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Tytuł artykułu

Modelling and fault-tolerant control of 5-phase induction machine

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents modeling and analysis of a 5-phase induction machine connected to 2-level 5-leg converter in case of open-phase failure. A control of the machine is accomplished using the Field Oriented Control with hysteresis current controllers. Moreover, a fault-tolerant algorithm is addressed and simulated.
Rocznik
Strony
989--996
Opis fizyczny
Bibliogr. 21 poz., rys., tab., wykr.
Twórcy
autor
  • Institute of Eletrical Machines, Warsaw University of Technology, 1 Politechniki Sq., 00-661 Warsaw, Poland
autor
  • UMPEDAC, University of Malaya, Jalan Lembah Pantai Baharu, 59990 Kuala Lumpur, Malaysia
  • Institute of Control and Industrial Electronics, Warsaw University of Technology, 75 Koszykowa St., 00-662 Warsaw, Poland
Bibliografia
  • [1] M. Rottach, C. Gerada, and P.W. Wheeler, “Evaluation of motor-drive segmentation strategies for fault-tolerance”, 2013 IEEE ECCE Asia Downunder 1, 530-536 (2013).
  • [2] T-H. Liu, J-R. Fu, and T.A. Lipo, “A strategy for improving reliability of field-oriented controlled induction motor drives”, Ind. Appl. IEEE Trans. 29 (5), 910-918 (1993).
  • [3] J. Ribrant and L. Bertling, “Survey of failures in wind power systems with focus on Swedish wind power plants during 1997-2005”, Power Engineering Society General Meeting 1, 1-8 (2007).
  • [4] X. Roboam, B. Sareni, and A.D. Andrade, “More electricity in the air: toward optimized electrical networks embedded in more-electrical aircraft”, Ind. Electron. Mag. IEEE 6 (4), 6-17 (2012).
  • [5] H. Burzanowska, P. Sario, C. Stulz, and P. Joerg, “Redundant Drive with Direct Torque Control (DTC) and Dual-Star Synchronous Machine, simulations and verification”, Power Electr. and Application, Eur. Conf. 1, 1-10 (2007).
  • [6] E. Levi, R. Bojoi, F. Profumo, H.A. Toliyat, and S.Williamson, “Multiphase induction motor drives - a technology status review”, Electr. Power Appl. IET 1 (4), 489-516 (2007).
  • [7] S.V. Ignatenko and A.N. Golubev, “Influence of number of stator-winding phases on the noise characteristics of an asynchronous motor”, Russ. Electr. Eng. 71, 41-46 (2000).
  • [8] O. Dordevic, M. Jones, and E. Levi, “A comparison of carrierbased and space vector PWM techniques for three-level fivephase voltage source inverters”, Ind. Informatics, IEEE Trans. 9 (2), 609-619 (2013).
  • [9] O. Lopez, J. Alvarez, F.D. Freijedo, A.G. Yepes, J. Malvar, P. Fernandez-Comesana, J. Doval-Gandoy, A. Nogueiras, A. Lago, and C.M. Penalver, “Multilevel multiphase space vector PWM algorithm with switching state redundancy applied to three-phase four-leg converters”, IECON 2010 - 36th Annual Conf. on IEEE Industrial Electronics Society 1, 568-575 (2010).
  • [10] A. Tani, M. Mengoni, L. Zarri, G. Serra, and D. Casadei, “Control of multiphase induction motors with an odd number of phases under open-circuit phase faults”, Power Electron. IEEE Trans. 27 (2), 565-577 (2012).
  • [11] P. Lezana, J. Pou, T.A. Meynard, J. Rodriguez, S. Member, S. Ceballos, S. Member, and F. Richardeau, “Survey on fault operation on multilevel inverters”, Power Electron. IEEE Trans. 57 (7), 2207-2218 (2010).
  • [12] M. Salehifar, R.S. Arashloo, J.M. Moreno-Equilaz, V. Sala, and L. Romeral, “Fault detection and fault tolerant operation of a five phase PM motor drive using adaptive model identification approach”, Emerg. Sel. Top. Power Electron. IEEE 2 (2), 212-223 (2014).
  • [13] E. Levi, “Multiphase AC machines: Chapter 3”, in The Industrial Electronics Handbook: Power Electronics and Motor Drives, CRC Press, London, 2011.
  • [14] S. Karugaba, G. Wang, O. Ojo, and M. Omoigui, “Dynamic and steady-state operation of a five phase induction machine with an open stator phase”, Power Symp., 2008. NAPS ’08. 40th North American 1, 1-8 (2008).
  • [15] D. Stando and M.P. Kazmierkowski, “Simple speed sensorless DTC-SVM scheme for induction motor drives”, Compat. Power Electron. (CPE), 2013 8th Int. Conf. 61 (2), 301-307 (2013).
  • [16] T. Tarczewski, L.M. Grzesiak, A. Wawrzak, K. Karwowski, and K. Erwinski, “A state-space approach for control of NPC type 3-level sine wave inverter used in FOC PMSM drive”, Bull. Pol. Ac.: Tech. 62 (3), 439-448 (2014).
  • [17] Y. Zhao and T.A. Lipo, “Space vector PWM control of dual three-phase induction machine using vector space decomposition”, Ind. Appl. IEEE Trans. 31 (5), 1100-1109 (1995).
  • [18] J. Malvar, A.G. Yepes, A. Vidal, P. Fernandez-Comesana, F.D. Freijedo, O. Lopez, and J. Doval-Gandoy, “Harmonic subspace and sequence mapping in a series-connected six-phase two-motor drive”, IECON 2012 - 38th Annual Conf. on IEEE Industrial Electronics Society 1, 3622-3627 (2012).
  • [19] H.S. Che, M. Duran, E. Levi, M. Jones, W.P. Hew, and N.A. Rahim, “Post-fault operation of an asymmetrical sixphase induction machine with single and two isolated neutral points”, Energy Conversion Congress and Exposition (ECCE), 2013 IEEE 1, 1131-1138 (2013).
  • [20] R. Kianinezhad, B. Nahid-Mobarakeh, L. Baghli, F. Betin, and G-A. Capolino, “Modeling and control of six-phase symmetrical induction machine under fault condition due to open phases”, IEEE Trans. Ind. Electron. 55 (5), 1966-1977 (2008).
  • [21] D. Dujic, “Development of pulse-width-modulation techniques for multi-phse and multi-leg voltage source inverter”, PhD Thesis, Liverpool John Moores University, Liverpool, 2008.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-56730993-fe4e-4cbc-b9c6-569c41808f18
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