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Extended progress in TEAM Problem 21 Family

Zhiguang Cheng (R&D Center, Baoding Tianwei Group Co., Ltd, Baoding, China)
Norio Takahashi (Department of Electrical and Electronic Engineering, Okayama University, Okayama, Japan)
Behzad Forghani (Infolytica Corporation, Montreal, Canada)
Lanrong Liu (R&D Center, Baoding Tianwei Group Co., Ltd, Baoding, China)
Yana Fan (R&D Center, Baoding Tianwei Group Co., Ltd, Baoding, China)
Tao Liu (R&D Center, Baoding Tianwei Group Co., Ltd, Baoding, China)
Qifan Hu (R&D Center, Baoding Tianwei Group Co., Ltd, Baoding, China)
Sheng Gao (R&D Center, Baoding Tianwei Group Co., Ltd, Baoding, China)
Junjie Zhang (R&D Center, Baoding Tianwei Group Co., Ltd, Baoding, China)
Xiaoyan Wang (R&D Center, Baoding Tianwei Group Co., Ltd, Baoding, China)
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Abstract

Purpose

The purpose of the paper is to give a review of TEAM Problem 21, focus on its extended progress in engineering-oriented developments, and report the new benchmarking activity undertaken by the authors.

Design/methodology/approach

Testing electromagnetic analysis methods; verify computation models; detail the field behavior of typical magnetic structure; benefit to large-scale numerical modeling.

Findings

The calculated results of power loss and magnetic flux for all the member models agree well with the measured ones. The updated Problem 21 Family can now be used to model the saturation effect in the magnetic plate or the lamination by increasing the exciting currents. The new member model P21d-M allows further detailed examination of the electromagnetic behavior inside laminated sheets. The variation of both the iron loss and the magnetic flux with the excitation patterns and magnetic property data can be investigated inside the laminated sheets and the magnetic plate.

Originality/value

In order to model the possible saturation level of magnetic steel using Ar-V-Ar or T-Ω solvers, the exciting currents are increased from 10 to 50 A. In order to model the iron loss and magnetic flux densities inside the laminated sheets, a very simplified model, P21d-M of Problem 21 Family as shown in Figure 2, has been proposed.

Keywords

Acknowledgements

The second named author, Professor Norio Takahashi is deceased.  This work was supported by the National Natural Science Foundation of China under Grants 59277296, 50777042, and 50677016, by the China Postdoctoral Science Foundation under Grants 2011M500534 and 2012T50242, and by the State Grid Corporation of China under Grant sgri-wd-71-13.

Citation

Cheng, Z., Takahashi, N., Forghani, B., Liu, L., Fan, Y., Liu, T., Hu, Q., Gao, S., Zhang, J. and Wang, X. (2014), "Extended progress in TEAM Problem 21 Family", COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, Vol. 33 No. 1/2, pp. 234-244. https://doi.org/10.1108/COMPEL-05-2013-0166

Publisher

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Emerald Group Publishing Limited

Copyright © 2014, Emerald Group Publishing Limited

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