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Analytical, FEM and Experimental Study of the Influence of the Airgap Size in Different Types of Ferrite Cores.pdf (1.123Mb)
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Title
Analytical, FEM and Experimental Study of the Influence of the Airgap Size in Different Types of Ferrite Cores
Author
Arruti Romero, Asier ccMondragon Unibertsitatea
Anzola, Jon ccMondragon Unibertsitatea
Aizpuru, IosuMondragon Unibertsitatea
Mazuela, Mikel ccMondragon Unibertsitatea
Author (from another institution)
Pérez-Cebolla, Francisco José
Research Group
Almacenamiento de energía
Published Date
2022
Publisher
IEEE
Keywords
Geometry
Ferrites
Analytical models
Shape ... [+]
Geometry
Ferrites
Analytical models
Shape
Magnetic cores
Atmospheric modeling
Focusing [-]
Abstract
This work reviews and compares different airgap reluctance calculation approaches with experimental results, focusing on the Schwarz-Christoffel transformation. The modelling of the airgap reluctance ... [+]
This work reviews and compares different airgap reluctance calculation approaches with experimental results, focusing on the Schwarz-Christoffel transformation. The modelling of the airgap reluctance in two dimensions is tested against FEM simulations for typical airgap geometries. Then, an approach to obtain the three-dimensional reluctance is shown, and the limited experimental data shown in previous works is expanded to validate the different airgap calculation methods in EE cores. For the case of pot cores, a geometrical transformation is proposed and validated, allowing the application of the Schwarz-Christoffel methodology to other common core geometries. [-]
URI
https://hdl.handle.net/20.500.11984/5905
Publisher’s version
https://ieeexplore.ieee.org/document/9907677
ISBN
978-9-0758-1539-9
Published at
24th European Conference on Power Electronics and Applications (EPE'22 ECCE Europe)  Hanover 05-09 September 2022. Pp. 1-8. IEEE, 2022
Document type
Conference paper
Version
Postprint – Accepted Manuscript
Rights
© 2022 IEEE
Access
Embargoed Access (until 2024-10-31)
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  • Conferences - Engineering [234]

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