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Optimal Scheduling With Vehicle-to-Grid Regulation Service

机译:车辆到电网调节服务的优化调度

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In a vehicle-to-grid (V2G) system, aggregators coordinate the charging/discharging schedules of electric vehicle (EV) batteries so that they can collectively form a massive energy storage system to provide ancillary services, such as frequency regulation, to the power grid. In this paper, the optimal charging/discharging scheduling between one aggregator and its coordinated EVs for the provision of the regulation service is studied. We propose a scheduling method that assures adequate charging of EVs and the quality of the regulation service at the same time. First, the scheduling problem is formulated as a convex optimization problem relying on accurate forecasts of the regulation demand. By exploiting the zero-energy nature of the regulation service, the forecast-based scheduling in turn degenerates to an online scheduling problem to cope with the high uncertainty in the forecasts. Decentralized algorithms based on the gradient projection method are designed to solve the optimization problems, enabling each EV to solve its local problem and to obtain its own schedule. Our simulation study of 1000 EVs shows that the proposed online scheduling can perform nearly as well as the forecast-based scheduling, and it is able to smooth out the real-time power fluctuations of the grid, demonstrating the potential of V2G in providing the regulation service.
机译:在车对网(V2G)系统中,聚合器协调电动汽车(EV)电池的充电/放电时间表,以便它们可以共同形成一个庞大的能量存储系统,以为电源提供辅助服务,例如频率调节网格。本文研究了一个聚合器与其协调的电动汽车之间的最佳充电/放电调度,以提供调节服务。我们提出了一种调度方法,可确保同时对电动汽车进行充足的充电和监管服务的质量。首先,调度问题根据对调节需求的准确预测公式化为凸优化问题。通过利用调节服务的零能耗本质,基于预测的调度又退化为在线调度问题,以应对预测中的高度不确定性。设计基于梯度投影方法的分散算法来解决优化问题,使每个电动汽车都能解决其局部问题并获得自己的时间表。我们对1000辆EV的仿真研究表明,提出的在线调度可以执行与基于预测的调度几乎相同的性能,并且能够消除电网的实时功率波动,证明了V2G在提供监管方面的潜力服务。

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