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Microgrid power flow study in grid-connected and islanding modes under different converter control strategies

机译:不同变流器控制策略下并网和孤岛模式下的微电网潮流研究

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The organic growth and evolution of the future smart grid is expected to emerge as a well-planned plug-and-play integration of smart microgrids. A microgrid normally comprises a variety of inverter-interfaced distributed energy resources such as solar photovoltaic arrays, wind turbines, microturbines, fuel cells, energy storage devices, and controllable loads, in which a key issue is how to manage a microgrid in grid-connected and islanding modes under different converter control strategies. This paper presents a microgrid power flow study under variable load and generation conditions. The paper considers typical properties of inverter-interfaced microsources, including PQ inverter, PV inverter, and converter rated current and linear modulation constraints in the power flow study. A benchmark network is built by using PowerWorld simulator. But, variable load and generation data is created by using other software tools and then loaded into the PowerWorld simulator. The benchmark network is studied by considering different microgrid operation scenarios. Simulation evaluation demonstrates how the microgrid behaves under different power converter operating conditions in grid-connected and islanding modes, respectively.
机译:未来智能电网的有机增长和演进有望作为精心计划的智能微电网的即插即用集成而出现。微电网通常包含各种逆变器接口的分布式能源,例如太阳能光伏阵列,风力涡轮机,微型涡轮机,燃料电池,能量存储设备和可控负载,其中关键问题是如何在并网中管理微电网和不同的转换器控制策略下的孤岛模式。本文提出了在可变负载和发电条件下的微电网潮流研究。本文在潮流研究中考虑了逆变器接口微源的典型特性,包括PQ逆变器,PV逆变器以及转换器的额定电流和线性调制约束。使用PowerWorld模拟器构建基准网络。但是,使用其他软件工具创建可变的负载和生成数据,然后将其加载到PowerWorld模拟器中。通过考虑不同的微电网运行方案来研究基准网络。仿真评估证明了微电网分别在并网和孤岛模式下在不同功率转换器工作条件下的行为。

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