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A three-phase power flow approach for integrated 3-wire MV and 4-wire multigrounded LV networks with rooftop Solar PV

机译:具有屋顶太阳能PV的集成式3线MV和4线多接地LV网络的三相潮流方法

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摘要

With increasing level of rooftop solar photovoltaic (PV) penetration into low voltage (LV) distribution networks, analysis with realistic network models is necessary for adequate capturing of network behavior. Traditional three-phase 3-wire power flow approach lacks the capability of exact analysis of 4-wire multigrounded LV networks due to the approximation of merging the neutral wire admittance into the phase wire admittances. Such an approximation may not be desirable when neutral wire and grounding effects need to be assessed, especially in the presence of single-phase solar power injection that may cause a significant level of network unbalance. This paper proposes a three-phase power flow approach for distribution networks while preserving the original 3-wire and 4-wire configurations for more accurate estimation of rooftop PV impacts on different phases and neutrals. A three-phase transformer model is developed to interface between the 3-wire medium voltage (MV) and the 4-wire LV networks. Also an integrated network model is developed for an explicit representation of different phases, neutral wires and groundings of a distribution system. A series of power flow calculations have been performed using the proposed approach to investigate the impacts of single-phase variable PV generation on an Australian distribution system and results are presented.
机译:随着屋顶太阳能光伏(PV)渗透到低压(LV)配电网络的水平不断提高,必须使用实际的网络模型进行分析才能充分捕获网络行为。由于将中性线导纳合并为相线导纳,因此传统的三相3线潮流方法缺乏对4线多接地低压网络进行精确分析的能力。当需要评估中性线和接地的影响时,尤其是在存在单相太阳能注入的情况下,这种近似可能是不可取的,因为单相太阳能注入可能会导致严重的网络不平衡。本文提出了一种用于配电网络的三相潮流方法,同时保留了原始的3线和4线配置,以便更准确地估算屋顶光伏对不同相和零线的影响。开发了三相变压器模型以在3线中压(MV)和4线LV网络之间建立接口。还开发了一个集成网络模型,用于明确表示配电系统的不同相,中性线和接地。使用提出的方法进行了一系列潮流计算,以研究单相变量PV发电对澳大利亚配电系统的影响,并给出了结果。

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