35
Views
1
CrossRef citations to date
0
Altmetric
Articles

Modelling And Simulation of Direct Torque Control For Multi-Phase Switched Reluctance Motor Drive

, &
Pages 223-230 | Published online: 15 Jul 2015

References

  • T.J.E. Miller, Switched reluctance motors and their control (Oxford: Magna Physics, 1993).
  • M. Lazzari & P. Ferraris, Phase number and their related effects on the characteristics of inverter-fed induction motor drives, Conf. Rec. IEEEIAS’ 83, Mexico City, Mexico, October 1983, 494–502.
  • G.K. Singh & V. Pant, Analysis of a multiphase induction machine under fault condition in a phase-redundant AC drive system, Electric Machines and Power Systems, 28(6), 2000, 577–590.
  • Y. Zhao & T.A. Lipo, Modeling and control of a multi-phase induction machine with structural unbalance, IEEE Transactions on Energy Conversion, 11(5), 1996, 570–577.
  • L. Xu & E. Ruckstadter, Direct modeling of switched reluctance machine by coupled field-circuit method, IEEE Transactions on Energy Conversion, 10, 1995, 446–454.
  • N.J. Nagel & R.D. Lorenz, Modeling of a saturated switched reluctance motor using an operating point analysis and the unsaturated torque equation, IEEE Transactions on Industry Applications, 36, 2000, 714–722.
  • H. Gao, F.R. Salmasi, & M. Ehsani, Inductance model-based sensor less control of the switched reluctance motor drive at low speed, IEEE Transactions on Power Electronics, 19(6), 2004, 1568–1573.
  • I. Takahashi & T. Noguchi, Take a look back upon the past decade of direct torque control, Proc. IECON ’97, 23rd Int. Conf. Ind. Electron. Contr. Instrum., 2, 1997, 546–551.
  • M. Depenbrook, Direct self-control (DSC) of inverter-fed induction motor, IEEE Trans. PE-3, No. 4, Oct. 1988, 420–429.
  • G. Buja, D. Casadei, & G. Serra, Direct torque control of induction motor drives, Proc. IEEE , Int. Sym. Ind. Elect, 1, 1997, TU2—TU8.
  • H.-J. Guo, Considerations of direct torque control for switched reluctance motors IEEE ISIE 2006, July 9–12, 2006, 2321–2325.
  • P. Jinupun & P.C.-K. Luk, Direct torque control for sensor less switched reluctance motor drives, Proc. 7th Int. Conf. Power Electron. Variable Speed Drives, 1998, 329–334.
  • M. Michaelides & C. Pollock, Modeling of a new winding arrangement to improve performance in the switched reluctance motor, Proc. 6th Int. Conf. Elect. Mach. Drives, 1993, 213–218.
  • M. Michaelides & C. Pollock, Modeling and design of switched reluctance motors with two phases simultaneously excited, IEEE Proc. Electr. Power Appl., 143(5), 1996, 361–370.
  • H.A. Toliyat & H. Xu, A novel direct torque control (DTC) method for five-phase induction machines, Proc. IEEE 2000, 162–168.
  • M.M. Khatec, M.M. El-Shanawany, & A.A. Hassanein, An integrated five-phase switched reluctance motor drive, Power Electronics and Variable-Speed Drives, 26–28 October 1994, Conference Publication No. 399, 1994, 125–130.
  • A.D. Cheok&Y . Fukuda, Anew torque andflux control method for switched reluctance motor drives, IEEE Transaction on Power Electronics, 17(4), 2002, 543–557.
  • S.K. Sahoo, S.K. Panda, & J.X. Xu, Direct torque controller for switched reluctance motor drive using sliding mode control, IEEE Conf. Proc. PEDS 2005, 2005, 1129–1134.
  • R.B. Inderka & R.W.A.A.D. Doncker, DITC-Direct instantaneous torque control of switched reluctance drives, IEEE Transactions on Industry Applications, 39(4), 2003, 1046–1051.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.