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Blind Efficient Method for Optimizing Jiles-Atherton Model Parameters.pdf (762.1Kb)
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Izenburua
Blind Efficient Method for Optimizing Jiles-Atherton Model Parameters
Egilea
Conde Garrido, Juan Manuel
Ugarte Valdivielso, Jone cc
Aizpurua Unanue, José Ignacio
Barrenetxea, Manex cc
Silveyra, Josefina María
Argitalpen data
2025
Ikerketa taldea
Redes eléctricas
Beste erakundeak
https://ror.org/00wvqgd19
https://ror.org/0081fs513
Universidad del País Vasco/Euskal Herriko Unibertsitatea (UPV/EHU)
Bertsioa
Postprinta
Dokumentu-mota
Artikulua
Hizkuntza
Ingelesa
Eskubideak
© 2025 IEEE
Sarbidea
Sarbide irekia
URI
https://hdl.handle.net/20.500.11984/14005
Argitaratzailearen bertsioa
https://doi.org/10.1109/TMAG.2025.3632479
Non argitaratua
IEEE Transactions on Magnetics  (Early Access)
Argitaratzailea
IEEE
Gako-hitzak
Magnetization
UNESCO Sailkapena
Teknologia elektronikoa
Laburpena
We introduce a novel blind optimization method for determining the parameters of the Jiles-Atherton model of hysteresis, eliminating the need for user-provided initial guesses or search spaces. A care ... [+]
We introduce a novel blind optimization method for determining the parameters of the Jiles-Atherton model of hysteresis, eliminating the need for user-provided initial guesses or search spaces. A carefully designed initialization procedure combined with a standard optimizer yields a high-performing, practical method for parameter estimation. Validation against a theoretical benchmark recovers ground-truth parameters in under half a minute with negligible error (relative error < 4×10⁻⁸). When applied to the TEAM32 electrical steel experimental benchmark, our method achieved superior accuracy than previously reported fittings, also converging in under half a minute. Consistently robust performance is further demonstrated across diverse systems, including soft ferrites, nanocrystalline alloys, and magnetostrictive compounds. The presented blind approach offers new insights into magnetic material characterization and is deployed as an automated tool for hysteresis analysis. It advances both fundamental understanding and practical applications by demonstrating the Jiles-Atherton model’s capability to describe anisotropic materials and by revealing its inherent limitations. [-]
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  • Artikuluak - Ingeniaritza [762]

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