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Impact of Non-Uniform Flux Density on Core Losses A Case Study on Standard Core Geometries.pdf (649.7Kb)
Poster_ECCE24_AArruti.pdf (1.406Mb)
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Izenburua
Impact of Non-Uniform Flux Density on Core Losses: A Case Study on Standard Core Geometries
Egilea
Arruti Romero, Asier
Agote San Sebastian, Anartz
Anzola, Jon
Aizpuru, Iosu
Mazuela, Mikel
Argitalpen data
2024
Ikerketa taldea
Sistemas electrónicos de potencia aplicados al control de la energía eléctrica
Bertsioa
Postprinta
Dokumentu-mota
Kongresu-ekarpenaKongresu-ekarpena
Hizkuntza
Ingelesa
Eskubideak
© 2024 IEEE
Sarbidea
Sarbide irekia
URI
https://hdl.handle.net/20.500.11984/6826
Non argitaratua
IEEE Energy Conversion Congress and Exposition (ECCE)  Darmstadt (Alemania), 2-6 septiembre, 2024
Argitaratzailea
IEEE
Gako-hitzak
Core loss
Magnetic flux
Magnetic cores
Ferrites ... [+]
Core loss
Magnetic flux
Magnetic cores
Ferrites
ODS 7 Energía asequible y no contaminante
ODS 9 Industria, innovación e infraestructura
ODS 13 Acción por el clima [-]
Laburpena
The non-uniform flux density distribution inside magnetic cores leads to increased overall losses when compared to the commonly used uniform flux density assumption. This effect is amplified if rectan ... [+]
The non-uniform flux density distribution inside magnetic cores leads to increased overall losses when compared to the commonly used uniform flux density assumption. This effect is amplified if rectangular based core shapes are used, where flux crowding in the corner sections plays a major role in the losses. To evaluate the effect of this non-uniform flux density distribution, computationally heavy FEM simulations are needed, in most cases incompatible with the preliminary design process of core selection. To solve this issue, this work analyses the flux distribution in a wide range of standard commercial core geometries and sizes with the aid of FEM simulations. The increment of losses between uniform and non-uniform flux densities are shown, allowing to quickly evaluate the impact of the flux distribution in the magnetic core selection process. Since the core losses depend on material parameters, these are evaluated in a wide range of the Steinmetz parameter β, based on typical ranges of the β parameter extracted from the open-source MagNet database. [-]
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  • Kongresuak - Ingeniaritza [436]

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