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Analysis and Compensation of PEM Fuel Cell Instabilities in Low-Frequency EIS Measurements

机译:低频EIS测量中PEM燃料电池不稳定性的分析和补偿

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This paper analyzes possible humidity-related instabilities of polymer electrolyte membrane (PEM) fuel cell (FC) operation that affect electrochemical impedance spectroscopy measurements. The compensation of ohmic resistance variations due to such instabilities, achieved using the well known multisine excitation technique with properly chosen high-frequency harmonic components, is proposed here as a new approach to improve low-frequency measurements. Additionally, this method allows a more accurate determination of equivalent circuit parameters identified from impedance spectra and their uncertainties taking into account correlation between impedances at different frequencies, and thus avoiding uncertainty overestimation of low-frequency parameters (such as transport and activation equivalent resistances) that is likely to occur with classic measurement techniques. The proposed method is experimentally validated on a single PEM FC.
机译:本文分析了可能与湿度有关的聚合物电解质膜(PEM)燃料电池(FC)操作的不稳定性,这些不稳定性会影响电化学阻抗谱的测量。本文提出了使用众所周知的多正弦激励技术以及适当选择的高频谐波分量来补偿由于这种不稳定性而导致的欧姆电阻变化的补偿,作为改善低频测量的一种新方法。此外,该方法还可以更准确地确定从阻抗谱识别的等效电路参数及其不确定性,同时考虑到不同频率下的阻抗之间的相关性,从而避免了对低频参数(如传输和激活等效电阻)的不确定性过高估计经典的测量技术很可能会发生这种情况。所提出的方法在单个PEM FC上进行了实验验证。

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