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Frequential identification of an electrochemical cell impedance using fractional modeling

机译:使用分数模型频繁识别电化学电池阻抗

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Electrochemical Impedance Spectroscopic (EIS) represents an important technique to characterize the impedance of electrochemical systems. The internal impedance phenomena can be modeled using Electrical Equivalent Circuit. Fractional operator is used to characterize the charge transfer and the diffusion phenomena. This may be attractive due to the ability of fractional systems to be simulated either in frequency or time domain. The impedance model using fractional systems is represented by a transfer function that is identified using Levenberg-Marquardt algorithm. The fractional model identification is validated on an experimental test-bench using two platinum electrodes immersed into Ferri-Ferro solution. Results indicate the ability of fractional system to identify properly the different impedance parameters. In order to decrease the long experiment time of EIS, minimization of the low frequency measurement points is performed and results show the ability of fractional systems to identify EIS data.
机译:电化学阻抗谱(EIS)代表了表征电化学系统阻抗的一项重要技术。可以使用等效电路对内部阻抗现象进行建模。小数运算符用于表征电荷转移和扩散现象。由于分数系统可以在频域或时域中进行仿真,因此这可能很有吸引力。使用分数系统的阻抗模型由传递函数表示,该传递函数使用Levenberg-Marquardt算法确定。使用浸入Ferri-Ferro溶液中的两个铂电极在实验测试台上验证了分数模型识别。结果表明分数系统正确识别不同阻抗参数的能力。为了减少EIS的实验时间,对低频测量点进行了最小化,结果显示了分数系统识别EIS数据的能力。

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