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Determining electric vehicle charging point locations considering drivers' daily activities

机译:考虑驾驶员的日常活动,确定电动汽车的充电点位置

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摘要

In this paper the daily temporal and spatial behavior of electric vehicles (EVs) is modelled using an activity-based (ActBM) microsimulation model for Flanders region (Belgium). Assuming that all EVs are completely charged at the beginning of the day, this mobility model is used to determine the percentage of Flemish vehicles that cannot cover their programmed daily trips and need to be recharged during the day. Assuming a variable electricity price, an optimization algorithm determines when and where EVs can be recharged at minimum cost for their owners. This optimization takes into account the individual mobility constraint for each vehicle, as they can only be charged when the car is stopped and the owner is performing an activity. From this information, the aggregated electric demand for Flanders is obtained, identifying the most overloaded areas at the critical hours. Finally it is also analyzed what activities EV owners are underway during their recharging period. From this analysis, different actions for public charging point deployment in different areas and for different activities are proposed.
机译:本文使用比利时法兰德斯地区的基于活动的(ActBM)微观模拟模型对电动汽车(EV)的日常时空行为进行建模。假设所有电动汽车在一天开始时都已充满电,则此机动性模型用于确定无法满足计划的每日行程且需要在一天中充电的佛兰德汽车的百分比。假设电价可变,优化算法将确定何时何地可以为所有者充电的电动汽车成本最低。这种优化考虑了每辆车的个体移动性约束,因为只有在汽车停下来并且车主进行一项活动时才可以对它们进行收费。从这些信息中,可以获得法兰德斯的总用电需求,从而确定关键时刻最过载的区域。最后,还将分析电动车车主在充电期间正在进行的活动。通过该分析,提出了针对不同区域的公共充电点部署以及针对不同活动的不同动作。

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