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首页> 外文期刊>International Transactions on Electrical Energy Systems >Multivariable controller for a novel topology of double-input converter applied in distributed hybrid photovoltaic/wind power system
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Multivariable controller for a novel topology of double-input converter applied in distributed hybrid photovoltaic/wind power system

机译:分布式光伏/风电混合系统中双输入变换器新型拓扑的多变量控制器

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摘要

Regulating the voltage of distributed renewable power systems is a main technical problem of power system controllers. This paper proposes a new method to design the controller of double-input direct current-direct current converters which are applied in hybrid renewable power systems. In addition, in this research, the converter has novel topology and can be used to obtain well-regulated output voltage from 2 renewable energy sources, and the suggested structure has important advantages compared with previous ones. The operating principle and design criteria of the designed converter are provided. Furthermore, the conventional controllers cannot set the voltage of hybrid power systems at some critical situations. At the other part, on the basis of the multivariable control strategy, an efficient controller for the converter is designed. In the last part, on the basis of simulation study and several experiments, converter performance in different conditions is analyzed and the efficiency of the designed converter and multivariable controller is approved.
机译:调节分布式可再生电力系统的电压是电力系统控制器的主要技术问题。本文提出了一种设计用于混合可再生电力系统的双输入直流-直流变换器控制器的新方法。此外,在本研究中,该转换器具有新颖的拓扑结构,可用于从2种可再生能源中获得调节良好的输出电压,并且该结构与以前的结构相比具有重要的优势。提供了所设计转换器的工作原理和设计准则。此外,常规控制器无法在某些紧急情况下设置混合动力系统的电压。另一方面,基于多变量控制策略,设计了用于转换器的高效控制器。最后一部分,在仿真研究和几个实验的基础上,分析了不同条件下的变频器性能,并验证了所设计变频器和多变量控制器的效率。

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