Analysis of Direct Torque Control with pace Vector Modulation for Synchronous Reluctance Motor Motion Control Applications and a Comparison with Other Torque-Control Algorithms
Author:
Affiliation:
1. Department of Electric Power Engineering, Faculty of Electrical Engineering and Informatics , Budapest University of Technology and Economics , H-1111 , Egry J. Street 18, Budapest , Hungary
Abstract
Publisher
Walter de Gruyter GmbH
Link
https://www.sciendo.com/pdf/10.2478/pead-2019-0010
Reference18 articles.
1. Blaabjerg, F., Kazmierkowski, M. P., Zelecehowski, M., Swierczynski, D. and Kolomyjski, W. (2005). Design and comparison direct torque control techniques for induction motors. In: 2005 European Conference on Power Electronics and Applications, pp. 9 pp.-P.9. doi: 10.1109/EPE.2005.21951510.1109/EPE.2005.219515
2. Buja, G. S. and Kazmierkowski, M. P. (2004). Direct Torque Control of PWM Inverter-Fed AC Motors - A Survey. IEEE Transactions on Industrial Electronics, 51(4), pp. 744–757. doi: 10.1109/TIE.2004.83171710.1109/TIE.2004.831717
3. Foo, G. H. B. and Zhang, X. (2016). Robust Constant Switching Frequency-Based Field-Weakening Algorithm for Direct Torque Controlled Reluctance Synchronous Motors. IEEE Transactions on Industrial Informatics, 12(4), pp. 1462–1473. doi: 10.1109/TII.2016.258564610.1109/TII.2016.2585646
4. Grabowski, P. Z., Kazmierkowski, M. P., Bose, B. K. and Blaabjerg, F. (2000). A Simple Direct-Torque Neuro-Fuzzy Control of PWM-Inverter-Fed Induction Motor Drive. IEEE Transactions on Industrial Electronics, 47(4), pp. 863–870. doi: 10.1109/41.85796610.1109/41.857966
5. Klimkowski, K. (2016). An Artificial Neural Networks Approach to Stator Current Sensor Faults Detection for DTC-SVM Structure. Power Electronics and Drives, 36(1), pp. 127–138. doi: 10.5277/PED16010910.5277/PED160109
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