4.6 Article

Ferrites and Nanocrystalline Alloys Applied to DC-DC Converters for Renewable Energies

期刊

APPLIED SCIENCES-BASEL
卷 12, 期 2, 页码 -

出版社

MDPI
DOI: 10.3390/app12020709

关键词

DC-DC converter; electric vehicles; renewable energy; solid state transformers

资金

  1. UMSNH (Universidad Michoacan de San Nicolas de Hidalgo)
  2. ENES Juriquilla-UNAM (Escuela Nacional de Estudios Superiores Unidad Juriquilla, Universidad Nacional Autonoma deMexico)
  3. CONACYT

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The research aims to explore the advantages and disadvantages of nanocrystalline and ferrite materials in MFT design, and their impact on power density, performance, and cost. The experimental results show that the nanocrystalline core has higher power density and efficiency, while the ferrite core is lower in construction cost.
Featured Application To get new DC-DC converters with higher power density. The medium frequency transformer (MFT) with nanocrystalline alloys is quintessential in new DC-DC converters involved in various front-end applications. The center piece to achieve high-performance, efficient MFTs is the core. There are various options of core materials; however, no deep information is available about which material characteristics and design procedure combo are best to get high performance MFTs while operating at maximal power density. To provide new insights about interrelation between the selection of the core material with the compliance technical specifications, differently to other proposals, this research work aims to design and build, with the same methodology, two MFT prototypes at 20 kHz, with nanocrystalline and ferrite cores, to highlight power density, and overall performance and cost, as matching design criteria. As the experimental results show, a nanocrystalline core has the highest power density (36.91 kW/L), designed at 0.8 T to obtain low losses at 20 kHz, achieving an efficiency of 99.7%. The power density in the ferrite MFT is 56.4% lower than in the nanocrystalline MFT. However, regarding construction cost, the ferrite MFT is 46% lower, providing this a trend towards low-cost DC-DC converters. Finally, high power density in MFTs increases the power density of power DC-DC converters, which have relevant applications in fuel cell-supplied systems, renewable energies, electric vehicles, and solid-state transformers.

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