Real-time PEMFC diagnosis using electrochemical impedance spectroscopy under limited data conditions

In proton-exchange membrane fuel cells (PEMFCs), output voltage fluctuates based on the internal state. Therefore, evaluating fuel cell conditions is crucial for controlling operating parameters and maintaining an appropriate internal state. While electrochemical impedance spectroscopy (EIS) is used to determine the internal state during operations, conventional techniques require long measurement times. This delay is problematic during load fluctuations because the internal state may shift before measurement, leading to inaccurate diagnoses. Thus, reducing measurement time is essential for diagnosing the internal conditions of fuel cells using EIS. In this study, we limit the measured frequency range and decrease the number of measured frequencies to reduce measurement time. Comparing results obtained using the conventional and proposed methods suggests that combinations of frequencies can minimize the error rate of the calculated equivalent circuit parameters compared with those obtained without frequency restrictions; thus, the proposed EIS method is applicable to PEMFC control.

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Publication Details

Journal
International Journal of Hydrogen Energy
Published
2026-09-22
DOI
https://doi.org/10.1016/j.ijhydene.2026.157623
Primary Topic
Fuel Cells and Related Materials
Type
article
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Real-time PEMFC diagnosis using electrochemical impedance spectroscopy under limited data conditions

Tomoharu Sakai, Yutaro Akimoto, Nor Aziana Aliteh, Keiichi Okajima et al.
International Journal of Hydrogen Energy
Fuel Cells and Related Materials
article

Real-time PEMFC diagnosis using electrochemical impedance spectroscopy under limited data conditions

Tomoharu Sakai, Yutaro Akimoto, Nor Aziana Aliteh, Keiichi Okajima, Takuya Suzuki, Shin Kasai, Izamu Kawahara, Takeo Aruga
article en

Abstract

In proton-exchange membrane fuel cells (PEMFCs), output voltage fluctuates based on the internal state. Therefore, evaluating fuel cell conditions is crucial for controlling operating parameters and maintaining an appropriate internal state. While electrochemical impedance spectroscopy (EIS) is used to determine the internal state during operations, conventional techniques require long measurement times. This delay is problematic during load fluctuations because the internal state may shift before measurement, leading to inaccurate diagnoses. Thus, reducing measurement time is essential for diagnosing the internal conditions of fuel cells using EIS. In this study, we limit the measured frequency range and decrease the number of measured frequencies to reduce measurement time. Comparing results obtained using the conventional and proposed methods suggests that combinations of frequencies can minimize the error rate of the calculated equivalent circuit parameters compared with those obtained without frequency restrictions; thus, the proposed EIS method is applicable to PEMFC control.

International Journal of Hydrogen EnergyVol. 277
University of Tsukuba (JP)
Affordable and clean energy
Openalex Percentile: Top 21%
Fuel Cells and Related Materials
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Real-time PEMFC diagnosis using electrochemical impedance spectroscopy under limited data conditions — Tomoharu Sakai, Yutaro Akimoto, et al. · International Journal of Hydrogen Energy (2026) | TGRS Research Map | TGRS