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首页> 外文期刊>Journal of Technical Physics >UTILITY ANALYSIS OF ZIPPER-MERGING FOR IMPROVEMENT OF TRAFFIC JAM BY CA SIMULATION
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UTILITY ANALYSIS OF ZIPPER-MERGING FOR IMPROVEMENT OF TRAFFIC JAM BY CA SIMULATION

机译:CA仿真的拉链合并改善交通拥堵的实用性分析

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摘要

When slow vehicles go at the merging point of roads from a branch road to a main road, a traffic jam occurs there. Some researchers pointed out that the zipper merging of the vehicles is effective for reducing the traffic jam near the merging point of roads. The aim of this study is to discuss the effectiveness of the zipper merging by using cellular automata simulation. The vehicle behavior is modeled according to the single and multiple vehicles following models. While, in the single vehicle following model, the acceleration rate depends on the velocity difference with the nearest vehicle ahead alone, the multiple vehicles following model controls the acceleration rate according to the velocity differences with three vehicles ahead. The results show that, in the case of the single vehicle following model, the maximum speed reduction is about 40% in case of no-zipper merging and 20% in case of zipper merging. In addition to that, the multiple vehicle following model can recover the velocity sooner than the single vehicle following model. Therefore, we can conclude that the combinational use of the zipper merging and the multiple vehicles following model can reduce successfully the traffic jam near the merging point of roads.
机译:当慢速车辆在从支路到主要道路的道路交汇点处行驶时,在那里会发生交通拥堵。一些研究人员指出,车辆的拉链合并可有效减少道路合并点附近的交通拥堵。这项研究的目的是通过使用细胞自动机模拟来讨论拉链合并的有效性。车辆行为根据以下单个和多个车辆建模。在单车追随模型中,加速度取决于单车与最近车辆的速度差,而多车跟随模型则根据与前三辆车的速度差来控制加速度。结果表明,在单车跟随车型的情况下,无拉链合并的最大速度降低约为40%,而合并拉链的最大速度降低约为20%。除此之外,多车辆跟随模型可以比单车辆跟随模型更快地恢复速度。因此,我们可以得出结论,将拉链合并与多辆车辆跟随模型结合使用可以成功地减少道路合并点附近的交通拥堵。

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