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Voltage and frequency control strategies of hybrid AC/DC microgrid: a review

机译:交流/直流混合微电网的电压和频率控制策略:综述

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Microgrids have become an attractive option for distributed generation (DG) with increase in renewable energy sources (RES) and storage systems. The existence of both AC and DC microgrids has led to a new concept of hybrid AC/DC microgrid which consists of both AC and DC grids tied by an interlinking converter (ILC). Such hybrid AC/DC microgrid has the advantages of both AC and DC with increased efficiency and less cost since the conversion between AC and DC is reduced. The management of power in such a grid becomes important for voltage and frequency control. Different voltage and frequency control strategies have been successfully implemented within AC and DC grids, but the control of hybrid microgrid requires further attention with focus on ILC. This study presents an overview of various control schemes used for voltage and frequency regulation in standalone and transition mode operation of hybrid microgrid. A detailed study on hybrid grid structure is presented with different modes of operation. Various ILC strategies based on droop and communication-based control are presented. Based on the analysis, some recommendations are presented for future research.
机译:随着可再生能源(RES)和存储系统的增加,微电网已成为分布式发电(DG)的有吸引力的选择。交流和直流微电网的存在催生了混合交流/直流微电网的新概念,该概念由交联转换器(ILC)捆绑的交流和直流电网组成。由于减少了AC和DC之间的转换,因此这种混合AC / DC微电网具有AC和DC两者的优点,其具有提高的效率和更低的成本。在这样的电网中的功率管理对于电压和频率控制变得重要。在交流和直流电网中已成功实现了不同的电压和频率控制策略,但是混合微电网的控制需要进一步关注,重点是ILC。这项研究概述了混合微电网的独立和过渡模式运行中用于电压和频率调节的各种控制方案。详细介绍了混合网格结构的不同操作模式。提出了基于下垂和基于通信的控制的各种ILC策略。在分析的基础上,提出了一些建议,以供将来研究。

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