Simulation of Fuel Cell Matrix Inverter Control by Fuzzy Logic

Shiek Ruksana*, Vikranth Avusula**
Department of Electrical and Electronics Engineering, Vasavi College of Engineering, Hyderabad, Telangana, India.
Periodicity:October - December'2021
DOI : https://doi.org/10.26634/jee.15.2.18475

Abstract

This paper proposes the modelling and simulation of proton exchange membrane fuel cell fed single phase matrix converter as an inverter for domestic Alternating Current (AC) applications. In this paper single phase matrix converter employing Insulated–Gate Bipolar Transistor (IGBT) based bi-directional switches used for this purpose. The detailed working principle of control strategy of Fuzzy logic based matrix converter has been explained. The technique that is used to generate the pulses for matrix converters is Fuzzy Logic. The performance and the content analysis of the single phase matrix converter has been carried out in MATLAB/SIMULINK and the results have been successfully verified.

Keywords

Fuel Cell, Single Phase Matrix Converter, Inverter, Proton Exchange Membrane.

How to Cite this Article?

Avusula, V. (2021). Simulation of Fuel Cell Matrix Inverter Control by Fuzzy Logic. i-manager’s Journal on Electrical Engineering, 15(2), 24-28. https://doi.org/10.26634/jee.15.2.18475

References

[1]. Ahirrao, D., Gaware, B., Kakade, P., Kharade, P., & Chawda, S. (2014). Analysis of single phase matrix converter. International Journal of Engineering Research and Applications, 4(3), 856-861.
[2]. Deshpande, P., & Jain, G. P. (2017). Modified single phase matrix converter. International Journal of Recent Trends in Engineering & Research (IJRTER), 3(1), 18-26. https://doi.org/10.23883/IJRTER.2017.3488.4ON9Y
[3]. Holmes, D. G., & Lipo, T. A. (1992). Implementation of a controlled rectifier using AC-AC matrix converter theory. IEEE Transactions on Power Electronics, 7(1), 240-250. https://doi.org/10.1109/63.124596
[4]. Kolar, J. W., Friedli, T., Rodriguez, J., & Wheeler, P. W. (2011). Review of three-phase PWM AC–AC converter topologies. IEEE Transactions on Industrial Electronics, 58(11), 4988-5006. https://doi.org/10.1109/TIE.2011.2159 353
[5]. Ozturk, G., & Onbilgin, G. (2018). Simulation of single phase matrix converter as DC-DC and DC-AC converters. In Proceedings of the 4th World Congress on Electrical Engineering and Computer Systems and Sciences (EECSS'18), 1-6. https://doi.org/10.11159/eee18.119
[6]. Satish, V., Konathala, S. K., & Kiran, A. U. R. (2014). Design and implementation of single phase matrix converter for cycloconverter operation. International Journal of Engineering Research & Technology (IJERT), 3(1), 922-927.
[7]. Shashikanth, M. V. N. M., Sreenivasulu, M., & Kumar, U. N. (2015). Application of a single phase matrix converter as universal Converter. International Journal of Professional Engineering Studies, 1, 90-96.
[8]. Sneha, E. V. S., & Sajin, M. (2013). Design and simulation of single phase matrix converter as a universal converter. International Journal of Engineering Research & Technology (IJERT), 2(1), 1471-1474.
[9]. Srikanth, A., & Kamakotti, P. (2017). AC to AC conversion using single phase matrix converter. International Journal of Engineering Science Invention, 6(11), 29-34.
[10]. Zuckerberger, A., Weinstock, D., & Alexandrovitz, A. (1997). Single-phase matrix converter. IEE Proceedings- Electric Power Applications, 144(4), 235-240.
If you have access to this article please login to view the article or kindly login to purchase the article

Purchase Instant Access

Single Article

North Americas,UK,
Middle East,Europe
India Rest of world
USD EUR INR USD-ROW
Pdf 35 35 200 20
Online 35 35 200 15
Pdf & Online 35 35 400 25

Options for accessing this content:
  • If you would like institutional access to this content, please recommend the title to your librarian.
    Library Recommendation Form
  • If you already have i-manager's user account: Login above and proceed to purchase the article.
  • New Users: Please register, then proceed to purchase the article.