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Busbar Design and Optimization for High Power Three-phase Inverter with WBG Device

  • Yuxuan Wu
  • , Mustafeez Ul-Hassan
  • , Fang Luo
  • Stony Brook University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

4 Scopus citations

Abstract

The wide-band gap devices can switch at a higher frequency with a higher dV/dt well as improve switching performance. The optimization of busbars can reduce the power loop parasitic which will reduce the overvoltages during the device's state transient. Busbar is not only required to carry and distribute the current to the power module, but also need to provide a path for decouple the high-frequency current ringing and minimize the impact of high-frequency current coupling. This paper introduced a workflow of a high power three-phase inverter design by considering the power converter layout to achieve the maximum power and , and a comparative study between three-different busbar designs is presented.

Original languageEnglish
Title of host publication2022 IEEE 9th Workshop on Wide Bandgap Power Devices and Applications, WiPDA 2022
PublisherInstitute of Electrical and Electronics Engineers Inc.
Pages132-137
Number of pages6
ISBN (Electronic)9781665489003
DOIs
StatePublished - 2022
Event9th IEEE Workshop on Wide Bandgap Power Devices and Applications, WiPDA 2022 - Redondo Beach, United States
Duration: Nov 7 2022Nov 9 2022

Publication series

Name2022 IEEE 9th Workshop on Wide Bandgap Power Devices and Applications, WiPDA 2022

Conference

Conference9th IEEE Workshop on Wide Bandgap Power Devices and Applications, WiPDA 2022
Country/TerritoryUnited States
CityRedondo Beach
Period11/7/2211/9/22

Keywords

  • busbar design
  • DC-AC inverter
  • high-power inverter
  • two-level motor drive
  • WBG device

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