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Day-Ahead Capacity Estimation and Power Management of a Charging Station Based on Queuing Theory

机译:基于排队论的充电站日前容量估计与电源管理

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Electric vehicles (EVs) have many advantages over vehicles with an internal-combustion engine (ICE), and they have the capability to dominate the vehicles' market in the next years. In order to be charged, EVs require public charging stations that can be two-sided when vehicle-to-grid (V2G) services are indispensable to participate in an ancillary service market and in this case the capacity of the charging station should be estimated. Previous researches in the field of EVs used the queuing theory to model the arrival and departure times of EVs for estimating the V2G capacity. However, they did not consider the constraints of the queuing system. In this paper, a new queuing model is proposed to estimate the day-ahead capacity of a charging station, including balking, reneging, and retrial inside a finite-source queue system and phase-type services. A day-ahead service scheduling method is introduced for charging stations, which includes all constraints in the queuing model. Furthermore, control and management of the electric power at the charging station are carried out by using a nonpreemptive priority queue considering ac Level II and dc Level III chargers. Simulations are performed in three scenarios by using random input data of six types of EVs and the obtained results demonstrate that the proposed approach is able to obtain a realistic and precise estimation of the power capacity of a charging station.
机译:电动汽车(EV)相对于配备内燃机(ICE)的汽车具有许多优势,并且它们有能力在未来几年内主导汽车市场。为了进行充电,电动汽车需要公共充电站,当必不可少的车辆到电网(V2G)服务参与辅助服务市场时,该充电站可以是两侧的,在这种情况下,应该估计充电站的容量。电动汽车领域的先前研究使用排队理论对电动汽车的到达和离开时间进行建模,以估算V2G容量。但是,他们没有考虑排队系统的约束。在本文中,提出了一种新的排队模型来估计充电站的日前容量,包括有限源队列系统和阶段类型服务中的禁止,重新启动和重试。引入了针对充电站的超前服务调度方法,该方法包括排队模型中的所有约束。此外,通过使用考虑到交流II级和直流III级充电器的非抢先优先级队列,可以对充电站的电力进行控制和管理。通过使用六种类型的电动汽车的随机输入数据在三种情况下进行了仿真,所获得的结果表明,所提出的方法能够获得对充电站功率容量的现实而精确的估计。

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