Have a personal or library account? Click to login
Stabilisation of the power grid with a hydrogen energy buffer Cover

References

  1. ABDIN Z., WEBB C. J., GRAY E. M. 2015. Modelling and simulation of a proton exchange membrane (PEM) electrolyser cell. International Journal of Hydrogen Energy 40, 39: 13243–13257.
  2. AN L., ZHAO T. S., CHAI Z. H., TAN P., ZENG L. 2014. Mathematical modelling of an anion-exchange membrane water electrolyzer for hydrogen production. International Journal of Hydrogen Energy 39, 35: 19869–19876.
  3. BARTOSIK M., KAMRAT W., KAŹMIERKOWSKI M., LEWANDOWSKI W., PAWLIK M., PERYT T., SKOCZKOWSKI T., STRUPCZEWSKI A., SZELĄG A. 2016. Magazynowanie energii elektrycznej i gospodarka wodorowa (Electric energy storage and hydrogen economy). Przegląd Elektrotechniczny 92, 12: 332–340.
  4. CHMIELNIAK T., CHMIELNIAK T. 2020. Energetyka Wodorowa. PWN, Warszawa.
  5. EG&G TECHNICAL SERVICES INC, US. Department of Energy. 2016. Fuel Cell Handbook (Seventh Edition).
  6. FALCÃO D. S., PINTO A. M. F. R. 2020. A review on PEM electrolyzer modelling: Guidelines for beginners. Journal of Cleaner Production, 261.
  7. GRUMM F., SCHUMANN M., COSSE C., PLENZ M., LÜCKEN A., SCHULZ D. 2020. Short Circuit Characteristics of PEM Fuel Cells for Grid Integration Applications, Electronics 9, 4: 602.
  8. LASSATER R.H. 2011. Smart Distribution: Coupled Microgrids, Proceedings of IEEE 99, 6: 1074–1082.
  9. MORADI NAFCHI, F., AFSHARI E., BANIASADI E., JAVANI N. 2019. A parametric study of polymer membrane electrolyser performance, energy and exergy analyses. International Journal of Hydrogen Energy 44, 34: 18662–18670.
  10. NEHRIR M.H., WANG C. 2009. Modeling and control of fuel cells - distributed generation applications. Wiley, New Jersey.
  11. O’HAYRE R., SUK-WON C., WHITNEY C., PRINZ F.B. 2016. Fuel Cell Fundamentals. Wiley, ed. 3.
  12. PUKRUSHPAN JAY T. 2010. Control of Fuel Cell Power Systems: Principles, Modeling, Analysis and Feedback Design - Advances in Industrial Control, Springer London Ltd.
  13. RACZKOWSKI R., ROBAK S. 2021. System magazynowania energii elektrycznej jako środek poprawy elastyczności systemu elektroenergetycznego z dużym udziałem generacji OZE (Electricity storage system as a means of improving the flexibility of the power system with a large share of RES generation), Przegląd Elektrotechniczny 97, 3: 1–8.
  14. SEDGHISIGARCHI K., FELIACHI A. 2004. Dynamic and transient analysis of power distribution systems with fuel Cells-part I: fuel-cell dynamic model, IEEE Transactions on Energy Conversion 19, 2: 423–428.
  15. SEDGHISIGARCHI K., FELIACHI A. 2004. Dynamic and transient analysis of power distribution systems with fuel Cells-part II: control and stability enhancement, IEEE Transactions on Energy Conversion 19, 2: 429–434.
  16. SHIN H. S., OH B. S. 2020. Water transport according to temperature and current in PEM water electrolyzer. International Journal of Hydrogen Energy 45, 1: 56–63.
  17. STOLTEN D. 2010. Hydrogen and Fuel. Cells, Wiley-VCH Verlag GmbH.
  18. TÖPLER J., LEHMANN J. 2015. Hydrogen and Fuel Cell, Springer-Verlag Berlin and Heidelberg GmbH & Co. KG.
  19. VIELSTICH W., LAMM A., GASTEIGER H.A. 2003. Handbook of fuel cells: fundamentals, technology, applications. Wiley.
  20. WASIAK I. 2011. The concept of smart electrical power microgrids. Przegląd Elektrotechniczny 87, 6: 35–41.
  21. ZAMBRI N.A., MOHAMED A. 2014. Utilization of fuel cell energy source for distribution power generation: theory, modeling and review of research work, Przegląd Elektrotechniczny 90, 5: 189–200.
DOI: https://doi.org/10.2478/oszn-2022-0012 | Journal eISSN: 2353-8589 | Journal ISSN: 1230-7831
Language: English
Page range: 19 - 28
Published on: Dec 31, 2022
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year
Related subjects:

© 2022 Szymon Banaszak, Marcin Biegun, Stefan Domek, Paweł Dworak, Daniel Figurowski, Michał Kubicki, Olgierd Małyszko, Przemysław Orłowski, Michał Zeńczak, published by National Research Institute, Institute of Environmental Protection
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.