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Power-based droop control in DC microgrids enabling seamless disconnection from AC grids

机译:直流微电网中的基于功率的下垂控制,从而实现了AC网格的无缝断开

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This paper proposes a unified power-based droop control method for distributed energy resources in dc microgrids that can operate both in grid-connected and islanded mode. When the main grid is available, the bus voltage is regulated by the grid-interface ac/dc converter, while distributed energy resources operate as power controlled sources. During abnormal operation of the main grid (e.g., due to faults), the grid-interface converter loses the capability of regulating the bus voltage and the proposed controller inherently converts from a power controller to a droop controller, without any need of communication with other microgrid components, enabling the seamless transition between the two operating modes. The proposed solution is experimentally verified by a testbed having one grid-interface converter and four distributed energy resource converters, 5kW of rated power each.
机译:本文提出了一种用于DC微电网中的分布式能源的基于统一的功率的下垂控制方法,可在网格连接和岛状模式下运行。当主电网可用时,总线电压由电网接口AC / DC转换器调节,而分布式能源作为电源控制源运行。在主电网的异常操作期间(例如,由于故障),网格接口转换器失去调节总线电压的能力,并且所提出的控制器固有地从电源控制器转换为下垂控制器,而无需与其他沟通MicroGrid组件,在两个操作模式之间实现无缝过渡。所提出的解决方案通过具有一个电网接口转换器和四个分布式能源资源转换器的测试平台进行实验验证,每个电网每个额定功率为5kW。

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