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Decentralized Droop Control in DC Microgrids Based on a Frequency Injection Approach

机译:基于频率注入方法的直流微电网分散下垂控制

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Power sharing control among grid forming dc sources employing a conventional voltage droop approach meets inaccurate load sharing and unacceptable voltage regulation performance. Thereby, communication-based secondary and supervisory controllers have been presented to overcome the aforementioned issues. Furthermore, with the aim of eliminating communication system, frequency-based droop approaches have been introduced for low-voltage dc grids where the frequency of the superimposed ac signal onto the dc voltage is proportional to the output power. However, in reality, dc grid structures can be applied to medium and high voltage applications with different X/R ratios. This paper generalizes the frequency-based droop scheme for dc microgrids with different low, medium, and high X/R ratios. Obtained simulation and experiment results demonstrate the effectiveness of the proposed control method.
机译:使用常规电压降落方法在形成电网的直流电源之间进行功率共享控制会遇到不正确的负载分配和不可接受的电压调节性能。从而,已经提出了基于通信的次级和监督控制器以克服上述问题。此外,为了消除通信系统,已经针对低压直流电网引入了基于频率的下降方法,其中,交流信号叠加到直流电压上的频率与输出功率成比例。但是,实际上,直流栅格结构可以应用于具有不同X / R比的中高压应用。本文针对具有不同的低,中和高X / R比的直流微电网,概述了基于频率的下垂方案。获得的仿真结果和实验结果证明了该控制方法的有效性。

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