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A Universal Control Method to Realize Plug-and-Play Converters for Microgrids

机译:实现用于微电​​网的即插即用转换器的通用控制方法

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摘要

In recent years, AC and DC microgrids have been extensively studied. By constructing microgrids, it is possible to promote installing renewable energy resources. Most of components (renewable energy sources, storage devices, load, and so on) are connected to the microgrids through power converters. Therefore, due to spread of microgrids, the importance and the use of power converters have been increasing. As a practical solution to build microgrids, our group has proposed a concept of “plug-and-play” converter. The concept means that the plug-and-play converter is flexibly applied to various components with a unified circuit topology in three-phase AC, single-phase AC, and DC microgrids. As one of the essential functions for development of the plug-and-play converter, this paper realizes universal grid interconnection control method. The proposed control method enables to transmit and receive desired active power in three-phase AC, single-phase AC, and DC microgrids, without changing the control system and circuit topology. Simulation studies verify the validity of the universal grid interconnection control method.
机译:近年来,对交流和直流微电网进行了广泛的研究。通过构建微电网,可以促进安装可再生能源。大多数组件(可再生能源,存储设备,负载等)通过电源转换器连接到微电网。因此,由于微电网的普及,功率转换器的重要性和使用一直在增加。作为构建微电网的实用解决方案,我们小组提出了“即插即用”转换器的概念。该概念意味着即插即用型转换器可以通过统一的电路拓扑灵活地应用于三相AC,单相AC和DC微电网中的各种组件。作为即插即用转换器开发的基本功能之一,本文实现了通用电网互联控制方法。所提出的控制方法使得能够在三相交流电,单相交流电和直流微电网中发送和接收所需的有功功率,而无需改变控制系统和电路拓扑。仿真研究证明了通用电网互联控制方法的有效性。

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