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Anticipatory coordination of electric vehicle allocation to fast charging infrastructure

机译:电动汽车分配到快速充电基础设施的预期协调

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摘要

The limited range of electric vehicles (EVs) in combination with the limited capacity of current fast charging infrastructure are both causes for a limited adoption of EVs. In order to reduce the general inconvenience that EV users experience when having to wait for available fast charging stations and to lessen the danger of damaging the infra- structure by overloading it, an efficient coordination strategy is needed. This paper proposes an anticipatory, decentralised coordination strategy for on-route charging of EVs during lengthy trips in a fast-charging infra- structure. This strategy is compared to a reference strategy that uses global real-time knowledge of charging station occupation. Simulation results using a realistic scenario with real-world traffic data demonstrate that the anticipatory strategy is able to reduce the waiting times for EV users by up to 50% while at the same time decreasing the peak loads of the electricity grid caused by charging EVs by 21%.The limited range of electric vehicles (EVs) in combination with the limited capacity of current fast charging infrastructure are both causes for a limited adoption of EVs. In order to reduce the general inconvenience that EV users experience when having to wait for available fast charging stations and to lessen the danger of damaging the infra- structure by overloading it, an efficient coordination strategy is needed. This paper proposes an anticipatory, decentralised coordination strategy for on-route charging of EVs during lengthy trips in a fast-charging infra- structure. This strategy is compared to a reference strategy that uses global real-time knowledge of charging station occupation. Simulation results using a realistic scenario with real-world traffic data demonstrate that the anticipatory strategy is able to reduce the waiting times for EV users by up to 50% while at the same time decreasing the peak loads of the electricity grid caused by charging EVs by 21%.
机译:电动汽车(EV)的有限范围,再加上当前快速充电基础设施的有限容量,都是导致EV普及率受限的原因。为了减少电动汽车用户在必须等待可用的快速充电站时所遇到的一般不便,并减轻因过载而损坏基础设施的危险,需要一种有效的协调策略。本文为快速充电基础设施中长途旅行期间的电动汽车的按路线充电提出了一种预期的,分散的协调策略。将该策略与使用全球实时充电站占用知识的参考策略进行比较。使用具有真实交通数据的真实场景进行的仿真结果表明,该预期策略能够将电动汽车用户的等待时间减少多达50%,同时减少了由电动汽车充电所引起的电网峰值负荷。 21%。电动汽车(EV)的有限行驶范围以及当前快速充电基础设施的有限容量两者都是导致电动汽车采用率有限的原因。为了减少电动汽车用户在必须等待可用的快速充电站时所遇到的一般不便,并减轻因过载而损坏基础设施的危险,需要一种有效的协调策略。本文为快速充电基础设施中长途旅行期间的电动汽车的按路线充电提出了一种预期的,分散的协调策略。将该策略与使用全球实时充电站占用知识的参考策略进行比较。使用具有真实交通数据的真实场景进行的仿真结果表明,该预期策略能够将电动汽车用户的等待时间减少多达50%,同时减少了由电动汽车充电所引起的电网峰值负荷。 21%。

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