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首页> 外文期刊>Journal of Modern Power Systems and Clean Energy >Multi-time Scale Energy Management Strategy of Aggregator Characterized by Photovoltaic Generation and Electric Vehicles
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Multi-time Scale Energy Management Strategy of Aggregator Characterized by Photovoltaic Generation and Electric Vehicles

机译:光伏发电和电动汽车特征的聚集器的多时间尺度能量管理策略

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The increasing number of photovoltaic (PV) generation and electric vehicles (EVs) on the load side has necessitated an aggregator (Agg) in power system operation. In this paper, an Agg is used to manage the energy profiles of PV generation and EVs. However, the daily management of the Agg is challenged by uncertain PV fluctuations. To address this problem, a robust multi-time scale energy management strategy for the Agg is proposed. In a day-ahead phase, robust optimization is developed to determine the power schedule. In a real-time phase, a rolling horizon-based convex optimization model is established to track the day-ahead power schedule based on the flexibilities of the EVs. A case study indicates a good scheduling performance under an uncertain PV output. Through the convexification, the solving efficiency of the real-time operation model is improved, and the over-charging and over-discharging problems of EVs can be suppressed to a certain extent. Moreover, the power deviation between day-ahead and real-time scheduling is controllable when the EV dispatching capacity is sufficient. The strategy can ensure the flexibility of the Agg for real-time operation.
机译:负载侧的越来越多的光伏(PV)产生和电动车辆(EVS)在电力系统操作中需要聚集器(AGG)。在本文中,AGG用于管理PV生成和EV的能量谱。然而,AGG的日常管理受到不确定的光伏波动的挑战。为了解决这个问题,提出了一种强大的AGG的多时间刻度能量管理策略。在前瞻阶段,开发了强大的优化以确定电源计划。在实时阶段,建立一种基于滚动地平线的凸优化模型,以基于EVS的灵活性跟踪日前电源计划。案例研究表明在不确定的PV输出下的调度性能良好。通过凸透化,改善了实时操作模型的解决效率,并且可以在一定程度上抑制EVS的过度充电和过度放电问题。此外,当EV调度容量充足时,前一天和实时调度之间的功率偏差是可控的。该策略可以确保AGG进行实时操作的灵活性。

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