A closed-loop power controller model of series-resonant-inverter-fitted induction heating system

Author:

Pal Palash,Roy Debabrata,Datta Avik,Sadhu Pradip K.,Banerjee Atanu

Abstract

Abstract This paper presents a mathematical model of a power controller for a high-frequency induction heating system based on a modified half-bridge series resonant inverter. The output real power is precise over the heating coil, and this real power is processed as a feedback signal that contends a closed-loop topology with a proportional-integral-derivative controller. This technique enables both control of the closed-loop power and determination of the stability of the high-frequency inverter. Unlike the topologies of existing power controllers, the proposed topology enables direct control of the real power of the high-frequency inverter.

Publisher

Walter de Gruyter GmbH

Subject

General Engineering

Reference14 articles.

1. De den Model - based generation of low distortion currents in grid coupled PWM - inverters using an LCL output filter vol pp;Bolsens;IEEE Trans Power Electronics,2006

2. Hybrid - frequency modulation for PWM integrated resonant converters vol no pp;York;IEEE Trans Power Electronics,2013

3. Modulation scheme for improved operation of an RB - IGBT - based resonant inverter applied to domestic induction heating vol no pp;Sarnago;IEEE Trans Ind Electron,2013

4. Fuzzy Markov model for determination of fuzzy state probabilities of generating units including the effect of maintenance scheduling on Power vol no pp;Mohanta;IEEE Transactions Systems,2005

5. De Frequency control of a current - fed inverter for induction heating Proceedings of the vol pp;Khan;Industrial Electronics IEEE International Symposium,2000

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1. Design and Analysis of High Frequency Inverter for Induction Heating Application;2023 24th International Middle East Power System Conference (MEPCON);2023-12-19

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