Communications - Scientific Letters of the University of Zilina 2020, 22(2):73-78 | DOI: 10.26552/com.C.2020.2.73-78
Basic Comparison and Evaluation of Functionality AC-AC Matrix Converter Concepts for HEV Vehicle - Part II
- 1 Department of Mechatronics and Electronics, Faculty of Electrical Engineering and Information Technology, University of Zilina, Slovakia
The paper deals with a modeling and simulation of the direct AC-AC propulsion system and compares two matrix converter concepts with five-phase traction induction motors (IM) for the hybrid electric vehicle (HEV). The simulation results of [3x5] matrix converter and 4Q-converter are done using Matlab-Simulink environment. Part I deals with a theoretical study of converter concepts for hybrid electric vehicle, since the configurations of [3x5]+[0x5] matrix converters with five-phase motor(s) have not been analyzed so far. Based on simulation results the comparison and evaluation of the property and quality of the quantities of different type of the matrix powertrain are discussed in Part II.
Keywords: AC, AC powertrain; 3x5 matrix converter; 0x5 matrix converter; five-phase induction motor; electric drive; 4QC converter; modeling and simulation; HEV vehicle
Received: September 13, 2019; Accepted: October 15, 2019; Published: April 1, 2020 Show citation
ACS | AIP | APA | ASA | Harvard | Chicago | Chicago Notes | IEEE | ISO690 | MLA | NLM | Turabian | Vancouver |
References
- DOBRUCKY, B., KASCAK, S., PRAZENICA, M., KONARIK, R. basic comparison and evaluation of functionality AC-AC matrix converter concepts for HEV vehicle - part I. Communications - Scientific Letters of the University of Zilina [online]. 2020, 22(1), p. 77-83. Available from: http://komunikacie.uniza.sk/index.php/communications/article/view/1536
Go to original source...
- BERNET, S., PONNALURI, S., TEICHMANN, R. Design and loss comparison of matrix converters, and voltage-source converters for modern AC drives. IEEE Transactions on Industrial Electronics [online]. 2002, 49(2), p. 304-314. ISSN 0278-0046, eISSN 1557-9948. Available from: https://doi.org/10.1109/41.993263
Go to original source...
- WHEELER, P. W., CLARE, J.C., EMPRINGHAM, L. A Vector controlled MCT matrix converter induction motor drive with minimized commutation times and enhanced waveform quality. In: IEEE Industry Applications Conference : proceedings [online]. 2002. ISBN 0-7803-7420-7, ISSN 0197-2618, p. 466-472. Available from: https://doi.org/10.1109/IAS.2002.1044127
Go to original source...
- ZHUANG, X. An indirect space-vector modulated three-phase AC-DC matrix converter for hybrid electric vehicles. Energy Procedia [online]. 2015, 75(4), p. 1968-1974. eISSN 1876-6102. Available from: https://doi.org/10.1016/j.egypro.2015.07.242
Go to original source...
- DOBRUCKY, B., KASCAK, S., PRAZENICA, M., JARABICOVA, M. Improving efficiency of hybrid electric vehicle using matrix converters. Elektronika ir Elektrotechnika [online]. 2019, 25(4), p. 29-35. ISSN 1392-1215, eISSN 2029-5731 Available from: https://doi.org/10.5755/j01.eie.25.4.23967
Go to original source...
- Sladecek, V., J. Drapela, P. Palacky, J. Machacek, D. Slivka, P. Hudecek. In: 11th International Scientific Conference on Electric Power Engineering, Brno, Czech Repuplic : proceedings. 2010. ISBN 978-80-214-4094-4, p. 249-252.
- PowerLib Library. Matlab/Simulink. Matworks, 2017.
- LIVINT, G. H., HORGA, V, RATOI, M., ALBU, M. Control of hybrid electrical vehicles, electric vehicles - modelling and simulations. InTech, 2011. ISBN 978-953-307-477-1.
Go to original source...
- DOBRUCKY, B., KASCAK, S., PRAZENICA, M., DRGONA, P., PAVLASEK, P. AC/AC powertrain control under different HEV supply network. 2018 ELEKTRO : proceedings [online]. IEEE, 2018. p. 2811-2823. Available from: https://doi.org/10.1109/ELEKTRO.2018.8398272
Go to original source...
- JUSSILA, M., TUUSA, H. Comparison of direct and indirect matrix converters in induction motor drive. 32nd Annual Conference of the IEEE Industrial Electronics Society IECON'06 " proceedings [online]. IEEE, 2006. eISBN 978-1-5090-9155-3, ISSN 1553-572X, p. 1621-1626. Available from: https://doi.org/10.1109/IECON.2006.347423
Go to original source...
- DOBRUCKY, B., KONARIK, R., STEFANEC, P., CHERNOYAROV, O. V. Modelling of transient phenomena of complex electrical circuits under periodic non-harmonic converter supply. Electrical Engineering-Archiv fur Elektrotechnik [online]. 2017, 99(4), p. 1429-1438. ISSN 0948-7921, eISSN 1432-0487. Available from: https://doi.org/10.1007/s00202-017-0658-4
Go to original source...
- ZASKALICKY, P. Mathematical model of a five-phase pentacle connected IM supplied by a VSI inverter with PWM output voltage control. In: IEEE 27th International Scientific Conference Electronics ET 2018 : proceedings [online]. 2018. ISBN 978-1-5386-6692-0. Available from: https://doi.org/10.1109/et.2018.8549582
Go to original source...
- KUCERA, L., GAJDOSIK, T., GAJDAC. I., MRUZEK, M., TOMASIKOVA, M. Simulation of real driving cycles of electric cars in laboratory conditions. Communications - Scientific Letters of the University of Zilina [online]. 2017, 19(2), p. 42-47. ISSN 1335-4205, eISSN 2585-7878. Available from: http://komunikacie.uniza.sk/index.php/communications/article/view/210
Go to original source...
- HUSAIN, I. Electric and hybrid vehicles - design fundamentals. 2. ed. CRC Press, 2011. ISBN 978143981175.
This is an open access article distributed under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0), which permits use, distribution, and reproduction in any medium, provided the original publication is properly cited. No use, distribution or reproduction is permitted which does not comply with these terms.