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Evolution of Classical 1-D Based Models and Improved Approach for the Characterization of Litz Wire Losses.pdf (1.787Mb)
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Izenburua
Evolution of classical 1-D based models and improved approach for the characterization of litz wire losses
Egilea
Arruti Romero, Asier
Aizpuru, Iosu
Mazuela, Mikel
Egilea (beste erakunde batekoa)
Ouyang, Ziwei
Andersen, Michael A.E.
Argitalpen data
2024
Ikerketa taldea
Sistemas electrónicos de potencia aplicados al control de la energía eléctrica
Beste erakundeak
Technical University of Denmark
Bertsioa
Postprinta
Dokumentu-mota
ArtikuluaArtikulua
Hizkuntza
Ingelesa
Eskubideak
© 2024 IEEE
Sarbidea
Sarbide irekia
URI
https://hdl.handle.net/20.500.11984/6806
Argitaratzailearen bertsioa
https://doi.org/10.1109/TPEL.2024.3446962
Non argitaratua
IEEE Transactions on Power Electronics  Vol. 39. N. 12. Pp. 16371-16381. December, 2024
Argitaratzailea
IEEE
Gako-hitzak
High-frequency transformers
Mathematical model
Wire
ODS 7 Energía asequible y no contaminante
UNESCO Sailkapena
Ingeniaritza eta teknologia elektrikoak
Laburpena
Prediction of Litz wire losses is a challenging endeavor in the design of high-frequency transformers. Although many analytical approaches of varying complexity can be found in the literature, classic ... [+]
Prediction of Litz wire losses is a challenging endeavor in the design of high-frequency transformers. Although many analytical approaches of varying complexity can be found in the literature, classical 1-D-based models are the norm in the analysis of wide design spaces. Even then, an important degree of uncertainty exists around the accuracy of the 1-D models. After a critical review of these models and an analysis of their application in Litz wire loss prediction, a new model is proposed, which tries to address some of the concerns and limitations of the existing approaches. The models are evaluated against 2-D finite-element simulations in many different conditions to ensure that the models correctly consider the impact of different parameters. The experimental results are presented to demonstrate the accuracy of the new approach at very high frequencies and high amounts of strands using four prototypes with different Litz wires, designed to correctly match the conditions inherent to any 1-D model. [-]
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  • Artikuluak - Ingeniaritza [758]

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