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A General Approach for Direct Conversion of Single Phase AC to AC Converter for Induction Heating System
Department of EEE, AVS Engineering College, Salem, India
Department of EEE, Government College of Engineering, Salem, India
- 1 Department of EEE, AVS Engineering College, Salem, India
- 2 Department of EEE, Government College of Engineering, Salem, India
Circuits and Systems·Volume 07 (2016)·Pages 3896–3910·Published 6 September 2016·DOI10.4236/cs.2016.711325
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Abstract
This paper signifies the study of modeling and simulation of a single phase matrix converter for induction heating system. The working principle and the control method, using PID are revealing in detail. The performance of the system is carried out in MATLAB/Simulink environment with pulse width modulation switching strategy by varying the duty cycle. PID control is employed to obtain the better performance for a specified input supply for various output frequencies. The proposed control strategy of AC to AC converter has been discussed with a wide range of operating frequencies and results in low Total Harmonic Distortion.
KeywordsSingle Phase Matrix ConverterPID ControlInduction HeatingPulse Width Modulation Total Harmonic Distortion
- Acero, J. (2010) Domestic Induction Appliances. IEEE Industry Applications Magazine, 16, 39-47. http://dx.doi.org/10.1109/MIAS.2009.935495
- Acero, J., Burdio, J.M., Barragan, L.A., Navarro, D., Alonso, R., Garcia, J.R., Monterde, F., Hernandez, P., Llorente, S. and Garde, I. (2008) The Domestic Induction Heating Appliance: An Overview of Recent Research. Twenty-Third Annual IEEE Applied Power Electronics Conference and Exposition, 651-657.
- Gola, A.K. and Agarwal, V. (2009) Implementation of an Efficient Algorithm for a Single Phase Matrix Converter. Journal of Power Electronics, 9, 198-206.
- Akagi, H., Sawae, T. and Nabae, A. (1986) 130 kHz, 7.5 kW Current Source Inverter Using Static Transistors for Induction Heating Applications. Proceedings of the Power Electronics Specialist Conference (PESC), Vancouver, 395-400.
- Alesina, A. and Venturini, M. (1981) Solid-State Power Conversion: A Fourier Analysis Approach to Generalized Transformer Synthesis. IEEE Transactions on Circuits and Systems, 28, 319-330. http://dx.doi.org/10.1109/TCS.1981.1084993
- Alesina, A. and Venturini, M. (1988) Intrinsic Amplitude Limits and Optimum Design of 9-Switches Direct PWM AC-AC Converters. 19th Annual IEEE Power Electronics Specialists Conference, 2, 1284-1291. http://dx.doi.org/10.1109/PESC.1988.18273
- Alesina, A. and Venturini, M. (1989) Analysis and Design of Optimum-Amplitude Nine- Switch Direct AC-AC Converters. IEEE Transactions on Power Electronics, 4, 101-112. http://dx.doi.org/10.1109/63.21879
- Almazán, F., Lucía, O., Acero, J., Burdío, J.M. and Carretero, C. (2011) A New Multiple- Output Resonant Matrix Converter Topology Applied To Domestic Induction Heating. 1-12.
- Baharom, R., Hamzah, N.R. and Hamzah, M.K. (2011) Advanced Single-Phase AC-DC Converter Using Single-Phase Matrix Converter Topology. IEEE International Conference on Electrical, Control and Computer Engineering, 21-22 June 2011, 33-38. http://dx.doi.org/10.1109/inecce.2011.5953845
- Idris, Z., Hamzah, M.K. and Saidon, M.F. (2006) Implementation of SPMC as a Direct AC-AC Converter with Commutation Strategies. IEEE PESC, 2240-2246.
- Zuckerberger, A., Weinstock, D. and Alexandrovitz, A. (1997) Single-Phase Matrix Converter. IET Electric Power Applications, 144, 235-240. http://dx.doi.org/10.1049/ip-epa:19970848
- Baharom, R., Hashim, H., Seroji, M.N. and Hamzah, M.K. (2008) A New Single-Phase Dual Converter Using Single-Phase Matrix Converter. 3rd IEEE Conference onIndustrial Electronics and Applications, 3-5 June 2008, 1151-1156. http://dx.doi.org/10.1109/iciea.2008.4582699