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Hybrid battery-supercapacitor mathematical modeling for PV application using Matlab/Simulink

机译:使用Matlab / Simulink的光伏电池混合超级电容器数学模型

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摘要

Energy storage plays an important role in the renewable energy sources integration. Additionally, hybrid energy storage can be integrated into various systems to achieve different applications. Specifically, the combination of high energy and power rating, increased life cycle, duration of discharge period and other features may not be satisfied by the single storage technology. There are several storage technologies that may be used in a photovoltaic (PV) system. This paper focuses on the mathematical modeling of the hybrid battery-supercapacitor storage system. The hybrid storage combines the advantages of both battery and supercapacitor storage. Also, supercapacitors can reduce stresses on battery storage and thus extend their battery life. The proposed mathematical model is implemented using Matlab/Simulink. Regarding the supercapacitor equivalent circuit, the two branches model is examined. For the lithium-ion battery storage model, a dual polarization model with two parallel RC networks is studied. The next step is to integrate the hybrid battery-supercapacitor storage into a grid-connected PV system.
机译:储能在可再生能源整合中起着重要作用。此外,混合能源存储可以集成到各种系统中以实现不同的应用。具体而言,单一存储技术可能无法满足高能量和额定功率,增加的使用寿命,放电时间持续时间和其他功能的组合。在光伏(PV)系统中可以使用几种存储技术。本文着重于混合动力电池-超级电容器存储系统的数学建模。混合存储结合了电池和超级电容器存储的优点。同样,超级电容器可以减少电池存储的压力,从而延长其电池寿命。所提出的数学模型是使用Matlab / Simulink实现的。关于超级电容器的等效电路,研究了两个分支模型。对于锂离子电池存储模型,研究了具有两个并行RC网络的双极化模型。下一步是将混合动力电池-超级电容器存储集成到并网光伏系统中。

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