Incorporation of a 3-D Energy-Based Vector Hysteresis Model Into the Finite Element Method Using a Reduced Scalar Potential Formulation

被引:1
作者
Domenig, Lukas Daniel [1 ]
Roppert, Klaus [2 ]
Kaltenbacher, Manfred [3 ]
机构
[1] Graz Univ Technol, Inst Fundamentals & Theory Elect Engn, Graz, Austria
[2] Inst Fundamentals & Theory Elect Engn, Multiphys Modeling & Simulat Res Grp, TU Graz, Graz, Austria
[3] Graz Univ Technol, Graz, Austria
关键词
Magnetic hysteresis; Jacobian matrices; Finite element analysis; Vectors; Mathematical models; Magnetic domains; Newton method; Energy-based vector hysteresis; finite element method (FEM); line search; quasi-Newton scheme;
D O I
10.1109/TMAG.2024.3387354
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In this work, the reduced scalar potential is utilized to derive a finite element formulation capable of handling hysteretic nonlinear material laws. The Fr & eacute;chet derivative is employed to deduce a quasi-Newton scheme in the weak form for solving the nonlinear partial differential equation that describes the magnetostatic field. Methods for evaluating the Jacobian are presented, and their performance is compared on a 3-D domain under uniaxial and rotational excitation. The numerical results demonstrate the necessity of a flexible approximation to overcome the non-uniqueness of the Jacobian at reversal points, which naturally occurs in hysteresis loops. Consequently, an exact or excessively localized evaluation would give rise to difficulties in states of material magnetization characterized by these reversal points.
引用
收藏
页码:1 / 8
页数:8
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