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A distributed scheme for fair EV charging under transmission constraints

机译:传输约束下的公平EV充电分布式方案

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We propose a distributed decision-making scheme to model the charging of a collection of Electric Vehicles (EV). Each charger individually determines its own charging schedule by iteratively transacting signals with a central authority. The EVs respond to signals from the central location, which sets its incentives to ensure safe operation of the local transmission and distribution grid. We study a model whose purpose is to flatten the load while maintaining the fairness of charging. Our model introduces three unique characteristics to this problem: capacity constraints on the distribution grid, fair rationing of energy supply available under the capacity constraint, and discrete choice of EV charger settings. We present a distributed scheme to solve the large-scale optimization model.
机译:我们提出了一种分布式决策方案,以对电动汽车(EV)的充电进行建模。每个充电器通过与中央授权机构反复处理信号来分别确定自己的充电时间表。电动汽车对来自中央位置的信号做出响应,这为确保本地输配电网络的安全运行设置了动力。我们研究了一个模型,其目的是在保持充电公平性的同时减轻负载。我们的模型为此问题引入了三个独特的特征:配电网的容量限制,在容量限制下可用能源的公平配给,以及EV充电器设置的离散选择。我们提出了一种分布式方案来解决大规模优化模型。

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