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Modeling electric vehicle charging station expansion with an integration of renewable energy and Vehicle-to-Grid sources

机译:结合可再生能源和车辆到电网资源对电动汽车充电站扩展进行建模

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摘要

This study proposes a novel formulation for designing and managing electric vehicle charging stations, considering both long-term planning decisions and short-term operational decisions over a pre-specified planning horizon and under stochastic power demand. To solve this challenging problem, we propose a hybrid algorithm that combines Sample Average Approximation with an enhanced Progressive Hedging Algorithm. A case study, based on the road network around Washington, D.C., is presented to visualize and validate the modeling results. Results indicate that the electric vehicle power demand are satisfied primarily via the grid and Vehicleto-Grid when energy cost is low and solar power is unavailable.
机译:这项研究提出了一种用于设计和管理电动汽车充电站的新颖方法,同时考虑了在预先指定的计划范围内以及在随机电力需求下的长期计划决策和短期运营决策。为了解决这个具有挑战性的问题,我们提出了一种混合算法,将样本平均逼近与增强的渐进式套期保值算法相结合。提出了一个基于华盛顿特区周围道路网络的案例研究,以可视化和验证建模结果。结果表明,当能源成本较低且太阳能不可用时,主要通过电网和车辆到电网满足电动汽车的需求。

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