Phase-shifted third harmonic modulation technique for induction heating applications to improve soft switching capability

Author:

Jeong Wonsik,Heo Kyung-Wook,Lee Jun-Suk,Jung Jee-HoonORCID

Funder

National Research Foundation of Korea

Publisher

Springer Science and Business Media LLC

Reference12 articles.

1. Lucía, O., Burdío, J.M., Millán, I., Acero, J., Barragán, L.A.: Efficiency-oriented design of ZVS half-bridge series resonant inverter with variable frequency duty cycle control. IEEE Trans. Power Electron. 25(7), 1671–1674 (2010)

2. Lucía, O., Burdío, J. M., Millán, I., Acero, J., and Llorente, S.: Efficiency optimization of half-bridge series resonant inverter with asymmetrical duty cycle control for domestic induction heating. In 2009 13th European Conference on Power Electronics and Applications, 1–6 (2009)

3. Grajales, L., Sabate, J. A., Wang, K. R., Tabisz, W. A. and Lee, F. C.: Design of a 10 kW, 500 kHz phase-shift controlled series-resonant inverter for induction heating. Conference Record of the 1993 IEEE Industry Applications Conference Twenty-Eighth IAS Annual Meeting, 843–849 (1993)

4. Viriya, P., Yongyuth, N., Matsuse, K.: Analysis of two continuous control regions of conventional phase shift and transition phase shift for induction heating inverter under ZVS and NON-ZVS operation. IEEE Trans. Power Electron. 23(6), 2794–2805 (2008)

5. Heo, K.-W., Jin, J., Jung, J.-H.: Maximum voltage gain tracking algorithm for high-efficiency of two-stage induction heating systems using resonant impedance estimation. IEEE Trans. Ind. Electron. 70(8), 7934–7943 (2023)

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