PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Universal speed and flux estimator for induction motor

Autorzy
Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In the paper, the concept of universal speed and flux estimator with additional parameters estimators is presented. Proposed solution is based on the Model Reference Adaptive System (MRAS) type flux and speed estimator and can be used in different industrial systems (especially in the automotive applications). Induction Motor (IM) parameters are estimated using the systems based only on simple simulators and adaptive systems (voltage model and current model). Proposed system was tested in the sensorless induction motor drive with the Direct Field Oriented Control (DFOC) algorithm. Simulation and experimental results are presented in the paper.
Wydawca
Rocznik
Strony
157--169
Opis fizyczny
Bibliogr. 23 poz., rys.
Twórcy
autor
  • Wroclaw University of Science and Technology, Department of Electrical Machines, Drives and Measurements
Bibliografia
  • Alonge, F., Cangemi, T., D’Ippolito, F., Fagiolini, A. and Sferlazza, A. (2015). Convergence Analysis of Extended Kalman Filter for Sensorless Control of Induction Motor. IEEE Transactions on Industrial Electronics, 62(4), pp. 2341-2352.
  • Auger, F., Hilairet, M., Guerrero, J. M., Monmasson, E., Orlowska-Kowalska, T. and Katsura, S. (2013). Industrial Applications of the Kalman Filter: A Review. IEEE Transactions on Industrial Electronics, 60(12), pp. 5458-5471.
  • Barut, M. (2010). Bi-input-extended Kalman Filter-Based Estimation Technique for Speed-Sensorless Control of Induction Motors. Energy Conversion and Management, 51(10), pp. 2032-2040.
  • Barut, M., Bogosyan, S. and Gokasan, M. (2008). Experimental Evaluation of Braided EKF for Sensorless Control of Induction Motors. IEEE Transactions on Industrial Electronics, 55(2), pp. 620-632.
  • Barut, M., Demir, R. and Inan, R. (2012). Real-Time Implementation of Bi Input-Extended Kalman Filter-Based Estimator for Speed-Sensorless Control of Induction Motors. IEEE Transactions on Industrial Electronics, 59(2), pp. 4197-4206.
  • Dybkowski, M. (2013). Estimation of Speed in a Vector Controlled Induction Motor Drive – Selected Problems. Prace Naukowe Instytutu Maszyn, Napędów i Pomiarów Elektrycznych Politechniki Wrocławskiej nr 67. seria Monografie nr 20. Wrocław (in Polish).
  • Dybkowski, M. and Orlowska-Kowalska, T. (2010). Speed sensorless induction motor drive with magnetizing reactance estimation. In: 2010 14th International Power Electronics and Motion Control Conference (EPE/PEMC), Ohrid, Macedonia, on CD, 2010.
  • Dybkowski, M. and Orlowska-Kowalska, T. (2012). Performance of the speed sensorless induction motor drive for traction application with MRAS type speed and flux estimator, In: 2012 13th International Conference on Optimization of Electrical and Electronic Equipment (OPTIM). Brasov, Romania: IEEE, pp. 477-481.
  • Dybkowski, M., Klimkowski, K. and Orlowska-Kowalska, T. (2014). Speed sensor fault tolerant direct torque control of induction motor drive. In: 2014 16th International Power Electronics and Motion Control Conference and Exposition (PEMC). Warna, Bulgaria: IEEE, 2014, pp. 679-684.
  • Holtz, J. (2006). Sensorless Control of Induction Machines—With or Without Signal Injection? IEEE Transactions on Industrial Electronics, 53(1), pp. 7-30.
  • Isermann, R. (2006). Fault Diagnosis Systems. An Introduction from Fault Detection to Fault Tolerance. New York: Springer.
  • Kubota, H., Matsuse, K. and Nakano, T. (1984). New control method of inverter – fed induction motor drive by using state observer with rotor resistance identification. In: IEEE/IAS Annual Meeting, Conference Record, pp. 601-606.
  • Levi, E., Sokola, M. and Vukosavic, S. N. (2000). A Method for Magnetizing Curve Identification in Rotor Flux Oriented Induction Machines. IEEE Transactions on Energy Conversion, 15(2), pp. 157-162.
  • Orlowska-Kowalska, T. (2003). Sensorless Induction Motor Drives. Wroclaw, Poland: Wroclaw University of Technology Press.
  • Orlowska-Kowalska, T. and Dybkowski, M. (2010). Stator-Current-Based MRAS Estimator for A Wide Range Speed-Sensorless Induction-Motor Drive. IEEE Transactions on Industrial Electronics, 57(4), pp. 1296-1308.
  • Orlowska-Kowalska, T., Tarchala, G. and Dybkowski, M. (2014). Sliding-Mode Direct Torque Control and Sliding-Mode Observer with A Magnetizing Reactance Estimator for the Field-Weakening of the Induction Motor Drive. Mathematics and Computers in Simulation, 98, pp. 31-45.
  • Proca, A. B. and Keyhani, A. (2002). Identification of Variable Frequency Induction Motor Models from Operating Data. IEEE Transactions on Energy Conversion, 17(1), pp. 24-31.
  • Rasmusen, H., Kundsten, M. and Tonnes, M. (1999). Parameter Estimation of Inverter and Motor Model at Standstill Using Measured Current Only. IEEE Transactions on Industrial Electronics, 46(1), pp. 139-149.
  • Schauder, C. (1992). Adaptive Speed Identification for Vector Control of Induction Motors without Rotational Transducers. IEEE Transactions on Industry Applications, IA-28(5), pp. 1054-1060.
  • Smith, A. N., Gadoue, S. M. and Finch, J. W. (2016). Improved Rotor Flux Estimation at Low Speeds for Torque MRAS-Based Sensorless Induction Motor Drives. IEEE Transactions on Energy Conversion, 31(1), pp. 270-282.
  • Tarchała, G., Dybkowski, M. and Orłowska-Kowalska, T. (2011). Analysis of the chosen speed and flux estimators for sensorless induction motor drive. In: Industrial Electronics (ISIE). 2011 IEEE International Symposium on, CD, Gdańsk.
  • Vasić, V., Vukosavic, N. and Levi, E. (2003). A Stator Resistance Estimation Scheme for Speed Sensorless Rotor Flux Oriented Induction Motor Drives. IEEE Transactions on Energy Conversion, 18(4), pp. 476-483.
  • Zorgani, Y. A., Koubaa, Y. and Boussak, M. (2010). Simultaneous Estimation of Speed and Rotor Resistance in Sensorless ISFOC Induction Motor Drive Based on MRAS Scheme. Roma: ICEM.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a4873944-b9a1-4e00-8c35-085decb0e145
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.