DocumentCode :
742505
Title :
Automated Design of a High-Power High-Frequency LCC Resonant Converter for Electrostatic Precipitators
Author :
Soeiro, Thiago Batista ; Muhlethaler, Jonas ; Linner, J. ; Ranstad, Per ; Kolar, Johann Walter
Author_Institution :
Power Electron. Syst. Lab., ETH Zurich, Zurich, Switzerland
Volume :
60
Issue :
11
fYear :
2013
Firstpage :
4805
Lastpage :
4819
Abstract :
This work presents an automated design procedure for series parallel resonant converters (LCC) employed in electrostatic precipitator (ESP) power supplies, which reduces the designer effort significantly. The requirements for the power supplies in ESP applications and means to derive an accurate mathematical model of the LCC converter, such as the power loss from commercial insulated-gate bipolar transistors, are described in detail in this paper. The converter parameters, such as resonant tank elements, are selected in order to improve the overall efficiency of the system, when a typical ESP energization operation range is considered. The analysis comprises two different control strategies: the conventional variable frequency control and the dual control. Both control strategies are analyzed by comparing semiconductor losses of five commercial modules. Finally, the circuit operation and design are verified with a 60 kW LCC resonant converter test setup.
Keywords :
electrostatic precipitators; frequency control; frequency convertors; resonant power convertors; ESP energization operation range; ESP power supply; commercial insulated-gate bipolar transistors; dual control strategy; electrostatic precipitators; high-power high-frequency LCC resonant converter automated design; mathematical model; power 60 kW; power loss; resonant tank elements; semiconductor losses; series parallel resonant converters; variable frequency control strategy; Insulated gate bipolar transistors; Mathematical model; Power supplies; Resonant frequency; Switching frequency; Zero current switching; Zero voltage switching; Electrostatic precipitators; LCC resonant converter; global optimization;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2012.2227897
Filename :
6353918
Link To Document :
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