10th Asia Plasma and Fusion Association Conference | |
Design of 1 MHz Solid State High Frequency Power Supply | |
Parmar, Darshan^1 ; Singh, N.P.^1 ; Gajjar, Sandip^1 ; Thakar, Aruna^1 ; Patel, Amit^1 ; Raval, Bhavin^1 ; Dhola, Hitesh^1 ; Dave, Rasesh^1 ; Upadhay, Dishang^1 ; Gupta, Vikrant^1 ; Goswami, Niranjan^1 ; Mehta, Kush^1 ; Baruah, Ujjwal^1 | |
ITER-India, Institute for Plasma Research, Gandhinagar, Gujarat, India^1 | |
关键词: Efficiency and reliability; High frequency power supply; Impedance matching network; Inductively-coupled; Metallurgical applications; Neutral beam injectors; Switching converter; Wireless power transfer; | |
Others : https://iopscience.iop.org/article/10.1088/1742-6596/823/1/012037/pdf DOI : 10.1088/1742-6596/823/1/012037 |
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来源: IOP | |
【 摘 要 】
High Frequency Power supply (HFPS) is used for various applications like AM Transmitters, metallurgical applications, Wireless Power Transfer, RF Ion Sources etc. The Ion Source for a Neutral beam Injector at ITER-India uses inductively coupled power source at High Frequency (∼1 MHz). Switching converter based topology used to generate 1 MHz sinusoidal output is expected to have advantages on efficiency and reliability as compared to traditional RF Tetrode tubes based oscillators. In terms of Power Electronics, thermal and power coupling issues are major challenges at such a high frequency. A conceptual design for a 200 kW, 1 MHz power supply and a prototype design for a 600 W source been done. The prototype design is attempted with Class-E amplifier topology where a MOSFET is switched resonantly. The prototype uses two low power modules and a ferrite combiner to add the voltage and power at the output. Subsequently solution with Class-D H-Bridge configuration have been evaluated through simulation where module design is stable as switching device do not participate in resonance, further switching device voltage rating is substantially reduced. The rating of the modules is essentially driven by the maximum power handling capacity of the MOSFETs and ferrites in the combiner circuit. The output passive network including resonance tuned network and impedance matching network caters for soft switching and matches the load impedance to 50ohm respectively. This paper describes the conceptual design of a 200 kW high frequency power supply and experimental results of the prototype 600 W, 1 MHz source.
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