Tài liệu tham khảo |
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[1] M. H. Park, S. K. Sul, D. Y. Yoon, T. W. Chun, “Optimal Efficiency Drive of Induction Motors with Current Source Inverter”, Proceed. 1983 International Power Electronics Conference IPEC, Tokyo, 1983, pp. 450-461 |
Sách, tạp chí |
Tiêu đề: |
Optimal Efficiency Drive of Induction Motors with Current Source Inverter |
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[2] W. E. Stanton, D. B. Eisenhaure, R. D. Drescher, “Optimum Efficiency Control System”, U.S: Patent 4 392 100, Jul. 5, 1983 |
Sách, tạp chí |
Tiêu đề: |
Optimum Efficiency Control System |
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[3] T. Hatanaka, N. Kuwahara, “High-Efficiency Power Supply Control Apparatus for Variable-speed Induction Motor”, U.S. Patent 5 500 581, Mar. 19, 1996 |
Sách, tạp chí |
Tiêu đề: |
High-Efficiency Power Supply Control Apparatus for Variable-speed Induction Motor |
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[4] A. Baba, E. Mendes, A. Razek, “Losses Minimisation of a Field-Oriented Controlled Induction Machine by Flux Optimisation Accounting for Magnetic Saturation”, 1997 |
Sách, tạp chí |
Tiêu đề: |
Losses Minimisation of a Field-Oriented Controlled Induction Machine by Flux Optimisation Accounting for Magnetic Saturation |
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[10] F. Blaabjerg, U. Jaeger, S. Munk-Nielsen, J. K. Pedersen, “Power Losses in PWM-VSI Inverter Using NPT or PT IGBT Devices”, IEEE Trans. on Power Electronics, Vol. 10, March. 2005 |
Sách, tạp chí |
Tiêu đề: |
Power Losses in PWM-VSI Inverter Using NPT or PT IGBT Devices |
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[13] J. Holtz, “ Sensorless position control of induction motor – an emerging technology”, IEEE IECON Conf, Rec., pp I1 – I12, 1998 |
Sách, tạp chí |
Tiêu đề: |
Sensorless position control of induction motor – an emerging technology |
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[38] Le Minh Phuong, Truong Minh Trieu, Le Dinh Khoa “A New Online Efficiency Optimization Field Oriented Control For Induction Motors Based On Fuzzy Logic Technique” ISEE 2011 pp478-485 |
Sách, tạp chí |
Tiêu đề: |
A New Online Efficiency Optimization Field Oriented Control For Induction Motors Based On Fuzzy Logic Technique |
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[39] Lê Minh Phương, “Tiết kiệm năng lượng trong hệ thống công nghiệp và dân dụng”, tài liệu giảng dạy cao học 2009 |
Sách, tạp chí |
Tiêu đề: |
Tiết kiệm năng lượng trong hệ thống công nghiệp và dân dụng |
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[5] IEEE International Electric Machines and Drives Conference Record, IEMDC’97, May 1997, pp. MD1 2.1-2.3 |
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[6] Energy Optimal Control of Induction Motor Drives, Flemming Abrahamsen Institute of Energy Technology, Aalborg University 2000 |
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[7] Feng-Chieh Lin and Sheng-Ming Yang, Loss-minimization control of vector- controlled induction motor drives IEEE Trans. Ind. Electron., vol.18, pp. 183–187, Aug. 2001 |
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[8] Cui Naxin Zhang Chenghui Zhao Min Optimal Efficiency Control of Field- oriented Induction Motor Drive and Rotor Resistance Adaptive Identifying IEE Proceedings, Vo1.134, no.6, 1987, pp.353-363, March. 2006 |
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[9] E. Levi, High performance drives, school of engineering, Liverpool John Moores University, Liverpool, UK_ 2001 |
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[11] B. K. Bose, “Power Electronics and Variable Frequency Drives, IEEE Press, NY, 1996 |
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[12] I. Takahashi and T. Noguchi, A new quick response and high efficiency control strategy of an induction motor. Rec. IEEE – IAS, 1995; IEEE Trans. IA – 22, 820 – 827 (1986) |
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[15] Kubota, H. (2003) Closure to discussion of regenerating-mode low-speed operation of sensorless induction motor drive with adaptive observer. IEEE Trans.Ind. Appl., 39(1) |
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[16] Abu-Rub, H., Guzinski, J., Krzeminski, Z., and Toliyat, H. (2004) Advanced control of induction motor based on load angle estimation.IEEE Trans. Ind. Elect., 51(1), 5–14 |
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[17] Armstrong, G. J. and Atkinson, D. J. (1997) A comparison of model reference adaptive system and extended Kalman filter estimators for sensorless vector drives.Proc. Int. Conf. Power Elect. Appl. (EPE), Trondheim, Norway, pp. 1.424–1.429 |
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[18] Schauder, C. (1992) Adaptive speed identification for vector control of induction motors without rotational transducers.IEEE Trans. Ind. Appl., 28, 1054–1061 |
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[19] Abu-Rub, H, Guzinski, J., Krzeminski, K., and Toliyat, H. (2003) Speed observer system for advanced sensorless control of induction motor.IEEE Trans. Ener. Conv., 18(2), 219–224 |
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