Providing QoS guarantees to multiple classes of EVs under deterministic grid power

I. Safak Bayram, M. Abdallah, K. Qaraqe
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引用次数: 10

Abstract

In order to push Electric Vehicles (EVs) into the mainstream, the wide deployment of charging stations that can serve multiple classes of customers (e.g. fast charge, slow charge etc.) and provide a certain level of Quality of Service (QoS) is required. However, the operation of the power grid becoming more strenuous due to the addition of new large loads represented by EVs. Hence in this paper we propose a control and resource provisioning framework that can alleviate the strain on the power grid. We propose two design problems; first one considers a charging station located in a big metropolitan with a large and highly stochastic EV demand. For this case, we propose a pricing based control mechanism to maximize the total aggregated utility by controlling the arrival rates. Second case provides a capacity planning framework for stations located in small cities where arrival rates can be obtained via profiling studies. At each model, station draws a constant power from the grid and provides QoS guarantees, namely blocking probability, to each class. Hence total stochastic demand is replaced with a deterministic one, by sacrificing to reject a very few percentage of customers. Our results indicate that significant gains can be obtained with the proposed model.
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为了推动电动汽车(ev)成为主流,需要广泛部署能够为多种客户服务的充电站(如快充、慢充等),并提供一定水平的服务质量(QoS)。然而,由于以电动汽车为代表的新的大负荷的增加,电网的运行变得更加繁重。因此,在本文中,我们提出了一种可以减轻电网压力的控制和资源供应框架。我们提出了两个设计问题;第一个模型考虑一个充电站位于大城市,那里的电动汽车需求很大且高度随机。对于这种情况,我们提出了一种基于定价的控制机制,通过控制到达率来最大化总聚合效用。第二个案例为位于小城市的车站提供了能力规划框架,这些车站的到达率可以通过分析研究获得。在每个模型中,站点从电网中获取恒定的功率,并为每个类提供QoS保证,即阻塞概率。因此,总随机需求被确定性需求所取代,通过牺牲来拒绝极少数客户。我们的研究结果表明,所提出的模型可以获得显著的收益。
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