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Control of the DTC-FSVM based induction motor drive in a wide speed range

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EN
Abstrakty
EN
In this paper the direct flux and torque control structure based on Flux-error Space Vector Modulation (DTC-FSVM) has been analyzed and compared to a classical DTC-SVM system. The control structures have been tested in a wide speed range including field weakening algorithm based on the voltage and current limits of the voltage inverter and the induction motor. The proposed control strategies are verified through simulation with a 3 kW induction motor drive.
Twórcy
  • Department of Electrical and Electronic Engineering, Hanoi University of Mining and Geology, Duc Thang Ward, Bac Tu Liem District, Hanoi, Vietnam
  • Institute of Electrical Machines, Drives and Measurements, Wroclaw University of Technology, ul. Smoluchowskiego 19, 50-372 Wroclaw, Poland
Bibliografia
  • [1] BLAHA P., VACLAVEK P., A practical realization of PDSFC algorithm using Motorola DSP56F80X, 2003 IEEE Int. Conf. on Industrial Technol., Maribor, Slovenia, 2003, 554–559.
  • [2] BLASCHKE F., The principle of field orientation as applied to the new TRANSVECTOR closed loop control system for rotating field machines, Siemens Review, 1972, No. 34, 217–220.
  • [3] DEPENBROCK M., Direct self-control of the flux and rotary moment of a rotary-field machine, 1987.
  • [4] HABETLER T.G., PROFUMO F., PASTORELLI M., TOLBERT L.M., Direct Torque Control of Induction Machines Using Space Vector Modulation, IEEE Trans. on Industry Appl., Sept.–Oct. 1992, Vol. 28, 1045–1051.
  • [5] HEISING C., STAUDT V., STEIMEL A., Speed-sensorless stator-flux-oriented control of induction motor drives in traction, 2010 First Symposium on Sensorless Control for Electrical Drives (SLED), Padova, Italy, 2010, 100–106.
  • [6] KAZMIERKOWSKI M.P., KRISHNAN R., BLAABJERG F., Control in power electronics: selected problems, Academic Press, 2002.
  • [7] NGUYEN-THAC K., ORLOWSKA-KOWALSKA T., Comparative analysis of chosen field weakening methods for the Space Vector Modulated - Direct Torque Controlled drive system, Scientific Papers of the Institute of Electrical Machines, Drives and Metrology of the Wrocław University of Technology, Vol. 31, 2011, 267–280.
  • [8] NGUYEN-THAC K., ORLOWSKA-KOWALSKA T., TARCHALA G.J., Influence of the stator winding resistance on the field-weakening operation of the DRFOC induction motor drive, Bulletin of the Polish Academy of Sciences. Technical Sciences, 2012, Vol. 60, 815–823.
  • [9] ORLOWSKA-KOWALSKA, T., Sensorless induction motor drives, Oficyna Wydawnicza Politechniki Wrocławskiej, Wrocław, Poland, 2003.
  • [10] SPICHARTZ M., STEIMEL A., STAUDT V., Stator-flux-oriented control with high torque dynamics in the whole speed range for electric vehicles, Emobility – Electrical Power Train, 2010, 1–6.
  • [11] TAKAHASHI I., NOGUCHI T., A New Quick-Response and High-Efficiency Control Strategy of an Induction Motor, IEEE Trans. on Industry Applications, 1986, Vol. IA-22, 820–827.
  • [12] TRIPATHI A., KHAMBADKONE A. M., PANDA S. K., Stator flux based space-vector modulation and closed loop control of the stator flux vector in over modulation into six-step mode, IEEE Trans. on Power Electronics, 2004, Vol. 19, 775–782.
  • [13] VAS P., Sensorless vector and direct torque control, Oxford University Press, 1998.
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Bibliografia
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