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Efficient control of energy storage for increasing the PV hosting capacity of LV grids

机译:高效控制能量存储,以增加LV网格的光伏托管能力

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Photovoltaic (PV) systems are among the renewable sources that electrical energy systems are adopting with increasing frequency. The majority of already-installed PV systems are decentralized units that are usually connected to low voltage (LV) distribution grids. The PV hosting capacity of an LV grid is usually limited by overvoltage, and the efficient control of distributed electrical energy storage systems (EESSs) can considerably increase this capacity. In this paper, a new control approach based on the voltage sensitivity analysis is proposed to prevent overvoltage and increase the PV hosting capacity of LV grids by determining dynamic set points for EESS management. The method has the effectiveness of central control methods and can effectively decrease the energy storage required for overvoltage prevention, yet it eliminates the need for a broadband and fast communication. The net power injected into the grid and the amount of reactive power absorbed by PV inverters are estimated using the PV generation forecast and load consumption forecast, and the dynamic operating points for energy storage management are determined for a specific period of time by solving a linear optimization problem. Simulations performed on a realistic LV feeder of the Danish island Bornholm verify the performance of the proposed method.
机译:光伏(PV)系统是电能系统采用频率的可再生源之一。大多数已安装的PV系统是分散的单位,通常连接到低电压(LV)分布网格。 LV网格的光伏托管能力通常受到过电压的限制,并且分布式电能存储系统(EESS)的有效控制可以大大增加这种容量。本文提出了一种基于电压灵敏度分析的新控制方法,以防止过电压并通过确定EESS管理的动态设定点来提高LV网格的PV托管能力。该方法具有中央控制方法的有效性,可以有效地降低过电压预防所需的能量存储,但它消除了对宽带和快速通信的需求。使用PV生成预测和负载消耗预测估计注入电网的净功率和通过PV逆变器吸收的无功功率的量,并且通过求解线性,确定用于能量存储管理的动态操作点的特定时间优化问题。在丹麦岛博恩霍尔姆的现实LV饲养器上进行了模拟,验证了该方法的性能。

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