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Improving Hosting Capacity of Rooftop PVs by Quadratic Control of an LV-Central BSS

机译:通过LV-中央BSS的二次控制提高屋顶PV的容纳能力

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High integration of rooftop photovoltaic (PV) plants in distribution systems leads to new technical challenges: reverse-active power and voltage rise in low-voltage (LV) and medium-voltage (MV) grids. These challenges limit the maximum amount of power can be produced by PVs in LV and MV grids, called the hosting capacity (HC). Battery storage systems (BSSs) have been used in many studies to decrease the reverse power and improve the HC by controlling the active power. However, the influence of a central BSS on the HC can be greatly improved by using a quadratic power control, simultaneous active, and reactive power control, and by selecting of the optimal battery size, the converter size, and the place of the central BSS. The effectiveness of the quadratic power control was not seen in previous works due to the fact that grids with one level of voltage without modeling of MV/LV transformers were simulated. This paper develops a method to select the optimal size of the battery and converter unit as well as the optimal place of an LV-central BSS having an optimal quadratic power control. The simulation results show considerable effects of the optimal selection of an LV-central BSS on the HC improvement.
机译:屋顶光伏(PV)工厂在配电系统中的高度集成带来了新的技术挑战:低压(LV)和中压(MV)电网中的反向有功功率和电压上升。这些挑战限制了LV和MV电网中的PV可以产生的最大功率,称为承载能力(HC)。电池存储系统(BSS)已用于许多研究中,以通过控制有功功率来降低反向功率并提高HC。但是,通过使用二次功率控制,同时有功和无功功率控制,以及选择最佳电池尺寸,转换器尺寸和中央BSS的位置,可以大大改善中央BSS对HC的影响。 。在以前的工作中没有看到二次功率控制的有效性,这是因为对具有一个电压电平的电网进行了建模,但没有对MV / LV变压器建模。本文提出了一种选择电池和转换器单元的最佳尺寸以及具有最佳二次功率控制的LV中央BSS的最佳位置的方法。仿真结果表明,最佳选择LV-central BSS可以改善HC。

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