Open Access

A New High Speed Induction Motor Drive based on Field Orientation and Hysteresis Current Comparison


Cite

[1] GARCIA, G.—LUIS, J.—STEPHAN, R.—WATANABE, E. : An Efficient Controller for an Adjustable Speed Induction Motor Drive, IEEE Trans. on Industrial Electronics 41 No. 5 (Oct 1994), 533–539.10.1109/41.315272Search in Google Scholar

[2] KORLINCHAK, C. Comanescu,—M. : Sensorless Field Orientation of an Induction Motor Drive using a Time-Varying Observer, IET Electric Power Application 6 No. 6 (2012), 353–361.10.1049/iet-epa.2011.0245Search in Google Scholar

[3] UDDIN, M. Wen—H. : Development of a Self-Tuned Neuro-Fuzzy Controller for Induction Motor Drives, IEEE Trans. on Industry Applications 43 No. 4 (July/Aug 2007), 1108–1116.10.1109/TIA.2007.900472Search in Google Scholar

[4] BOSE, B. K. : Power Electronics and Motion Control-Technology Status and Recent Trends, IEEE Trans. on Industry Applications 29 No. 5 (Sep/Oct 1993), 902–909.10.1109/28.245713Search in Google Scholar

[5] TOLIYAT, H.—XU, L.—LIPO, T. A. : A Five-Phase Reluctance Motor with High Specific Torque, IEEE Trans. on Industry Applications 28 No. 3 (May/June 1992), 659–667.10.1109/28.137454Search in Google Scholar

[6] BÖCKER, J. : State of the Art of Induction Motor Control, IEEE International Conference on Electric machines and Drives, Antalya, May 2007, pp. 1459–1464.10.1109/IEMDC.2007.383643Search in Google Scholar

[7] DAS, S.—PAL, A.—KUMAR, R.—CHATTOPADHYAY, A. K. : An Improved Rotor Flux Based Model Reference Adaptive Controller for Four-Quadrant Vector Controlled Induction Motor Drives, IEEE Region 10 Conference (TENCON2015), Macao, Nov 2015, pp. 1–6.10.1109/TENCON.2015.7372812Search in Google Scholar

[8] PETER, J.—MARQUES, G. D.—RAMCHAND, R. : Current Error Space Vector Based Constant Switching Frequency Hysteresis Controller for VSI Fed Induction Motor Drives, IEEE 9th International conference on Compatibility and power electronics (CPE), Costa da Caparica, June 2015, pp. 246–251.10.1109/CPE.2015.7231081Search in Google Scholar

[9] HUANG, C. Y.—WEI, C. P.—YU, J. T—HU, Y. J. : Torque and Current Control of Induction Motor Drives for Inverter Switching Frequency Reduction, IEEE Trans. on Industrial Electronics 52 No. 5 (Oct 2005), 1364–1371.10.1109/TIE.2005.855660Search in Google Scholar

[10] PILLAY, P.—KRISHNANR. : Modeling, Simulation, and Analysis of Permanent Magnet Motor Drives I: The Permanent Magnet Synchronous Motor Drive, IEEE Trans. on Industrial Application 25 No. 2 (1989), 265–273.10.1109/28.25541Search in Google Scholar

[11] OGBUKA, C.—NWOSU, C.—AGU, M. : A Fast Hysteresis Current-Controlled Permanent Magnet Synchronous Drive Based on Field Orientation Journal of Electrical Engineering (Elektrotechnicky Casopis).Search in Google Scholar

[12] MORIMOTO, S.—OOI, S.—INOUE, Y.—SANADA, M. : Experimental Evaluation of a Rare-Earth-Free Pmasynrm with Ferrite Magnets for Automotive Applications, IEEE Trans. on Industrial Electronic 61 No. 10 ((Jan 2014), 5749–5756.10.1109/TIE.2013.2289856Search in Google Scholar

[13] FARASAT, M.—TRZYNADLOWSKI, A. M.—FADALI, M. S. : Efficiency Improved Sensorless Control Scheme for Electric Vehicle Induction Motors, IET Electrical Systems in Transportation 4 No. 4 (2014), 122–131.10.1049/iet-est.2014.0018Search in Google Scholar

[14] SUNG, W.—SHIN, J.—JEONG, Y. : Energy-Efficient and Robust Control for High-Performance Induction Motor Drive with an Application in Electric Vehicles, IEEE Trans. on Vehicular Technology 61 No. 8 (Oct 2012), 3394–3405.10.1109/TVT.2012.2213283Search in Google Scholar

[15] JAHMEERBACUS, M. I. : Flux Vector Control of an Induction Motor Drive for Energy-Efficient Operation of a Centrifugal Pump, Proceedings of the IEEE International Conference on Industrial Engineering and Operations Management, Dubai, United Arab Emirates (UAE), 2015, pp. 1–6.10.1109/IEOM.2015.7093736Search in Google Scholar

[16] KUMAR, B.—CHAUHAN, Y. K.—SHRIVASTAVA, V. : Investigations on Energy Efficient Sensorless Induction Motor Drive, International Conference on Computing, Communication and Automation (ICCCA2015), Noida, May 2015, pp. 974–978.10.1109/CCAA.2015.7148516Search in Google Scholar

[17] El-KHOLY, E. : A High Performance Induction Motor Drive Based on Adaptive Variable Structure Control, Journal of Electrical Engineering 56 No. 3-4 (2005), 64–70.Search in Google Scholar

[18] KAZMIERKOWSKI, M. P.—MALESANI, L. : Current Control Techniques for Three-Phase Voltage-Source PWM Converters: A Survey, IEEE Trans. on Industrial Electronics 45 No. 5 (Oct 1998), 691–703.10.1109/41.720325Search in Google Scholar

[19] HOLTZ, J. : Pulsewidth Modulation — A Survey, IEEE Trans. on Industrial Electronics 39 No. 5 (Dec 1992), 410–420.10.1109/41.161472Search in Google Scholar

[20] MAO, H.—YANG, X.—CHEN, Z.—WANG, Z. : A Hysteresis Current Controller for Single-Phase Three-Level Voltage Source Inverters, IEEE Trans. on Power Electronics 27 No. 7 (July 2012), 3330–3339.10.1109/TPEL.2011.2181419Search in Google Scholar

[21] DEY, A.—RAJEEVAN, P.—RAMCHAND, R.—MATHEW, K.—GOPAKUMAR, K. : A Space-Vector-Based Hysteresis Current Controller for a General n-Level Inverter-Fed Drive with Nearly Constant Switching Frequency Control, IEEE Trans. on Industrial Electronics 60 No. 5 (May 2013), 1989–1998.10.1109/TIE.2012.2200217Search in Google Scholar

[22] KENNEL, R.—El-KHOLY, E.—MAHMOUD, S.—El-REFAEI, A.—ELKADY, F. : A Simple High Performance Current Control Scheme for Induction Motor Drives, 31st Annual Conference of IEEE Industrial Electronic Society (IECON), 2005, pp. 1762–1767.10.1109/IECON.2005.1569172Search in Google Scholar

[23] DANDIL, B.—TUNCER, S. : Four Quadrant Control of Multi-level Inverter Fed Induction Motor Drives, Journal of Scientific and Industrial Research 67 (Sep 2008), 688–696.Search in Google Scholar

[24] BOSE, B. K. : Modern Power Electronics and AC Drives, Prentice Hall Inc, New Jersey, 2002.Search in Google Scholar

eISSN:
1339-309X
Language:
English
Publication timeframe:
6 times per year
Journal Subjects:
Engineering, Introductions and Overviews, other