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首页> 外文期刊>Journal of advanced transportation >Location Design of Electric Vehicle Charging Facilities: A Path-Distance Constrained Stochastic User Equilibrium Approach
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Location Design of Electric Vehicle Charging Facilities: A Path-Distance Constrained Stochastic User Equilibrium Approach

机译:电动汽车充电设施的位置设计:路径距离约束的随机用户均衡方法

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Location of public charging stations, range limit, and long battery-charging time inevitably affect drivers’ path choice behavior and equilibrium flows of battery electric vehicles (BEVs) in a transportation network. This study investigates the effect of the location of BEVs public charging facilities on a network with mixed conventional gasoline vehicles (GVs) and BEVs. These two types of vehicles are distinguished from each other in terms of travel cost composition and distance limit. A bilevel model is developed to address this problem. In the upper level, the objective is to maximize coverage of BEV flows by locating a given number of charging stations on road segments considering budget constraints. A mixed-integer nonlinear program is proposed to formulate this model. A simple equilibrium-based heuristic algorithm is developed to obtain the solution. Finally, two numerical tests are presented to demonstrate applicability of the proposed model and feasibility and effectiveness of the solution algorithm. The results demonstrate that the equilibrium traffic flows are affected by charging speed, range limit, and charging facilities’ utility and that BEV drivers incline to choose the route with charging stations and less charging time.
机译:公共充电站的位置,范围限制和较长的电池充电时间不可避免地会影响驾驶员的路径选择行为以及交通网络中电池电动汽车(BEV)的平衡流量。这项研究调查了混合电动传统汽油车(BV)和BEV的网络上BEV的公共充电设施位置的影响。这两种类型的车辆在旅行成本构成和距离限制方面有所区别。开发了一个双层模型来解决此问题。在上层,目标是通过在考虑预算约束的情况下在路段上定位给定数量的充电站来最大程度地扩大BEV流量。提出了一个混合整数非线性程序来表示该模型。开发了一种简单的基于平衡的启发式算法来获得解。最后,通过两个数值试验证明了所提模型的适用性和求解算法的可行性和有效性。结果表明,均衡的交通流量受充电速度,范围限制和充电设施的效用的影响,并且BEV驾驶员倾向于选择带有充电站和较短充电时间的路线。

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