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Presentation of an H_∞ based frequency control for islanding provisional microgrid consisting of hybrid AC/DC microgrid

机译:基于H_∞基于HYBRID AC / DC Microgrid组成的临时微电网的频率控制

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Provisional microgrids create by the connection of two beside microgrids to achieve economic benefits. So far, there have been many reviews on AC microgrids. However, due to the many advantages of DC microgrids, they cannot be ignored. To achieve the advantages of both AC and DC microgrids, hybrid structures were considered. The subject of controlling hybrid microgrids is relatively more complex. Due to the variable nature of the distributed generation resources, this complexity in islanding conditions is even greater than normal conditions. This paper proposes a robust frequency control for islanding provisional microgrid including hybrid AC/DC part as a master microgrid and AC conventional part as a slave microgrid. As authors are aware, there are no scientific reports for frequency control of the proposed microgrid. One of the issues affecting the performance of this controller is the choice of weighting functions. To achieve optimal controller, an algorithm is used to determine the best weighting functions according to the way the controller works, and by examining the sensitivity functions. Finally, simulations were performed to investigate the performance of the controller and the results of using this controller for this microgrid were examined.
机译:临时微电网通过在微电网旁边的两个内部产生以实现经济效益。到目前为止,对AC微电网有很多评论。但是,由于DC微电网的许多优点,它们不能被忽略。为了实现AC和DC微电网的优点,考虑了混合结构。控制杂种微电网的主题是相对较复杂的。由于分布式生成资源的可变性质,岛屿条件中的这种复杂性甚至大于正常情况。本文提出了一种稳健的频率控制,用于临时微电网,包括混合AC / DC部件作为主微电网和AC传统部分作为从属微电网。随着作者所知,拟议的微电网的频率控制没有科学报告。影响该控制器性能的问题之一是选择加权函数的选择。为了实现最佳控制器,使用一种算法根据控制器工作方式确定最佳加权功能,并通过检查灵敏度函数。最后,进行了仿真以研究控制器的性能,并检查使用该控制器的使用该控制器的结果。

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