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Electrical test methods for on-line fuel cell ohmic resistance measurement

机译:在线燃料电池欧姆电阻测量的电气测试方法

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The principles and trade-offs of four electrical test methods suitable for on-line measurement of the ohmic resistance (R_(OMEGA)) of fuel cells is presented: current interrupt, AC resistance, high frequency resistance (HFR), and electrochemical impedance spectroscopy (EIS). The internal resistance of a proton exchange membrane (PEM) fuel cell determined with the current interrupt, HFR and EIS techniques is compared. The influence of the AC amplitude and frequency of the HFR measurement on the observed ohmic resistance is examined, as is the ohmic resistance extracted from the EIS data by modeling the spectra with a transmission line model for porous electrodes. The ohmic resistance of a H_2/O_2 PEM fuel cell determined via the three methods was within 10-30 percent of each other. The current interrupt technique consistently produced measured cell resistances that exceeded those of the other two techniques. For the HFR technique, the frequency at which the measurement was conducted influenced the measured resistance (i.e., higher frequency providing smaller R_(OMEGA)), whereas the AC amplitude did not effect the observed value. The difference in measured ohmic resistance between these techniques exceeds that reasonably accounted for by measurement error. The source of the discrepancy between current interrupt and impedance-based methods is attributed to the difference in the response of a non-uniformly polarized electrode, such as a porous electrode with non-negligible ohmic resistance, to a large perturbation (current interrupt event) as compared to a small perturbation (impedance measurement).
机译:提出了适用于在线测量燃料电池欧姆电阻(R_(OMEGA))的四种电气测试方法的原理和取舍:电流中断,交流电阻,高频电阻(HFR)和电化学阻抗谱(EIS)。比较了通过电流中断,HFR和EIS技术确定的质子交换膜(PEM)燃料电池的内阻。通过使用多孔电极的传输线模型对光谱建模,检查了HFR测量的AC幅度和频率对观察到的欧姆电阻的影响,以及从EIS数据中提取的欧姆电阻的影响。通过三种方法确定的H_2 / O_2 PEM燃料电池的欧姆电阻彼此之间在10%到30%之间。电流中断技术始终产生的测得的电池电阻超过了其他两种技术。对于HFR技术,进行测量的频率会影响所测量的电阻(即较高的频率会提供较小的R_(OMEGA)),而AC幅度不会影响所观察到的值。这些技术之间的欧姆电阻测量值之差超过了测量误差引起的合理值。电流中断和基于阻抗的方法之间差异的根源是由于极化不均匀的电极(例如欧姆电阻不可忽略的多孔电极)对大扰动(电流中断事件)的响应差异与小扰动(阻抗测量)相比。

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