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A new parameters identification procedure for simplified double layer capacitor two-branch model

机译:简化双层电容器两分支模型参数辨识的新方法

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Supercapacitors are electrical energy storage devices that offer high power density and a high number of charge and discharge cycles. Even though the amount of stored energy they maintain is not comparable that of classical batteries, supercapacitors can offer advantages in several industrial applications. This paper introduces a simplified model, named the "two-branch" model, to characterize the electrical behaviour of double layer capacitors (DLCs). This model is similar to some models in literature from a circuit point of view (e.g. three-branch model), but the parameters identification process is easier and faster. Experimental charge and charge-discharge tests have been executed on supercapacitors of two different makes (Epcos and Maxwell) and for several different sizes (between 110 F and 600 F). Moreover a new identification procedure, for describing short-term behaviour, is proposed for the new simplified two-branch model. This new procedure is simpler than for the other lumped models therefore it can be adopted fruitfully also from them. The experimental results and the performed simulations are reported in order to verify the validity of the new simplified proposed model and of the new parameter identification process.
机译:超级电容器是电能存储设备,可提供高功率密度以及大量充电和放电循环。即使它们所保持的储能量无法与传统电池相比,超级电容器仍可在几种工业应用中提供优势。本文介绍了一种简化的模型,称为“两分支”模型,以表征双层电容器(DLC)的电性能。从电路的角度来看,该模型与文献中的某些模型(例如三分支模型)相似,但是参数识别过程更容易,更快捷。已经在两种不同型号(Epcos和Maxwell)且针对几种不同尺寸(110 F至600 F)的超级电容器上进行了实验性充电和放电测试。此外,针对新的简化的两分支模型,提出了一种用于描述短期行为的新识别程序。这个新程序比其他集总模型更简单,因此也可以从其他集结模型中有效地采用它。报告了实验结果和进行的仿真,以验证新的简化提议模型和新参数识别过程的有效性。

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