Zhang et al., 2009 - Google Patents
An improved modeling of vector magnetic properties of electrical steel sheet for FEM application and its experimental verificationZhang et al., 2009
- Document ID
- 6208801171429805896
- Author
- Zhang Y
- Eum Y
- Li W
- Xie D
- Koh C
- Publication year
- Publication venue
- IEEE transactions on magnetics
External Links
Snippet
This paper presents an improved vector magnetic property model of anisotropic electrical steel sheet taking account of both the modeling accuracy and the computational cost when combined with finite element (FE) formulation. The reluctivity and hysteresis coefficients in …
- 229910000976 Electrical steel 0 title abstract description 11
Classifications
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R33/00—Arrangements or instruments for measuring magnetic variables
- G01R33/12—Measuring magnetic properties of articles or specimens of solids or fluids
- G01R33/14—Measuring or plotting hysteresis curves
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Krings et al. | Overview and comparison of iron loss models for electrical machines | |
Zhu et al. | Evaluation of iron loss models in electrical machines | |
Steentjes et al. | Iron-loss model with consideration of minor loops applied to FE-simulations of electrical machines | |
Cheng et al. | Effect of variation of BH properties on loss and flux inside silicon steel lamination | |
Lee et al. | Prediction of iron losses using the modified Steinmetz equation under the sinusoidal waveform | |
Wang et al. | Estimation model of core loss under DC bias | |
Lin et al. | A new nonlinear anisotropic model for soft magnetic materials | |
Cardelli et al. | Implementation of the single hysteron model in a finite-element scheme | |
Wang et al. | Eddy current loss in grain-oriented steel laminations due to normal leakage flux | |
Gao et al. | Investigation on simple numeric modeling of anomalous eddy current loss in steel plate using modified conductivity | |
Baghel et al. | An alternative approach to model mechanical stress effects on magnetic hysteresis in electrical steels using complex permeability | |
Li et al. | An improved loss-separation method for transformer core loss calculation and its experimental verification | |
Kumar et al. | Core loss estimation for an inverter-fed induction motor with more accurate realisation of material non-linearity and impact of hysteresis minor loops | |
Zhang et al. | An improved modeling of vector magnetic properties of electrical steel sheet for FEM application and its experimental verification | |
Leite et al. | Modelling dynamic losses under rotational magnetic flux | |
Yoon et al. | Finite element implementation of a generalized Chua-type vector hysteresis model and application to iron loss analysis of three-phase transformer | |
Su et al. | Estimation of the core losses of induction machines based on the corrected Epstein test method | |
Shi et al. | The FEM calculation considering vector magnetic properties of electrical steel sheet under DC-biased field | |
Zhang et al. | An improved engineering model of vector magnetic properties of grain-oriented electrical steels | |
Zhao et al. | Calculation of core loss under distorted flux density with minor hysteresis loops for laminated steel structure | |
Kefalas et al. | Transformer joints FE analysis using pseudo-source technique | |
Dawood et al. | Numerical and experimental comparison of the no-load losses in the different grain-oriented electrical steel materials | |
Bi et al. | A new high-frequency iron loss model including additional iron losses due to punching and burrs’ connection | |
Yoshioka et al. | Iron loss estimation method for silicon steel sheet taking account of DC-biased conditions | |
Zhao et al. | Study on dynamic hysteretic and loss properties of silicon steel sheet under hybrid harmonic and DC bias excitation |