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Storage capacity allocation strategy for distribution network with distributed photovoltaic generators

机译:具有分布式光伏发电机的配电网存储容量分配策略

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Distributed photovoltaic generators(DPGs) have been integrated into the medium/low voltage distribution network widely. Due to the randomness and fluctuation of DPG, however, the distribution and direction of power flow changed frequently some days. Therefore, more attention is needed to ensure the safe operation of the distribution network. The installation of energy storage systems(ESSs) can help the network withstand thefluctuations caused by DPG. Based on the discrete Fourier transform method, this paper presents an ESS capacity allocation strategy for the medium/low voltage distribution network with DPG. The reliability scenario models are created via Latin hypercube sampling with Cholesky decomposition and scenario reduction. Numerical results show that the proposed strategy can reduce the power flow fluctuation with less ESS capacity, and increase the penetration capacity of DPG in the distribution network while maintaining the quality of the power supply.
机译:分布式光伏发电机(DPG)已广泛集成到中/低压配电网络中。然而,由于DPG的随机性和波动性,几天内潮流的分布和方向经常变化。因此,需要更多的注意力来确保配电网络的安全运行。储能系统(ESS)的安装可以帮助网络抵御DPG引起的波动。基于离散傅里叶变换方法,提出了一种采用DPG的中低压配电网的ESS容量分配策略。可靠性情景模型是通过具有Cholesky分解和情景缩减的拉丁超立方体采样创建的。数值结果表明,所提出的策略可以减少电能流量的波动,而ESS容量较小,并且可以在保持供电质量的同时提高DPG在配电网中的穿透能力。

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