The modeling and numerical analysis of the magnetic loss inside components under multi-harmonic and/or DC-biasing excitations are increasingly of concern in large and special electromagnetic devices. This paper aims to investigate efficient and reliable approaches to determine the magnetic losses inside both the solid and laminated components under such extreme excitations. All the proposed approaches presented in the paper are experimentally validated.
Published in |
International Journal of Energy and Power Engineering (Volume 5, Issue 1-1)
This article belongs to the Special Issue Numerical Analysis, Material Modeling and Validation for Magnetic Losses in Electromagnetic Devices |
DOI | 10.11648/j.ijepe.s.2016050101.13 |
Page(s) | 21-30 |
Creative Commons |
This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited. |
Copyright |
Copyright © The Author(s), 2015. Published by Science Publishing Group |
Benchmark Model, Components, Device-Based Model, Experimental Validation, Extreme Excitation, Finite Element Analysis(FEA), Magnetic Loss, Magnetic Material, Working Magnetic Properties
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APA Style
Zhiguang Cheng, Behzad Forghani, Yang Liu, Yana Fan, Tao Liu, et al. (2015). Magnetic Loss Inside Solid and Laminated Components under Extreme Excitations. International Journal of Energy and Power Engineering, 5(1-1), 21-30. https://doi.org/10.11648/j.ijepe.s.2016050101.13
ACS Style
Zhiguang Cheng; Behzad Forghani; Yang Liu; Yana Fan; Tao Liu, et al. Magnetic Loss Inside Solid and Laminated Components under Extreme Excitations. Int. J. Energy Power Eng. 2015, 5(1-1), 21-30. doi: 10.11648/j.ijepe.s.2016050101.13
AMA Style
Zhiguang Cheng, Behzad Forghani, Yang Liu, Yana Fan, Tao Liu, et al. Magnetic Loss Inside Solid and Laminated Components under Extreme Excitations. Int J Energy Power Eng. 2015;5(1-1):21-30. doi: 10.11648/j.ijepe.s.2016050101.13
@article{10.11648/j.ijepe.s.2016050101.13, author = {Zhiguang Cheng and Behzad Forghani and Yang Liu and Yana Fan and Tao Liu and Zhigang Zhao}, title = {Magnetic Loss Inside Solid and Laminated Components under Extreme Excitations}, journal = {International Journal of Energy and Power Engineering}, volume = {5}, number = {1-1}, pages = {21-30}, doi = {10.11648/j.ijepe.s.2016050101.13}, url = {https://doi.org/10.11648/j.ijepe.s.2016050101.13}, eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ijepe.s.2016050101.13}, abstract = {The modeling and numerical analysis of the magnetic loss inside components under multi-harmonic and/or DC-biasing excitations are increasingly of concern in large and special electromagnetic devices. This paper aims to investigate efficient and reliable approaches to determine the magnetic losses inside both the solid and laminated components under such extreme excitations. All the proposed approaches presented in the paper are experimentally validated.}, year = {2015} }
TY - JOUR T1 - Magnetic Loss Inside Solid and Laminated Components under Extreme Excitations AU - Zhiguang Cheng AU - Behzad Forghani AU - Yang Liu AU - Yana Fan AU - Tao Liu AU - Zhigang Zhao Y1 - 2015/09/29 PY - 2015 N1 - https://doi.org/10.11648/j.ijepe.s.2016050101.13 DO - 10.11648/j.ijepe.s.2016050101.13 T2 - International Journal of Energy and Power Engineering JF - International Journal of Energy and Power Engineering JO - International Journal of Energy and Power Engineering SP - 21 EP - 30 PB - Science Publishing Group SN - 2326-960X UR - https://doi.org/10.11648/j.ijepe.s.2016050101.13 AB - The modeling and numerical analysis of the magnetic loss inside components under multi-harmonic and/or DC-biasing excitations are increasingly of concern in large and special electromagnetic devices. This paper aims to investigate efficient and reliable approaches to determine the magnetic losses inside both the solid and laminated components under such extreme excitations. All the proposed approaches presented in the paper are experimentally validated. VL - 5 IS - 1-1 ER -