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Online scheduling for vehicle-to-grid regulation service

机译:用于车辆到网格调节服务的网上调度

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Electric vehicle (EV) fleets can provide ancillary services, such as frequency regulation, to the utility grid, if their charging/discharging schedules are coordinated appropriately. In this paper, a multi-level architecture for bidirectional vehicle-to-grid regulation service is proposed. In this architecture, aggregators coordinate the charging/discharging schedules of EVs in order to meet their shares of regulation demand requested by the grid operator. Based on this architecture, the scheduling problem of V2G regulation is then formulated as a convex optimization problem, which in turn degenerates to an online scheduling problem for charging/discharging of EVs. It requires only the current and past regulation profiles, and does not depend on the accurate forecast of regulation demand. A decentralized algorithm, which enables every EV to solve its local optimization problem and obtain its own schedule, is applied to solve the online scheduling problem. Based on the household driving pattern and regulation signal data from the PJM market, a simulation study of 1,000 EVs has been performed. The simulation results show that the proposed online scheduling algorithm is able to smooth out the power fluctuations of the grid by coordinating the EV schedules, demonstrating the potential of V2G in providing regulation service to the grid.
机译:如果适当地协调,电动车(EV)车队可以向公用事业电网提供辅助服务,例如频率调节,例如频率调节。本文提出了一种用于双向车辆到电网调节服务的多级架构。在此架构中,聚合器协调EVS的充电/放电时间表,以满足网格运营商请求的调节需求的份额。基于该架构,然后将V2G调节的调度问题称为凸优化问题,这反过来退化到用于电动/放电的在线调度问题。它只需要电流和过去的监管型材,并且不依赖于准确的调节需求预测。一种分散的算法,使每个EV都能解决其本地优化问题并获得自己的时间表,用于解决在线调度问题。基于来自PJM市场的家用驾驶模式和调节信号数据,已经进行了1,000 eV的模拟研究。仿真结果表明,所提出的在线调度算法能够通过协调EV计划来平滑电网的功率波动,证明V2G在向电网提供调节服务时的电位。

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