Document Type : Review Article

Authors

1 Urmia University

2 Urmia university

Abstract

This paper presents indirect field-oriented control method for two-level inverter FED induction motor. This research paper offers a simple switching strategy to provide optimized output torque, speed regulation and also, less switching losses. In addition to enabling fast torque and speed response this study also offers constant switching frequency. Conventional Hysteresis current controller has two main drawbacks; the first one is the variation of the switching frequency and the second one is more harmonics in motor currents. The aim of the present paper is to describe a novel switching technique, optimal controller, with the smallest possible tracking error and fixed switching frequency. Modeling and simulation of the proposed method are carried out using MATLAB/SIMULINK.

Keywords

[1] Onederra, Oier, et al. "Three-Phase VSI Optimal Switching Loss Reduction Using Variable Switching Frequency." IEEE Transactions on Power Electronics 32.8 (2017): 6570-6576.
[2] M. Tarafdar Haque, R. Fathi, “A novel optimal controller for tracking of reference compensating currents of parallel active filter,” EPE power electronic, Pelincec2005, paper ID: 66, Warsaw, October 2005.
[3] Wu, Bin, and Mehdi Narimani. High-power converters and AC drives. John Wiley & Sons, 2017.
[4] Hasse , Control of Electrical Drives , Berlin : Springer-Verlag , 1996.
[5] Kennel, R., et al. "High performance speed control methods for electrical machines: An assessment." Industrial Technology (ICIT), 2010 IEEE International Conference on. IEEE, 2010.
[6] Takahashi, Isao, and Toshihiko Noguchi. "A new quick-response and high-efficiency control strategy of an induction motor." IEEE Transactions on Industry applications 5 (1986): 820-827.
[7] Blaschke, Felix. "The principle of field orientation as applied to the new trans vector closed-loop system for rotating-field machines." Siemens review 34.3 (1972): 217-220.
[8] Zaky, Mohamed S., and Mohamed K. Metwaly. "Sensorless Torque/Speed Control of Induction Motor Drives at Zero and Low Frequencies With Stator and Rotor Resistance Estimations." IEEE Journal of Emerging and Selected Topics in Power Electronics 4.4 (2016): 1416-1429.
[9] Marei, M. I., E. F. El-Saadany, and M. M. A. Salama. "A new contribution into performance of active power filter utilizing SVM based HCC technique." Power Engineering Society Summer Meeting, 2002 IEEE. Vol. 2. IEEE, 2002.
[10] Nabae, Akira, Satoshi Ogasawara, and Hirofumi Akagi. "A novel control scheme for current-controlled PWM inverters." IEEE Transactions on Industry Applications 4 (1986): 697-701.
[11] Krause, Paul C., Oleg Wasynczuk, and Scott D. Sudhoff. "Analysis of electrical machines and drive systems." IEEE Wiley (2002).