DocumentCode
2395437
Title
Comparative analysis of ZCZVT variable speed drives
Author
Gazzoni, Jean C. ; Martins, Mário L da S ; Beltrame, Rafael C. ; Hey, Hélio L.
Author_Institution
Power Anal. & Process. Res. Group (PROCEN), Fed. Univ. of Technol. - Parana (UTFPR), Pato Branco, Brazil
fYear
2011
fDate
11-15 Sept. 2011
Firstpage
720
Lastpage
727
Abstract
This paper presents a comparative analysis between Zero-Current and Zero-Voltage Transition (ZCZVT) IGBT-based inverters applied to variable speed drives. The switching losses of IGBT modules and the losses of auxiliary circuits are measured experimentally. The ZCZVT inverters operate under two distinct concepts: one ZCZVT inverter operation relays on a LC resonant auxiliary circuit, meanwhile the other one makes use of a magnetically-coupled non-resonant auxiliary circuit. To fairly evaluate the inverters, a unified design methodology based on the IGBT dynamic constrains is presented. A modified step-up chopper prototype is used for the realization of the double pulse tests. It ensures the same voltage and current switching conditions for all measurements. The experimental results proved that both ZCZVT inverters quite reduce the main IGBT switching losses, nevertheless, the magnetically-coupled auxiliary circuit is more efficient, chiefly in low load conditions.
Keywords
choppers (circuits); insulated gate bipolar transistors; invertors; magnetic circuits; variable speed drives; zero current switching; zero voltage switching; IGBT modules; IGBT switching losses; LC resonant auxiliary circuit; ZCZVT inverter operation relays; ZCZVT variable speed drives; auxiliary circuit losses; double pulse tests; magnetically-coupled non-resonant auxiliary circuit; modified step-up chopper prototype; switching losses; zero-current transition; zero-voltage transition; Current measurement; Insulated gate bipolar transistors; Inverters; Loss measurement; Semiconductor diodes; Switches; Switching loss; Inverter; Variable Speed Drives; ZCZVT;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Electronics Conference (COBEP), 2011 Brazilian
Conference_Location
Praiamar
ISSN
2175-8603
Print_ISBN
978-1-4577-1644-7
Electronic_ISBN
2175-8603
Type
conf
DOI
10.1109/COBEP.2011.6085241
Filename
6085241
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