环形交通车辆交通流动行为

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In this paper, we propose a stochastic cellular automata model to study the traffic behavior at a single-lane roundabout. Vehicles can enter the interior lane or exit from it via N intersecting lane, the boundary conditions are stochastic. The traffic is controlled by a self-organized scheme. It has turned out that depending on the rules of insertion to the roundabout, five distinct traffic phases can appear, namely, free flow, congestion, maximum current, jammed and gridlock. The transition between the free flow and the gridlock is forbidden. The density profiles are used to study the traffic pattern at the interior lane of the roundabout. In order to quantify the interactions between vehicles in the interior lane of the roundabout, the velocity correlation coefficient (VCC) is also studied. Besides, the spatiotemporal diagrams corresponding to the entry/exit lanes are derived numerically. Furthermore, we have investigated the effect of displaying signal (P-In), as the P-In decreases, the maximum current increases at the expense of the free flow and the jamming phase. Finally, we have investigated the effect of the braking probability P on the interior lane of the roundabout. We have found that the increase of P raises the spontaneous jam formation on the ring. Thus, enlarges the maximum current and the jamming phase while the free flow phase decreases.
机译:在本文中,我们提出了一种随机蜂窝自动机模型,用于研究单车道环形交叉路口的交通行为。车辆可以通过N交叉机进入内部车道或从其出口,边界条件是随机的。交通由自组织方案控制。事实证明,取决于插入环形交叉路口的规则,可以出现五个不同的交通阶段,即自由流动,拥塞,最大电流,卡住和栅格。禁止自由流动和栅格之间的过渡。密度轮廓用于研究环形交叉路口内部车道的交通模式。为了量化环形交叉路口内部车道之间的车辆之间的相互作用,还研究了速度相关系数(VCC)。此外,对应于入口/出口泳道的时空图是在数值上导出的。此外,我们研究了显示信号(P-IN)的效果,因为P-In降低,最大电流以自由流动和干扰阶段的代价增加。最后,我们研究了制动概率P对环形交叉路口内部车道的影响。我们发现P的增加在环上提高了自发的堵塞形成。因此,在自由流相降低的同时放大最大电流和干扰阶段。

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