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Flux Search Control of Field Oriented Control of Six-Phase Induction Motor supplied by SVPWM

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Warianty tytułu
PL
Kontrola strumienia jako metoda optymalizacji sześciofazowego silnika indukcyjnego zasilanego za pośrednictwem SVPWM
Języki publikacji
EN
Abstrakty
EN
This paper deals with the efficiency optimization of Field Oriented Control (FOC) of a six-phase induction motor supplied by Space Vector PWM (SVPWM) using the flux Search Controller (SC) technique. The proposed technique is based on controlling flux to achieve maximum efficiency at light load or low speed. Flux search controller technique is not only cost effective and easy to implement but also robust against parameter variations. Flux control algorithm in six-phase induction machine speed controller reduces 6n±1 harmonic loss as well as other losses like that of copper and core. Simulation results are carried out and they verify the effectiveness of the proposed approach.
PL
Przedstawiono metodę optymalizacji skuteczności sześciofazowego silnika indukcyjnego zasilanego za pośrednictwem SVPWM przy wykorzystaniu techniki SC. Metoda SC bazuje na kontroli strumienia w celu osiągnięcia maksimum wydajności przy małych obciążeniach i małej prędkości. Zaproponowana kontrola strumienia w silniku sześciofazowym redukuje straty.
Rocznik
Strony
171--175
Opis fizyczny
Bibliogr. 25 poz., rys., tab., wykr.
Twórcy
autor
autor
autor
Bibliografia
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  • [3] R. Bojoi, M. Lazzari, F. Profumo, and A. Tenconi, ” Digital field-oriented control for dual three-phase induction motor drives,” IEEE Trans. Ind App, VOL.39, Issue 3, pp 1243-1254, May/ June 2003.
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  • [5] T. A. Lipo, “A d-q model for six phase induction machines,” in Proc.ICEM, Athens, 1980, pp. 860–867.
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  • [7] A. Boglietti, R. Bojoi, A. Cavagnino, and A. Tencoi, “Efficiency analysis of PWM inverter fed three-phase and dual three-phase high frequency induction machines for low/medium power applications,” IEEE Trans. Ind. Electron., vol. 55, no. 5, pp. 2015–2023, May 2008.
  • [8] G.K. Singh, K. Nam, and S.K. Lim, “A Simple Indirect Field- Oriented Control Scheme for Multiphase Induction Machine,” IEEE Trans. Ind. Electron, Vol 52, Issue 4, Aug. 2005.
  • [9] Abdelhakim Haddoun, Mohamed El Hachemi Benbouzid, Demba Diallo, Rachid Abdessemed, Jamel Ghouili, and Kamel Srairi,” A Loss-Minimization DTC Scheme for EV Induction Motors”, IEEE Trans. Veh. Tech, VOL. 56, NO. 1, Jan 2007.
  • [10] F. Abrahamsen, F. Blaabjerg, J. Pedersen, P. Grabowski, and P. Thogersen,“On the energy optimized control of standard and high-efficiency induction motors in CT and HVAC applications,” IEEE Trans. Ind. Appl.,vol. 34, no. 4, 822–831,
  • [11] Ruiz-Gonzalez, M. J. Meco-Gutierrez, F. Perez-Hidalgo, F. Vargas-Merino, and J. R. Heredia-Larrubia, "Reducing Acoustic Noise Radiated by Inverter-Fed Induction Motors Controlled by a New PWM Strat," IEEE Trans. on Industrial Electronics, vol. 57, no. 1, pp. 228-236, Jan 2010.
  • [12] Z. Gmyrek, A. Boglietti, A. Cavagnino, "Estimation of Iron Losses in Induction Motors: Calculation Method, Results, and Analysis," IEEE Trans. on Industrial Electronics, vol. 57, no. 1, pp. 161-171, Jan 2010.
  • [13] S. Kaboli, M. Zolghadri, E. Khajeh, and A. Homaifar, “A fast flux search controller for DTC-based induction motor drives,” IEEE Trans. Ind.Electron., vol. 54, no. 5, pp. 2407–2415, Oct. 2007.
  • [14] D. deAlmeida, W. Filho, and G. Sousa, “Adaptive fuzzy controller for efficiency optimization of induction motors,” IEEE Trans. Ind. Electron.,vol. 54, no. 4, pp. 2157–2164, Aug. 2007.
  • [15] Abdelhakim Haddoun, Mohamed El Hachemi Benbouzid, Demba Diallo, Rachid Abdessemed, Jamel Ghouili, and Kamel Srairi,” A Loss-Minimization DTC Scheme for EV Induction Motors”, IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, VOL. 56, NO. 1, JANUARY 2007.
  • [16] M. Uddin and N. S. Woo, “Development and implementation of a nonlinear controller based IM drive incorporating iron loss with parameter uncertainties,” IEEE Trans. Ind. Electron., vol. 56, no. 4, pp. 1263–1272,Apr. 2009.
  • [17] G. Dong and O. Ojo, “Efficiency optimizing control of induction motor using natural variables,” IEEE Trans. Ind. Electron., vol. 53, no. 6,pp. 1791–1798, Dec. 2006.
  • [18] Masood Hajian, Jafar Soltani, Gholamreza Arab Markadeh, and Saeed Hosseinnia, “Adaptive Nonlinear Direct Torque Control of Sensorless IM Drives With Efficiency Optimization,” IEEE Trans. Ind. Electron, VOL. 57, NO. 3, pp.975-985 MARCH 2010.
  • [19] M. Nasir Uddin, Sang Woo Nam, “Development of a Nonlinear and Model-Based Online Loss Minimization Control of an IM Drive”, IEEE TRANSACTIONS ON ENERGY CONVERSION, VOL. 23, NO. 4, DECEMBER 2008.
  • [20] Yifan Zhao and A. Lipo, “Space Vector PWM Control of Dual Three-phase Induction Machine Using Vector Space Decomposition,” IEEE Trans. Ind App, pp 1369-1379. VOL. 31, Issue.5, 1995.
  • [21] D. Hadiouche, H. Razik, and A. Rezzoug, ”On the modeling and design of dual-stator windings to minimize circulating harmonic currents for VSI fed AC machines,” IEEE Trans. Ind App, VOL 40, Issue 2, pp 506-515, Mar/April 2004.
  • [22] K. Marouani, L. Baghli, D. Hadiouche, A. Kheloui, and A. Rezzoug, “A New PWM Strategy Based on a 24-Sector Vector Space Decomposition for a Six-Phase VSI-Fed Dual Stator Induction Motor,” IEEE Trans. Ind .Electron., Vol 55, Issue 5, pp 1910-1920. May 2008.
  • [23] D. Hadiouche, L. Baghli, and A. Rezzoug, “Space vector PWM techniques for dual three-phase AC machine: Analysis, performance evaluation, and DSP implementation,” IEEE Trans. Ind. Appl., vol. 42, no. 4, pp. 1112–1122, Jul./Aug. 2006.
  • [24] D. Yazdani, S. Ali Khajehoddin, A. Bakhshai, and G. Joos, "Full Utilization of the Inverter in Split-Phase Drives by Means of a Dual Three-Phase Space Vector Classification Algorithm," IEEE Trans. on Industrial Electronics, vol. 56, no. 1, pp. 120- 129, Jan 2009.
  • [25] Jingchuan Li, Longya Xu, Zheng Zhang, “New Efficiency Optimization Method on Vector Control of Induction Motors”, IEEE conference 2005.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-PWA7-0048-0006
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