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Determination of Hybrid Energy Storage System Capacity based on Empirical Mode Decomposition for a High PV Penetrated Standalone Microgrid

机译:基于经验模态分解的高光伏穿透独立微电网混合动力储能系统容量确定

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This paper targets to introduce a novel approach for capacity determination of a hybrid energy storage system (HESS) of a standalone microgrid with high PV penetration. The imbalance power between solar PV and load is decomposed to yield its frequency-time components using Empirical Mode Decomposition (EMD) technique. Statistical characteristics of the components are then matched against the attributes of the energy storage devices, namely the electrochemical battery and supercapacitors. This is to achieve the collective benefit of the two storage media in their unique power and energy handling capabilities. This integrated approach is utilized to smoothen the PV variations in the most cost-effective manner. Concurrently, a proposed design procedure is used to determine the storage capacities of the hybrid energy storage system to avoid penalty of un-met load.
机译:本文旨在引入具有高PV渗透的独立微栅的混合能储能系统(HESS)的能力确定新方法。太阳能光伏和负载之间的不平衡功率分解以使用经验模式分解(EMD)技术产生其频率 - 时分量。然后将组件的统计特性与能量存储装置的属性匹配,即电化学电池和超级电容器。这是为了实现两个存储介质在独特的电源和能量处理能力中的集体好处。这种综合方法用于使PV变化以最具成本效益的方式平滑。同时,建议的设计过程用于确定混合能量存储系统的存储容量,以避免不足负载的惩罚。

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