具有可再生能源发电和蓄电池储能的充电站内电动汽车充放电的实时控制

U. Qureshi, A. Ghosh, B. K. Panigrahi
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引用次数: 3

摘要

电动汽车充电不受控制会对配电网造成严重影响,使大规模采用电动汽车变得不可行。本文提出了一种商业充电站电动汽车在线充放电决策序列,在满足约束数量的前提下,使电动汽车充电总成本最小。控制问题是一个多目标优化问题,其目标是降低电动汽车的充电成本,减少充电率的频繁变化,在充电器和电网的相等和不相等约束下使负荷曲线平坦化。决策序列能够处理具有随机到达时间和截止日期的同质和异构收费需求。该问题转化为一个凸优化问题,可以使用任何标准凸优化工具箱来求解。我们的经验证明,我们提出的决策降低了充电成本和充电率的频繁变化,同时减少了电网的峰值负荷。
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Real-Time Control for Charging Discharging of Electric Vehicles in a Charging Station with Renewable Generation and Battery Storage
Charging of electric vehicle in an uncontrolled manner can seriously impact the power distribution grid and make the large scale adoption of electric mobility non viable. In this paper we propose an online charging discharging decision sequence for electric vehicles in a commercial charging station to minimize the overall cost of charging the electric vehicles while satisfying the number of constraints. The control problem has been formulated as a multi-objective optimization problem, which aims to reduce the cost of charging the electric vehicles, reducing the frequent change in charging rates, flattening the load profile subject to equality and inequality constrains of the chargers and the grid. The decision sequence is capable of handling both the homogeneous as well as heterogeneous charging requirements with random arrival times and deadlines. The problem is transformed to a convex optimization problem which can be solved using any standard convex optimization toolbox. We empirically demonstrate that our proposed decision reduces the cost of charging and frequent changes in charging rates while reducing the peak loading on the grid.
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