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A series-resonance-based three-port converter with unified autonomous control method in DC microgrids

机译:直流微电网中具有统一自主控制方法的基于串联谐振的三端口变换器

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A three-port converter (TPC) as a compact DC/DC energy conversion unit can effectively integrate renewable energy sources (RESs) and energy storage systems (ESSs) into DC microgrids (MGs). In this paper, a hardware-decoupling approach using series-connected capacitor in a TPC is proposed and studied. In this series-resonance-based TPC, the decoupled power flow model among different ports is derived based on the equivalent model of the converter and the operation principle of the resonant circuit. Considering the characteristics and operation modes of photovoltaic (PV) and energy storage unit (ESU), which are connected at the two input ports of the TPC, a unified control method based on minimum value competition logic is proposed to achieve voltage regulation of the common bus in DC MGs. Experimental results are obtained in different test scenarios to demonstrate the effectiveness of the proposed method.
机译:三端口转换器(TPC)作为紧凑的DC / DC能量转换单元,可以有效地将可再生能源(RES)和能量存储系统(ESS)集成到DC微电网(MG)中。本文提出并研究了一种在TPC中使用串联电容器的硬件去耦方法。在这种基于串联谐振的TPC中,基于转换器的等效模型和谐振电路的工作原理,推导了不同端口之间的去耦潮流模型。考虑到TPC的两个输入端口相连的光伏(PV)和储能单元(ESU)的特性和工作模式,提出了一种基于最小值竞争逻辑的统一控制方法,以实现通用的电压调节。 MG MG中的总线。在不同的测试场景下获得的实验结果证明了该方法的有效性。

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