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An impedance model for EIS analysis of nickel metal hydride batteries

机译:镍氢电池EIS分析的阻抗模型

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摘要

Based on fundamental electrochemical theory, an impedance model for analysis of electrochemical impedance spectroscopy (EIS) of Nickel-Metal Hydride (NiMH) batteries is presented in this study. The resulting analytical expression is analogous to the impedance response of the Randles electrical circuit used for EIS analysis on NiMH batteries. The impedance model is validated against EIS measurements carried out whilst decreasing the state of charge (SOC) of a NiMH battery pack. The diffusion mechanisms during the discharge of the NiMH battery is modelled through a Warburg element derived from diffusion theory considering reflective boundary conditions. ZView® Scribner Associates Inc. software allowed the estimation of electrochemical and diffusion parameters from EIS measurements of the NiMH battery. The effect of diffusion mechanisms on EIS measurements is discussed. The results demonstrate that ion transport is the rate-limiting process during the discharge of the NiMH battery. This EIS-modelling study has provided an insight into the interpretation of battery electrochemical mechanisms represented in the Nyquist plot from EIS. It can assist to further EIS-modelling to study and correlate State of Health (SOH) in NiMH batteries for different applications.
机译:基于基本的电化学理论,本研究提出了一种用于分析镍氢(NiMH)电池的电化学阻抗谱(EIS)的阻抗模型。所得的分析表达式类似于用于NiMH电池的EIS分析的Randles电路的阻抗响应。该阻抗模型可根据执行的EIS测量进行验证,同时降低NiMH电池组的充电状态(SOC)。镍氢电池放电过程中的扩散机制是通过考虑了反射边界条件的,由扩散理论派生的Warburg元素建模的。 ZView®Scribner Associates Inc.软件允许通过NiMH电池的EIS测量估算电化学和扩散参数。讨论了扩散机制对EIS测量的影响。结果表明,离子传输是镍氢电池放电过程中的限速过程。此EIS模型研究提供了对EIS奈奎斯特图中所代表的电池电化学机理的解释的见解。它可以帮助进一步的EIS建模,以研究和关联NiMH电池在不同应用中的健康状态(SOH)。

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