The Impacts of the Disturbances for the Hybrid Fuzzy-Fuzzy Controller Applied to Induction Motor Drive

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The study of the effects of an internally and externally caused disturbances for the advanced hybrid fuzzy-fuzzy controller (HFFC) scheme in order to gain control over the speed of an induction motor’s (IM) variable speed drive (VSD) is the main objective of this research paper The HFFC works on the principle of gaining control over the rotor speed during steady-state stage using fuzzy stator current magnitude controller whereas, during an accelerate-decelerate stage by utilising a fuzzy frequency controller, to overcome the disadvantage of field oriented control (FOC) method. The design of a scalar controller involves two aspects of FOC i.e current and frequency. Hence, the performance of a controller has been observed with a series of tests which yielded a controller which is more effective, consistent and insensitive to the parameter variation for the motor and system strength to noise and load disturbances.

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116-121

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August 2015

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© 2015 Trans Tech Publications Ltd. All Rights Reserved

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[1] S. Mathapati and J. Bocker: State of the Art of Induction Motor Control (IEEE Int. Electr. Mach. Drives Conf., p.1459–1464, 2007).

DOI: 10.1109/iemdc.2007.383643

Google Scholar

[2] M. A. Magzoub, N. B. Saad, and R. B. Ibrahim: Analysis and Modeling of Indirect Field-Oriented Control for PWM-driven Induction Motor Drives (IEEE Conf. Clean Energy Technol., p.488–493, 2013).

DOI: 10.1109/ceat.2013.6775682

Google Scholar

[3] M. A. Magzoub, N. B. Saad, and R. B. Ibrahim: An intelligent speed controller for indirect field-oriented controlled induction motor drives (2013 IEEE Conf. Clean Energy Technol., p.327–331, Nov. 2013).

DOI: 10.1109/ceat.2013.6775650

Google Scholar

[4] M. Arrofiq and N. Saad: A PLC-based modified-fuzzy controller for PWM-driven induction motor drive with constant V/Hz ratio control (Robot. Comput. Integr. Manuf., vol. 28, no. 2, p.95–112, Apr. 2012).

DOI: 10.1016/j.rcim.2011.07.001

Google Scholar

[5] T. F. Chan, K. L. Shi, and Y. K. Wong: Hybrid Fuzzy Two-stage Controller for an Induction Motor (IEEE Int. Conf. Syst., p.1898–1903, 1998).

Google Scholar

[6] T. F. Chan, K. L. Shi, S. L. Ho and Y. K. Wong: An Improved Two-stage Control Scheme for an Induction Motor (IEEE Int. Conf. Power Electron. Drive Syst., p.405–410, 1999).

DOI: 10.1109/peds.1999.794597

Google Scholar

[7] T. F. Chan, K. L. Shi and Y. K. Wong: A Novel Hybrid Fuzzy /PI Two-stage Controller for an Induction Motor Drive (IEEE Int. Electr. Mach. Drives Conf., p.415–421, 2001).

DOI: 10.1109/iemdc.2001.939336

Google Scholar

[8] F. Controller and A. Electronics: Speed Control of Induction Motor Using Fuzzy-PI Controller (2nd Int. Conf. Mech. Electron. Eng. (ICMEE), p.460–463, 2010).

DOI: 10.1109/icmee.2010.5558463

Google Scholar

[9] N. Tiwary, A. Rathinam, and S. Ajitha: Design of Hybrid Fuzzy-PI controller for speed control of Brush less DC Motor (Int. Conf. Electron. Commun. Instrum. (ICECI), p.1–4, 2014).

DOI: 10.1109/iceci.2014.6767360

Google Scholar

[10] Andrzej M. Trzynadlowski: The Field Orientation Principle in Control of Induction Motors (Springer Science+Business Media New York, 1994).

Google Scholar

[11] B. K. Bose: Modern power electronics and AC drives (vol. 123. 2002).

Google Scholar