Design and modeling of a planar micro-coil for micro solar converter application


Journal article


Abdallah Laidi, Messaoud Hamouda, Djilalia Guendouz, Mohamed Amine HARTANI
relation, vol. 16, 2021, pp. 2L


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APA   Click to copy
Laidi, A., Hamouda, M., Guendouz, D., & HARTANI, M. A. (2021). Design and modeling of a planar micro-coil for micro solar converter application. Relation, 16, 2L. https://doi.org/10.15199/48.2021.02.25


Chicago/Turabian   Click to copy
Laidi, Abdallah, Messaoud Hamouda, Djilalia Guendouz, and Mohamed Amine HARTANI. “Design and Modeling of a Planar Micro-Coil for Micro Solar Converter Application.” relation 16 (2021): 2L.


MLA   Click to copy
Laidi, Abdallah, et al. “Design and Modeling of a Planar Micro-Coil for Micro Solar Converter Application.” Relation, vol. 16, 2021, p. 2L, doi:10.15199/48.2021.02.25.


BibTeX   Click to copy

@article{laidi2021a,
  title = {Design and modeling of a planar micro-coil for micro solar converter application},
  year = {2021},
  journal = {relation},
  pages = {2L},
  volume = {16},
  doi = {10.15199/48.2021.02.25},
  author = {Laidi, Abdallah and Hamouda, Messaoud and Guendouz, Djilalia and HARTANI, Mohamed Amine}
}

Abstract

This paper presents a method of dimensioning a DC-DC micro-converter connected to a photovoltaic generator. We are interested in designing and dimensioning a circular planar micro-coil integrated into a Boost micro-converter in this work. The integration of the active and passive power components and the miniaturization of these structures allow a maximum reduction of the space requirement while guaranteeing an acceptable efficiency and improvement of the energy conversion systems' characteristics. The chosen compact model's electrical and frequency behavior, containing all the integrated inductance technological parameters, is described by analytical expressions whose resolution is made using simulation software.

Keywords 

Integrated, Micro-coil, DC-DC Micro-Converter, Photovoltaic generator




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