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Fast time domain identification of electrochemical systems at low frequencies using fractional modeling

机译:使用分数建模低频电化学系统的快速时域识别

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摘要

Electrochemical Impedance Spectroscopy (EIS) is widely used in different types of applications to model accurately the internal battery behavior. EIS requires very long time to obtain experimental data, especially for diffusion phenomenon (low frequency). Therefore, fast chronopotentiometry experiment represents an interesting approach to solve this problem. This paper deals with the identification of diffusion electrochemical impedance parameters in time domain using fractional systems where EIS diffusion spectrum is obtained through the identified parameters from chronopotentiometry data. An Equivalent Electric Circuit (EEC) modeling using fractional systems is used to identify diffusion parameters. The method is validated using an experimental electrochemical cell and it shows accurate estimation for the diffusion parameters. Consequently, the fractional system is used as an identification tool to study the impact of external parameters on the diffusion aspects such as polarization point and working electrode rotation speed. (c) 2020 Elsevier B.V. All rights reserved.
机译:电化学阻抗光谱(EIS)广泛用于不同类型的应用,以准确地模拟内部电池行为。 EIS需要很长时间才能获得实验数据,特别是对于扩散现象(低频)。因此,快速计时表实验代表了解决这个问题的有趣方法。本文涉及使用来自计时计量数据的鉴定参数获得EIS扩散谱的分数系统在时域中识别扩散电化学阻抗参数。使用分数系统的等效电路(EEC)建模用于识别扩散参数。使用实验电化学电池验证该方法,并显示了扩散参数的精确估计。因此,分数系统用作识别工具,以研究外部参数对诸如偏振点和工作电极转速的扩散方面的影响。 (c)2020 Elsevier B.v.保留所有权利。

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