An Alternative Formulation of the Harrison Model

The approach advanced by Harrison puts in the spotlight the fundamental role of bistability in hysteresis modeling. The description is based on physical premises concerning irreversible thermodynamics. In the original model, the upscaling of irreversible phenomena acting on the micromagnetic level i...

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Main Authors: Krzysztof Chwastek, Piotr Gębara, Anna Przybył, Roman Gozdur, Ajay P. S. Baghel, Boggavarapu Sai Ram
Format: Article
Language:English
Published: MDPI AG 2023-11-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/13/21/12009
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author Krzysztof Chwastek
Piotr Gębara
Anna Przybył
Roman Gozdur
Ajay P. S. Baghel
Boggavarapu Sai Ram
author_facet Krzysztof Chwastek
Piotr Gębara
Anna Przybył
Roman Gozdur
Ajay P. S. Baghel
Boggavarapu Sai Ram
author_sort Krzysztof Chwastek
collection DOAJ
description The approach advanced by Harrison puts in the spotlight the fundamental role of bistability in hysteresis modeling. The description is based on physical premises concerning irreversible thermodynamics. In the original model, the upscaling of irreversible phenomena acting on the micromagnetic level is carried out by the introduction of a phenomenological parameter <i>β.</i> In the present paper, an alternative approach is proposed. The outputs of individual outputs of elementary hysteresis units (hysterons) are considered like in the stop model. A verification of the proposed model is carried out using measurement data for a praseodymium–dysprosium ribbon sample and a cylinder core made of cobalt-based amorphous material.
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spelling doaj.art-adba7f52f1b44b10b2198f75ee1dfea42023-11-10T14:59:29ZengMDPI AGApplied Sciences2076-34172023-11-0113211200910.3390/app132112009An Alternative Formulation of the Harrison ModelKrzysztof Chwastek0Piotr Gębara1Anna Przybył2Roman Gozdur3Ajay P. S. Baghel4Boggavarapu Sai Ram5Faculty of Electrical Engineering, Częstochowa University of Technology, 42-201 Częstochowa, PolandFaculty of Production Engineering and Materials Technology, Częstochowa University of Technology, 42-201 Częstochowa, PolandFaculty of Production Engineering and Materials Technology, Częstochowa University of Technology, 42-201 Częstochowa, PolandFaculty of Electrical, Electronic, Computer and Control Engineering, Lodz University of Technology, 93-590 Lodz, PolandCritical Materials Innovation Hub, Ames National Laboratory, US DOE, Ames, IA 50011-1025, USADepartment of Electrical, Electronics and Communication Engineering, IIT Dharwad, Dharwad 580001, IndiaThe approach advanced by Harrison puts in the spotlight the fundamental role of bistability in hysteresis modeling. The description is based on physical premises concerning irreversible thermodynamics. In the original model, the upscaling of irreversible phenomena acting on the micromagnetic level is carried out by the introduction of a phenomenological parameter <i>β.</i> In the present paper, an alternative approach is proposed. The outputs of individual outputs of elementary hysteresis units (hysterons) are considered like in the stop model. A verification of the proposed model is carried out using measurement data for a praseodymium–dysprosium ribbon sample and a cylinder core made of cobalt-based amorphous material.https://www.mdpi.com/2076-3417/13/21/12009hysteresis loopmodelingHarrison modelbistability
spellingShingle Krzysztof Chwastek
Piotr Gębara
Anna Przybył
Roman Gozdur
Ajay P. S. Baghel
Boggavarapu Sai Ram
An Alternative Formulation of the Harrison Model
Applied Sciences
hysteresis loop
modeling
Harrison model
bistability
title An Alternative Formulation of the Harrison Model
title_full An Alternative Formulation of the Harrison Model
title_fullStr An Alternative Formulation of the Harrison Model
title_full_unstemmed An Alternative Formulation of the Harrison Model
title_short An Alternative Formulation of the Harrison Model
title_sort alternative formulation of the harrison model
topic hysteresis loop
modeling
Harrison model
bistability
url https://www.mdpi.com/2076-3417/13/21/12009
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