DocumentCode :
1805971
Title :
A capacitor-charging power supply using a series-resonant three level inverter topology
Author :
Song, I.H. ; Shin, H.S. ; Choi, C.H.
fYear :
2001
fDate :
17-22 June 2001
Firstpage :
448
Abstract :
Summary form only given. In this paper we present a Capacitor Charging Power Supply (CCPS) using a series resonant three level inverter topology to improve voltage regulation and use semiconductor switches having low blocking voltage capability such as MOSFETs. This inverter can be operated with two modes, Full Power Mode (FPM) and Half Power Mode (HPM). In FPM inverter supplies the high frequency step up transformer with full DC-link voltage and in HPM with half DC-link voltage. HPM switching method will be adopted when CCPS output voltage reaches the preset target value and operates in refresh mode-charge is maintained on the capacitor. In this topology each semiconductor devices blocks a half of the DC-link voltage, for example we can use the 250 V semiconductor switch when designing 500 V DC-link voltage inverter system without considering the margin. A 15 kW, 30 kV CCPS has been built and will be tested for a electric precipitator application. The CCPS operates from an input voltage of 500 VDC and has a variable output voltage between 10 to 30 kV and 1 kHz repetition rate at 33 nF capacitive load. A resonant frequency of 20 kHz was selected and a voltage regulation of 0.83% has been achieved through the use of half power mode without using the forced cut off the switch current. The theory of operation, circuit topology and test results will be given in full paper. Now we present the simplified circuit diagram of proposed CCPS and important waveforms for a single-charge cycle.
Keywords :
field effect transistor switches; invertors; power capacitors; power supplies to apparatus; pulsed power supplies; 1 kHz; 10 to 30 kV; 15 kW; 20 kHz; 250 V; 30 kV; 33 nF; 500 V; CCPS output voltage; DC-link voltage; DC-link voltage inverter system; MOSFETs; capacitor-charging power supply; electric precipitator; forced cut off; full power mode; half power mode; high frequency step up transformer; low blocking voltage capability; refresh mode; resonant frequency; semiconductor devices; semiconductor switches; series-resonant three level inverter topology; single-charge cycle; switch current; topology; variable output voltage; voltage regulation; waveforms; Circuit testing; Inverters; Low voltage; MOSFETs; Power capacitors; Power semiconductor switches; Power supplies; Resonance; Topology; Voltage control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Pulsed Power Plasma Science, 2001. IEEE Conference Record - Abstracts
Conference_Location :
Las Vegas, NV, USA
Print_ISBN :
0-7803-7141-0
Type :
conf
DOI :
10.1109/PPPS.2001.961211
Filename :
961211
Link To Document :
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