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Energy Management Strategy of Multiple Supercapacitors in a DC Microgrid Using Adaptive Virtual Impedance

机译:直流微电网中多个超级电容器的自适应虚拟阻抗能量管理策略

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Supercapacitors (SCs) are increasingly used in energy storage system to tackle the fast power transients. They can be used individually or together with other energy storage units like batteries. In a microgrid, multiple SCs could be installed at different locations without communications among them. This paper focuses on the energy management strategy (EMS) of multiple SCs in a dc microgrid, where the distributed generation units and energy storage units are controlled with the plug-and-play feature. A novel EMS is proposed, which uses the state-of-charge-based adaptive virtual impedance to facilitate the transient power sharing among the parallel SCs without physical communications. The detailed analysis and design procedure are explained based on an example microgrid system with two SCs and one battery energy storage connected in parallel through the dc/dc converters. The effectiveness of the proposed method is verified by both simulation and experimental results.
机译:超级电容器(SC)越来越多地用于储能系统中,以应对快速的功率瞬变。它们可以单独使用,也可以与其他能量存储单元(如电池)一起使用。在微电网中,多个SC可以安装在不同的位置,而无需它们之间的通信。本文着重研究直流微电网中多个SC的能源管理策略(EMS),其中分布式发电单元和储能单元通过即插即用功能进行控制。提出了一种新颖的EMS,其使用基于电荷状态的自适应虚拟阻抗来促进并行SC之间的瞬态功率共享,而无需进行物理通信。基于具有两个SC和一个电池能量存储器通过dc / dc转换器并联的微电网系统示例,对详细的分析和设计过程进行了说明。仿真和实验结果均验证了该方法的有效性。

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