Characteristic analysis and design of novel high-frequency shell-type coaxial transformer

  • Lee, Yoon-Sun
  • Kim, Kyoung-Tak
  • Park, Joung-Hu
  • Lee, Seung-Jae
  • Chung, Tae-Kyung
  • ... Ro, Jong-Suk
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초록

Recently, power conversion systems (PCSs) have exhibited high efficiencies and miniaturisation, and this trend is expected to grow in the future. An important component of the PCS, which accounts for a significant portion of its volume, is the transformer (TR). However, it is difficult to achieve a significant increase in the efficiency and reduction in the volume of a PCS using a conventional TR, as the conventional TRs do not offer much scope for further optimisation. To overcome this limitation imposed by the conventional TRs, a novel and practical high-frequency coaxial TR, named the shell-type coaxial TR (SCTR), is proposed in this work. A useful and strategic analysis and design method, which covers the overall development process from the design stage to the experimental validation stage of the proposed high-frequency SCTR, is also proposed. The usefulness of the proposed SCTR and the analysis and design method are verified by designing an SCTR for a 50 W DC/DC converter and conducting experiments on it. It is found that the use of the proposed technique can cause a significant increase in the efficiency and power density of the PCS

키워드

DC-DC power convertorshigh-frequency transformerspower conversionlow-power electronicspower conversion systemsshell-type coaxial TRstrategic analysisdesign methodexperimental validation stagehigh-frequency SCTRpower densityhigh-frequency shell-type coaxial transformerPCS volume reductionDC-DC converterpower 500 WFINITE-ELEMENTEQUIVALENT-CIRCUITRESPONSE ANALYSISPOWEROPTIMIZATIONLOSSESINDUCTANCEMODELIDENTIFICATIONCONSTRUCTION
제목
Characteristic analysis and design of novel high-frequency shell-type coaxial transformer
저자
Lee, Yoon-SunKim, Kyoung-TakPark, Joung-HuLee, Seung-JaeChung, Tae-KyungRo, Jong-Suk
DOI
10.1049/iet-epa.2018.5815
발행일
2019-12
유형
Article
저널명
IET Electric Power Applications
13
12
페이지
2027 ~ 2034

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