DocumentCode
1347369
Title
Modified Soft-Switched Three-Phase Three-Level DC–DC Converter for High-Power Applications Having Extended Duty Cycle Range
Author
Ghodke, Dharmraj V. ; Chatterjee, Kishore ; Fernandes, B.G.
Author_Institution
Proton Linac & Supercond. Cavities Div., Raja Ramanna Centre for Adv. Technol., Indore, India
Volume
59
Issue
9
fYear
2012
Firstpage
3362
Lastpage
3372
Abstract
A three-phase three-level dc-to-dc phase-shifted pulsewidth-modulation (PSPWM) converter which is reported in the literature for high-power and high-input-voltage applications is based on a three-phase three-wire configuration. However, the controllable duty cycle range of the aforementioned converter is 0-2π/3. Therefore, to obtain the rated voltage, the converter needs to be overrated by 33%. In order to overcome this problem, a modified topology of the three-level dc-to-dc PSPWM converter based on a three-phase four-wire configuration is proposed. The soft switching of devices is achieved by using a tapped filter inductor. The output voltage is controlled by incorporating PSPWM. The clocked gate signals of each leg are phase shifted by 2π/3 from each other. Major features of the converter include the following: 1) The outer two switches of each leg are operating as zero-voltage switch; 2) the inner two switches of each leg are operating as zero-current switch; and 3) this is achieved without involving any extra passive or active components. Realization of the secondary output filter by having a tapped inductor leads to considerable reduction in circulating current flow during a freewheeling period and results in appreciable mitigation in conduction losses. In order to obtain the behavioral and performance characteristics of the converter topology, analytical and simulation studies are carried out, and the viability of the scheme is ascertained through detailed experimental studies.
Keywords
DC-DC power convertors; PWM power convertors; switching convertors; zero voltage switching; active components; conduction losses; converter topology; extended duty cycle range; freewheeling period; modified soft-switched three-phase three-level DC-DC converter; passive components; tapped inductor; three-level DC-DC PSPWM converter; three-level DC-DC phase-shifted pulsewidth-modulation converter; three-phase four-wire configuration; three-phase three-wire configuration; zero-current switch; zero-voltage switch; Capacitors; Inductance; Inductors; Switches; Topology; Windings; Zero voltage switching; High-power dc-to-dc converter; soft switching; tapped-inductor filter; three-phase three-level (TPTL); zero-voltage zero-current switching;
fLanguage
English
Journal_Title
Industrial Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0278-0046
Type
jour
DOI
10.1109/TIE.2011.2171169
Filename
6042330
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