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A comprehensive three-phase load flow method for integrated MV and LV distribution networks

机译:用于中压和低压配电网的综合三相潮流方法

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In the smart grid era, significant penetrations of distributed renewables not only directly impact the secondary low-voltage (LV) distribution network where they are connected, but also indirectly affect the primary medium-voltage (MV) distribution network. Therefore, load flow algorithms are expected to cover both MV and LV levels within a distribution network for more accurate and reasonable analyses. In this study, based on the Direct Load Flow approach and detailed modeling of common Dyn11 distribution transformers, a comprehensive three-phase load flow method which can effectively and efficiently solve the integrated MV and LV distribution networks is proposed. The feasibility and effectiveness as well as superior computational performance in terms of accuracy, efficiency and robustness are verified by simulations on the typical IEEE 4-bus test feeder and a real Australian distribution network over 24 hours.
机译:在智能电网时代,分布式可再生能源的大量渗透不仅直接影响与其相连的次级低压(LV)配电网络,而且间接影响初级中压(MV)配电网络。因此,预计潮流算法将覆盖配电网络中的MV和LV级别,以便进行更准确和合理的分析。在这项研究中,基于直接潮流方法和常见Dyn11配电变压器的详细建模,提出了一种可以有效,高效地解决中压和低压配电网集成问题的综合三相潮流方法。通过在典型的IEEE 4总线测试馈线和真实的澳大利亚配电网络上进行的24小时仿真,验证了准确性,效率和鲁棒性方面的可行性和有效性以及出色的计算性能。

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