Title :
Tunable Self-Oscillating Switching Technique for Current Source Induction Heating Systems
Author :
Namadmalan, Alireza ; Moghani, Javad Shokrollahi
Author_Institution :
Dept. of Electr. Eng., Amirkabir Univ. of Technol., Tehran, Iran
Abstract :
This paper presents a tunable self-oscillating switching (TSOS) technique for current source parallel resonant inverters. Using this technique, the inverter has lower voltage stress in comparison with conventional methods such as phase-locked loop (PLL) circuits or integral controllers. The new switching technique instantly tracks the variation of resonant frequency. In addition, the TSOS has the capability of phase error tuning which is essential for parallel operation and zone control induction heating systems. The TSOS method has simple structure and operates in wide range of frequencies. Hence, the inverter can be utilized as a general-purpose inverter to supply different coils, loads and self-switched capacitor banks. The dynamics of the new tuning system is compared with the PLL method in transient conditions. A laboratory prototype with operating frequency of 25-100 kHz is implemented to verify the performance of the new tuning system.
Keywords :
induction heating; invertors; load (electric); phase locked loops; PLL circuits; PLL method; TSOS method; current source induction heating systems; current source parallel resonant inverters; frequency 25 kHz to 100 kHz; general-purpose inverter; integral controllers; loads; parallel operation; phase error tuning capability; phase-locked loop circuits; resonant frequency; self-switched capacitor banks; switching technique; tunable self-oscillating switching technique; tuning system; voltage stress; zone control induction heating systems; Equations; Phase locked loops; Resonant frequency; Resonant inverters; Switches; Tuning; Induction heating (IH); inverters; phase-locked loops (PLLs); self-oscillating switching method;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2013.2272278