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Original Articles

Double-ended Synchronous Reluctance Motor Drive with Extended Constant Power Speed Ratio and Increased Power Factor

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Pages 369-378 | Received 18 Aug 2015, Accepted 15 Oct 2015, Published online: 21 Jan 2016

References

  • Obe, E.S., “Steady-state performance of a line-start synchronous reluctance motor with capacitive assistance,” Electr. Power Syst. Res., Vol. 80, No. 10, pp. 1240–1246, 2010.
  • Obe, E.S., Senjyu, T., Agu, M.U., Anih, L.U., and Ojo, O., “Analysis of the steady-state components in a balanced single-phase synchronous reluctance motor with a running capacitor,” Electr. Power Syst. Res., Vol. 77, pp. 295–302, 2007.
  • Lubin, T., Razik, H., and Rezzoug, A., “On-line efficiency optimization of a synchronous reluctance motor,” Electr. Power Syst. Res., Vol. 77, pp. 484–493, 2007.
  • Lipo, T.A., “Synchronous reluctance machines—a viable alternative for AC drives?” Electr. Mach. Power Syst., Vol. 19, No. 6, pp. 659–671, November 1991.
  • Sadeghi, S., Guo, L., Toliyat, H.A., and Parsa, L., “Wide operational speed range of five-phase permanent magnet machines by using different stator winding configurations,” IEEE Trans. Ind. Electron., Vol. 59, No. 6, pp. 2621–2631, 2012.
  • Betz, R., “Theoretical aspects of control of synchronous reluctance machines,” IEE Proc. B, Electr. Power Appl., Vol. 139, No. 4, pp. 355–364, 1992.
  • Matsuo, T., and Lipo, T.A., “Field oriented control of synchronous reluctance machine,” Proceedings of the 24th Annual IEEE Power Electronics Specialists Conference, pp. 425–431, Seattle, WA, USA, 20--24 June 1993.
  • Vartanian, R., Toliyat, H.A., Akin, B., and Poley, R., “Power factor improvement of synchronous reluctance motors (SynRM) using permanent magnets for drive size reduction,” 2012 Twenty-Seventh Annual IEEE Conference on Applied Power Electronics Conference and Exposition (APEC), pp. 628–633, Orlando, FL, USA, 5--9 February 2012.
  • Morimoto, S., Sanada, M., and Takeda, Y., “Performance of PM-assisted synchronous reluctance motor for high-efficiency and wide constant-power operation,” IEEE Trans. Ind. Appl., Vol. 37, No. 5, pp. 1234–1240, 2001.
  • Niazi, P., Toliyat, H.A., and Goodarzi, A., “Robust maximum torque per ampere (MTPA) control of PM-assisted SynRM for traction applications,” IEEE Trans. Veh. Technol., Vol. 56, No. 4, pp. 1538–1545, 2007.
  • Barcaro, M., Bianchi, N., and Magnussen, F., “Permanent-magnet optimization in permanent-magnet-assisted synchronous reluctance motor for a wide constant-power speed range,” IEEE Trans. Ind. Electron., Vol. 59, No. 6, pp. 2495–2502, 2012.
  • Guglielmi, P., Boazzo, B., Armando, E., Pellegrino, G., and Vagati, A., “Permanent-magnet minimization in PM-assisted synchronous reluctance motors for wide speed range,” IEEE Trans. Ind. Appl., Vol. 49, No. 1, pp. 31–41, January 2013.
  • Matsuo, T., and Lipo, T.A., “Rotor design optimization of synchronous reluctance machine,” IEEE Trans. Energy Convers., Vol. 9, No. 2, pp. 359–365, 1994.
  • Arkadan, A., ElBsat, M., and Mneimneh, M., “Particle swarm design optimization of ALA rotor SynRM for traction applications,” IEEE Trans. Magn., Vol. 45, pp. 956–959, 2009.
  • Constancias, R., Rasoanarivo, I., Takorabet, N., and Sargos, F.M., “Design and optimization of a synchronous reluctance machine with salient poles and flux barriers,” IEEE Energy Conversion Congress and Exposition (ECCE), pp. 2672–2678, Atlanta, GA, USA, 12--16 September 2010.
  • Ogunjuyigbe, A.S. O., Jimoh, A.A., Nicolae, D.V., and Obe, E.S., “Analysis of synchronous reluctance machine with magnetically coupled three-phase windings and reactive power compensation,” IET Electr. Power Appl., Vol. 4, No. 4, p. 291, 2010.
  • Pan, D., Liang, F., Wang, Y., and Lipo, T.A., “Extension of the operating region of an IPM motor utilizing series compensation,” Proceedings of the 2012 IEEE Energy Conversion Congress and Exposition (ECCE), pp. 823–830, Raleigh, NC, USA, 15--20 September 2012.
  • Lin, B., and Sun, D., “Analysis on constant power range enhancement in hybrid-inverter open winding PMSM drive system,” Proceedings of the 17th International Conference on Electrical Machines and Systems (ICEMS), pp. 2923–2929, Hangzhou, Zhejiang, China, 22--25 October 2014.
  • Sandulescu, P., Meinguet, F., Kestelyn, X., Semail, E., and Bruyere, A., “Control strategies for open-end winding drives operating in the flux-weakening region,” IEEE Trans. Power Electron., Vol. 29, No. 9, pp. 4829–4842, 2013.
  • Welchko, B.A., “A double-ended inverter system for the combined propulsion and energy management functions in hybrid vehicles with energy storage,” Proceedings of the 2005 31st Annual Conference of IEEE Industrial Electronics Society (IECON), Raleigh, NC, USA, 6--10, November 2005.
  • Wang, Y., Panda, D., Lipo, T.A., and Pan, D., “Pulsewidth-modulated dual-half-controlled converter,” IEEE Trans. Power Electron., Vol. 28, No. 2, pp. 959–969, 2013.
  • Wang, Y., Panda, D., Lipo, T.A., and Pan, D., “Open-winding power conversion systems fed by half-controlled-converters,” IEEE Trans. Power Electron., Vol. 28, No. 5, pp. 2427–2436, 2011.
  • Nian, H., and Zhou, Y., “Investigation of open-winding PMSG system with the integration of fully controlled and uncontrolled converter,” IEEE Trans. Ind. Appl., Vol. 51, No. 1, pp. 429–439, 2015.
  • Edpuganti, A., and Rathore, A.K., “New optimal pulsewidth modulation for single DC-link dual-inverter fed open-end stator winding induction motor drive,” IEEE Trans. Power Electron., Vol. 30, No. 8, pp. 4386–4393, 2015.
  • Sandulescu, P., Meinguet, F., Kestelyn, X., Semail, E., and Bruyere, A., “Control strategies for open-end winding drives operating in the flux-weakening region,” IEEE Trans. Power Electron., Vol. 29, No. 9, pp. 4829–4842, 2014.
  • Bodo, N., Jones, M., and Levi, E., “A space vector PWM with common-mode voltage elimination for open-end winding five-phase drives with a single DC supply,” IEEE Trans. Ind. Electron., Vol. 61, No. 5, pp. 2197–2207, 2014.
  • Lee, Y., and Ha, J.I., “Hybrid modulation of dual inverter for open-end permanent magnet synchronous motor,” IEEE Trans. Power Electron., Vol. 30, No. 6, pp. 3286–3299, 2015.

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