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Design, manufacturing and commissioning of nuclear industry equipment

Article NameFull-Bridge Converter with Soft Commutation in All Load Range
AuthorsS.А. Baran1, G.P. Smetankin2
Address

Volgodonsk Engineering Technical Institute the branch of National Research Nuclear University “MEPhI”,

Lenin St., 73/94, Volgodonsk, Rostov region, Russia 347360

1ORCID iD: 0000-0002-3232-4072

WoS Researcher ID: I-7933-2018

e-mail: bastr@rambler.ru

2ORCID iD: 0000-0002-8191-6496

e-mail: nvo_@mail.ru

AbstractThe development of converters with soft commutation improves issues of radiation interference and electromagnetic compatibility, reduce weight and size parameters by increasing efficiency and conversion frequency. A significant reduction in commutation losses allows the use of high-power IGBT modules at higher frequencies which they are not able to withstand in traditional converters with pulse-width commutation.
KeywordsIGBTs, frequency conversion, commutation, electromagnetic compatibility
LanguageРусский
References

 

  1. Vlatcovic V, Ridley R.B. Considerations for High-Voltage High-Power Full-Bridge ZVS-PWM Converter. Applied Power and Electronics Conference Proceeding. 1990. (IEEE Catalog No. CH2853-0/90/0000-0265) Р. 275-284.
  2. Jovanovich M.M., Tabisz W.A., Lee F.C. Zero-Voltage Switching Technique in High-Frequency Off-Line Converters. IEEE Applied Power and Electronics Conference Proceeding. 1988.
  3. Jain D.K., Jain P.K., Haibo Zhang Analysis and Design of an Auxiliary Commutated Full Bridge DC/DC Converter Topology Including the Effect of Leakage Inductance. Telecommunications Energy Conference. 2002. ISBN: 0-7803 -7512-2. P. 240-247.
  4. Borges B.V., Beirante J.P. A Full Bridge Zero Voltage Switched Phase Shifted DC-DC Converter with Enlarged Duty Cycle and ZVS Range. On Power Electronics and Applications. 2000. № 2.
    Р. 2.1-2.6.
  5. Shevyryev Yu.V. Povy`shenie kachestva e`lektricheskoj e`nergii v setyax s poluprovodnikovy`mi preobrazovatelyami [Improving the Quality of Electrical Energy in Networks with Semiconductor Converters]. Gorny`j informacionno-analiticheskij byulleten` (nauchno-texnicheskij zhurnal) [Mining Information and Analytical Bulletin (scientific and technical journal)]. № S4. 2011. P. 234-241 (in Russian).
  6. Chapman D. Cena nizkogo kachestva e`lektroe`nergii [Price of Low Quality Electricity]. E`nergosberezhenie [Energy Saving]. 2004. №1. Р. 66-69 (in Russian).
  7. Dobrusin L.A. Fil`trokompensiruyushhie ustrojstva dlya preobrazovatel`noj texniki [Filter Compensating Devices for Converter Equipment]. Moskva [Moscow]: NTF «Energoprogress», 2003. 84 p. (in Russian).
  8. GOST 13109-97. Normy` kachestva e`lektricheskoj e`nergii v sistemax e`lektrosnabzheniya obshhego naznacheniya [Quality Standards of Electrical Energy in General-Purpose Power Supply Systems]. URL: http://http://docs.cntd.ru/document/1200006034 (in Russian).
  9. Rozanov Yu.K., Ryabchitsky M.V. Sovremenny`e metody` uluchsheniya kachestva e`lektroe`nergii [Modern Methods of Improving the Quality of Electricity]. E`lektrotexnika [Electrical Engineering]. 1998. №3. P. 10-17 (in Russian).
  10. Soloduho I.Yu. Tendencii kompensacii reaktivnoj moshhnosti. Ch.1. Reaktivnaya moshhnost` pri nesinusoidal`ny`x rezhimax raboty` [Reactive Power Compensation Trends. Part 1. Reactive Power during Non-Sinusoidal Operation]. Moskva: Informe`lektro [Moscow: Informelectro]. 1987. 50 р. (in Russian).
  11. Parfenov B.M., Shevyryov Yu.V. Staticheskie rezhimy` fil`tro-kompensiruyushhix ustrojstv v sistemax e`lektroprivoda soizmerimoj moshhnosti [Static Modes of Filter-Compensating Devices in Electric Drive Systems of Comparable Power]. Avtomatizirovanny`j e`lektroprivod [Automated Electric Drive]. Sbornik nauchny`x trudov [Collection of scientific works]. OAO «E`lektroprivod» [«Elektroprivod» OJSC]. Moscow. 2002. P. 134-153 (in Russian).
  12. Shevyryov Yu.V. Metody` modelirovaniya i povy`sheniya e`lektroe`nergeticheskix pokazatelej e`lektrotexnicheskix kompleksov burovy`x ustanovok [Methods of Modeling and Improving the Electric Power Indices of Electrical Engineering Complexes of Drilling Rigs]. Moskva: Moskovskij gosudarstvenny`j geologorazvedochny`j universitet [Moscow: Moscow State Geological Prospecting University]. 2005. 177 р. (in Russian).
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