Voltage Unbalance Mitigation in Low Voltage Distribution Networks using Time Series Three-Phase Optimal Power Flow

Mohammad Al-Ja'afreh, G. Mokryani
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Abstract

Due to high penetration of single-phase Photovoltaic (PV) cells into low voltage (LV) distribution networks, several impacts such as voltage unbalance, voltage rise, power losses, reverse power flow arise which leads to operational constraints violation in the network. In this paper, a time series Three Phase Optimal Power Flow (TPOPF) method is proposed to minimize the voltage unbalance in LV distribution networks with high penetration of residential PVs. TPOPF problem is formulated using the current injection method in which the PVs are modelled via a time-varying PV power profile with active and reactive power control. The proposed method is validated on a real LV distribution feeder. The results show that the reactive power management of the PVs helps mitigate the voltage unbalance significantly. Moreover, the voltage unbalance index reduced significantly compared to the case without voltage unbalance minimisation.
用时间序列三相最优潮流缓解低压配电网电压不平衡
由于单相光伏电池在低压配电网中的高渗透,会产生电压不平衡、电压上升、功率损耗、反向潮流等影响,从而导致电网运行约束的违反。针对住宅光伏普及率高的低压配电网,提出了一种时间序列三相最优潮流法(TPOPF)。TPOPF问题采用电流注入法,通过有功和无功控制的时变PV功率曲线对PV进行建模。在实际低压配电馈线上验证了该方法的有效性。结果表明,对pv进行无功功率管理可以显著缓解电压不平衡。此外,与没有最小化电压不平衡的情况相比,电压不平衡指数显着降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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