Open Access

Multi–Symptom Measurement Based Fault Detection of the PEM Fuel Cell System

International Journal of Applied Mathematics and Computer Science's Cover Image
International Journal of Applied Mathematics and Computer Science
Automation and Communication Systems for Autonomous Platforms (Special section, pp. 171-218), Zygmunt Kitowski, Paweł Piskur and Stanisław Hożyń (Eds.)

Cite

Barbir, F. (2005). PEM Fuel Cell Theory and Practice, Elsevier/Academic Press, Burlington. Search in Google Scholar

Benmouna, A., Becherif, M., Depernet, D., Gustin, F., Ramadan, H. and Fukuhara, S. (2017). Fault diagnosis methods for proton exchange membrane fuel cell system, International Journal of Hydrogen Energy 42(2): 1534–1543. Search in Google Scholar

Bethapudi, V., Maier, M., Hinds, G., Shearing, P., Brett, D. and Coppens, M.-O. (2019). Acoustic emission as a function of polarisation: Diagnosis of polymer electrolyte fuel cell hydration state, Electrochemistry Communications 109: 106582. Search in Google Scholar

Bohse, J. (2004). Acoustic emission examination of polymer-matrix composites, Journal of Acoustic Emission 22: 208–223. Search in Google Scholar

Fox, E.B. and Colon-Mercado, H.R. (2011). Mass transport limitations in proton exchange membrane fuel cells and electrolyzers, in H. Nakajima (Ed.), Mass Transfer, IntechOpen, Rijeka, Chapter 13, pp. 305–318, DOI: 10.5772/20349. Search in Google Scholar

He, Y., Li, M., Meng, Z., Chen, S., Huang, S., Hu, Y. and Zou, X. (2021). An overview of acoustic emission inspection and monitoring technology in the key components of renewable energy systems, Mechanical Systems and Signal Processing 148: 107146. Search in Google Scholar

Hissel, D. and Péra, M.-C. (2016). Diagnostic & health management of fuel cell systems: Issues and solutions, Annual Reviews in Control 42: 201–211. Search in Google Scholar

Legros, B., Thivel, P.-X., Bultel, Y., Boinet, M. and Nogueira, R. (2010). Acoustic emission: Towards a real-time diagnosis technique for proton exchange membrane fuel cell operation, Journal of Power Sources 195(24): 8124–8133. Search in Google Scholar

Legros, B.and Thivel, P.-X., Bultel, Y. and Nogueira, R. (2023). PEMFC on line diagnosis via acoustic emission measurements, https://www.sintef.no/globalassets/project/fc-tools/dokumenter/presentation/4a/thivel.pdf. Search in Google Scholar

Lipiec, B., Mrugalski, M., Witczak, M. and Stetter, R. (2022). Towards a health-aware fault tolerant control of complex systems: A vehicle fleet case, International Journal of Applied Mathematics and Computer Science 32(4): 619–634, DOI: 10.34768/amcs-2022-0043. Search in Google Scholar

Matsuura, T., Chen, J., Siegel, J.B. and Stefanopoulou, A.G. (2013). Degradation phenomena in PEM fuel cell with dead-ended anode, International Journal of Hydrogen Energy 38(26): 11346–11356. Search in Google Scholar

Najafi, B., Bonomi, P., Casalegno, A., Rinaldi, F. and Baricci, A. (2020). Rapid fault diagnosis of PEM fuel cells through optimal electrochemical impedance spectroscopy tests, Energies 13(14), Paper ID: 3643. Search in Google Scholar

Niroumand, A.M., Mérida, W. and Saif, M. (2011). PEM fuel cell low flow FDI, Journal of Process Control 21(4): 602–612. Search in Google Scholar

Ogawa, M. (2020). Toshiba hydrogen business and fuel cells, h ttps://www.bdi.fr/wp-content/uploads/2020/12/Toshiba-H2-biz-and-FC-Rev0-16dec2020.pdf. Search in Google Scholar

Pivac, I., Radica, G., Barbir, F., Benouioua, D., Harel, F. and Candusso, D. (2017). Diagnostic methods for automotive fuel cell systems, Technical Report D-1.4, European Commission, Brussels, https://ec.europa.eu/research/participants/documents/downloadPublic?documentIds=080166e5b77c06fa&appId=PPGMS. Search in Google Scholar

Polak, A. (2017). PEM hydrogen fuel cells—Experimental studies on the effect of oxygen flow rate on the polymer membrane, Polymer Processing 176(2): 123–133, (in Polish). Search in Google Scholar

Taniguchi, A., Akita, T., Yasuda, K. and Miyazaki, Y. (2008). Analysis of degradation in PEMFC caused by cell reversal during air starvation, International Journal of Hydrogen Energy 33(9): 2323–2329. Search in Google Scholar

van Biert, L., Godjevac, M., Visser, K. and Aravind, P. (2016). A review of fuel cell systems for maritime applications, Journal of Power Sources 327: 345–364. Search in Google Scholar

Wang, H., Yuan, X.-Z. and Li, H. (Eds) (2011). PEM Fuel Cell Diagnostic Tools, CRC Press, Boca Raton, DOI: 10.1201/b11100. Search in Google Scholar

Wu, J., Zi Yuan, X., Wang, H., Blanco, M., Martin, J.J. and Zhang, J. (2008). Diagnostic tools in PEM fuel cell research. Part II: Physical/chemical methods, International Journal of Hydrogen Energy 33(6): 1747–1757. Search in Google Scholar

eISSN:
2083-8492
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Mathematics, Applied Mathematics