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A Method to Calculate the Capacity of Unsignalized Intersection for Connected and Automated Vehicles Based on Gap Acceptance Theory

机译:基于间隙接受理论的互联和自动车辆无信号交叉口通行能力计算方法

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With the help of advanced communication technologies such as V2V and V2I, a group of connected and automated vehicles (CAV's) can drive cooperatively in a platoon form, which has been verified to improve traffic capacity significantly. The rapid growth of the market penetration of CAV's highlights the need for a deep understanding of the capacity issues of the mixed traffic flow for the better deployment of CAV's in the near future. To this end, a calculation method of the capacity at unsignalized intersections with mixed traffic flow is proposed in this paper based on the gap acceptance theory. This model can be extended to establish a new traffic capacity model of unsignalized intersections under a completely intelligent CAV environment. In addition, numerical simulations in various scenarios are performed to show how the CAV market penetration rates affect the capacity at unsignalized intersections, which indicates that the numerical results of our proposed model are in good agreement with those of theoretical analysis.
机译:借助V2V和V2I等先进的通信技术,一组联网的自动驾驶汽车(CAV)可以以排的形式协同驾驶,这已被证实可以显着提高交通容量。 CAV的市场渗透率的快速增长突显了需要深入了解混合交通流的容量问题,以便在不久的将来更好地部署CAV。为此,提出了基于间隙接受理论的无信号交叉口混合交通流通行能力的计算方法。可以扩展该模型,以在完全智能的CAV环境下建立无信号交叉口的新交通容量模型。此外,在各种情况下进行了数值模拟,以显示CAV市场渗透率如何影响无信号交叉口的通行能力,这表明我们提出的模型的数值结果与理论分析非常吻合。

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