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Continuum Dynamic Traffic Assignment Model for Autonomous Vehicles in a Polycentric Urban City with Environmental Consideration

机译:考虑环境的多中心城市自动驾驶车辆连续动态交通分配模型

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This paper proposed a continuum dynamic model for autonomous vehicles in a polycentric urban city by considering the environment impact of traffic emission. The model assumes that homogeneous autonomous vehicles are continuously distributed over the urban areas which tend to choose a path to minimize their total travel cost from origin to destination. To describe the path choice behavior of travelers, we presented the continuum dynamic traffic assignment model which consists of a two-dimensional hyperbolic system of nonlinear conservation laws with source terms and an Eikonal-type equation. The elastic demand is considered using a function which associating each copy of flow with its total instantaneous travel cost. For the environmental impacts, here we consider the influence of emission and include the cost of emission into the actual transportation cost. A solution algorithm for the model is designed as a cell-centered finite volume method for conservation law equations and a fast sweeping method for Eikonal-type equations on unstructured grids. Numerical examples are given to demonstrate the model and the proposed solution algorithm. Further, the results of the travel cost considering emissions and not considering emissions are compared.
机译:考虑交通排放对环境的影响,提出了多中心城市自动驾驶汽车的连续性动力学模型。该模型假设同质自动驾驶汽车连续分布在城市地区,这些城市倾向于选择一条路径以最大程度地减少其从起点到目的地的总行驶成本。为了描述旅行者的路径选择行为,我们提出了连续动态交通分配模型,该模型由带有源项和Eikonal型方程的非线性守恒律的二维双曲系统组成。使用将流量的每个副本与其总瞬时旅行成本相关联的函数来考虑弹性需求。对于环境影响,这里我们考虑排放的影响,并将排放成本纳入实际运输成本中。该模型的求解算法被设计为用于守恒律方程的以单元为中心的有限体积方法和用于非结构化网格上的Eikonal型方程的快速扫描方法。数值例子说明了该模型和提出的求解算法。此外,比较了考虑排放量而不考虑排放量的差旅成本结果。

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