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A study on the construction of EV charging infrastructures in highway rest area

机译:公路休息区电动汽车充电基础设施建设研究

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This paper proposes a method of constructing charging infrastructures in highway rest areas for the propagation and efficient operation of electric vehicles (EV). The supply of EVs was predicted with LPG vehicles as the propagation model. To determine the reasonable capacities, locations, and sizes of the charging stations, the technical trends and commercialization level of charging systems were analyzed. The annual supply of highway charging systems must be able to fulfill the daily maximum charging capacity throughout the year. The daily maximum charging demand was calculated with the highway daily average running distance, highway maximum traffic volume, and EV fuel efficiency. The supply of fast charging systems in each section was formulated with the daily maximum charging demand, the EV mainline traffic volume, fast charging system capacity (40 kW), and the utilization rate of charging facilities in rest areas. This paper presents the supply of fast charging systems in each section of highways from 2015 to 2034 through various variables and formulas and proposes a method of constructing more rational charging infrastructure in the future.
机译:本文提出了一种在高速公路休息区建设充电基础设施的方法,以促进电动汽车的普及和高效运行。以液化石油气车辆为传播模型来预测电动汽车的供应。为了确定充电站的合理容量,位置和大小,分析了充电系统的技术趋势和商业化水平。公路收费系统的年度供应量必须能够满足全年的每日最大收费容量。每日最大充电需求是根据高速公路的每日平均行驶距离,高速公路的最大交通量和电动汽车的燃油效率计算得出的。每个区域的快速充电系统供应量是根据每日最大充电需求,电动汽车干线流量,快速充电系统容量(40 kW)以及休息区充电设施的利用率来确定的。本文通过各种变量和公式介绍了2015年至2034年高速公路各部分的快速充电系统供应,并提出了未来构建更合理的充电基础设施的方法。

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