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Tytuł artykułu

Comparative analysis of chosen field weakening methods for the space vector modulated - direct torque controlled drive system

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Języki publikacji
EN
Abstrakty
EN
This paper presents a new simple field weakening (FW) strategy for the Direct Torque Control (DTC) of the induction motor (IM). Based on the Space Vector Modulated - Direct Torque Control (SVM- DTC) scheme, an analysis and comparison of conventional (1/ωm) and proposed method are presented for a whole speed range including FW regions. The proposed strategy is verified through simulation with a 1.5 kW induction motor drive.
Twórcy
  • Institute of Electrical Machines, Drives and Measurements, Wroclaw University of Technology, ul. Smoluchowskiego 19, 50-372 Wroclaw, Poland, khanh.nguyen.thac@pwr.wroc.pl
Bibliografia
  • [1] BUJA G.S., KAŹMIERKOWSKI M.P., Direct torque control of PWM inverter-fed AC motors – a survey, IEEE Trans. Ind. Electron., Vol. 51, No. 4, 2004, pp. 776–784.
  • [2] CASADEI D., SERRA G., TANI A., Constant frequency operation of a DTC induction motor drive for electric vehicle, [in:] Proc. ICEM ’96, Vol. 3, 1996, pp. 224–229.
  • [3] CASADEI D., SERRA G., TANI A., ZARRI L., A robust method for flux weakening operation of DTC induction motor drive with on-line estimation of the break-down torque, European Conf. on Power Electronics and Applications, EPE-2005, Dresden, pp. 10.
  • [4] CASADEI D., PROFUMO F., SERRA G., TANI A., FOC and DTC: two viable schemes for induction motors torque control, IEEE Trans. Power Electron., Vol. 17, No. 5, 2002, pp. 779–787.
  • [5] CASADEI D., SERRA G., STEFANI A., TANI A., ZARRI L., DTC Drives for Wide Speed Range Applications Using a Robust Flux-Weakening Algorithm, IEEE Trans. Ind. Electronics, Vol. 54, No. 5, 2007, pp. 2451–2461.
  • [6] DEPENBROCK M., Direct self-control (DSC) of inverter-fed induction machine, IEEE Trans. Power Electron., Vol. 3, 1988, pp. 420–429.
  • [7] KAŹMIERKOWSKI M.P., TUNIA H., Automatic Control of Converter-Fed Drives, Elsevier Amsterdam–London–New York–Tokyo, 1994.
  • [8] KAŹMIERKOWSKI M.P., WÓJCIK P., Reliable Direct Torque Control with Flux Vector Modulation (DTC-FVM) for AC Motors, IEEE International Symposium on Diagnostics for Electric Machines, Power Electronics and Drives, SDEMPED 2007, pp. 191–196.
  • [9] MARINO P., D’INCECCO M., VISCIANO N., A comparison of direct torque control methodologies for induction motor, IEEE Power Tech. Proceedings, Porto 2001, Vol. 2.
  • [10] MATIC P., RAKIĆ A., VUKOSAVIĆ S.N., Induction motor torque control in field weakening regime by voltage angle control, Proc. of the 14th Int. Power Electronics and Motion Control Conf. (EPE/PEMC), 2010, pp. T4-108–T4-115.
  • [11] MENGONI M., ZARRI L., TANI A., SERRA G., CASADEI D., Stator Flux Vector Control of Induction Motor Drive in the Field Weakening Region, IEEE Trans. on Power Electronics, Vol. 23, No. 2, 2008, pp. 941–949.
  • [12] NGUYEN THAC K., TARCHAŁA G., ORŁOWSKA-KOWALSKA T., Comparative analysis of the chosen field-weakening methods for the Direct Rotor Flux Oriented Control drive system, Archive of Electrical Engineering, Vol. 61, 2012 (in printing).
  • [13] ORŁOWSKA-KOWALSKA T., Bezczujnikowe układy napędowe z silnikami indukcyjnymi, Oficyna Wydawnicza Politechniki Wrocławskiej, Wrocław 2003.
  • [14] SIKORSKI A., KORZENIEWSKI M., RUSZCZYK A., KAŹMIERKOWSKI M.P., ANTONIEWICZ P., KOŁOMYJSKI W., JASIŃSKI M., A comparison of properties of direct torque and flux control methods (DTC-SVM,DTC-δ, DTC-2x2, DTFC-3A), The Int. Conf. on “Computer as a Tool”, EUROCON 2007, pp. 1733–1739.
  • [15] TAKAHASHI I., NOGUCHI T., A New Quick-Response and High-Efficiency Control Strategy of an Induction Motor, IEEE Trans. Ind. Applicat., Vol. IA-22, 1986, pp. 820–827.
  • [16] TRIPATHI A., KHAMBADKONE A.M., PANDA S.K., Dynamic torque control performance of the Direct Flux Control scheme in field weakening range, The 29th Annual Conf. of the IEEE Industrial Electronics Society, IECON ’03, Vol. 1, 2003, pp. 220–225.
  • [17] TRIPATHI A., KHAMBADKONE A.M., PANDA S.K., Dynamic control of torque in overmodulation and in the field weakening region, IEEE Trans. on Power Electronics, Vol. 21, No. 4, 2006, pp. 1091–1098.
  • [18] WÓJCIK P., Direct torque and flux control of inverter-fed induction motor drive including field weakening region, Ph.D. Thesis, Warsaw University of technology, 2009.
  • [19] WÓJCIK P., Flux Control with Space Vector Modulation (FC-SVM), The International Conf. on “Computer as a Tool” EUROCON, 2007, pp. 1759–1763.
  • [20] ZELECHOWSKI M., Space Vector Modulated – Direct Torque Controlled (DTC-SVM) Inverter- Fed Induction Motor Drive, Ph.D. Thesis, Warsaw 2005.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW6-0028-0028
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