A Coupled Method for Evaluating Eddy Current Loss of NdFeB Permanent Magnets in a Saturated Core Fault Current Limiter

Eddy-current loss of NdFeB permanent magnets (PMs) is widely analyzed in PM motors. This paper proposes a coupled 2-D transient finite-element analysis (FEA) of the saturated core fault current limiter (SCFCL) and 3-D analytical model of PMs to evaluate eddy-current loss in SCFCL. The comparison bet...

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Veröffentlicht in:IEEE transactions on magnetics 2017-06, Vol.53 (6), p.1-4
Hauptverfasser: Cuihua Tian, Yongheng Zhong, Liangliang Wei, Yang Lei, Baichao Chen, Yanhui Gao, Muramatsu, Kazuhiro, Jiaxin Yuan
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container_issue 6
container_start_page 1
container_title IEEE transactions on magnetics
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creator Cuihua Tian
Yongheng Zhong
Liangliang Wei
Yang Lei
Baichao Chen
Yanhui Gao
Muramatsu, Kazuhiro
Jiaxin Yuan
description Eddy-current loss of NdFeB permanent magnets (PMs) is widely analyzed in PM motors. This paper proposes a coupled 2-D transient finite-element analysis (FEA) of the saturated core fault current limiter (SCFCL) and 3-D analytical model of PMs to evaluate eddy-current loss in SCFCL. The comparison between the result from coupled method and that from 3-D FEA verifies the applicability of the coupled method in analyzing eddy current loss of PMs in SCFCL. The 3-D analytical model of PM is applied to analyze the effect of segmentation on the reduction of PM's eddy-current loss. And the results show that segmentation along width has a better performance, which is also verified by 3-D FEA.
doi_str_mv 10.1109/TMAG.2017.2664828
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subjects Analytical models
Core loss
Coupled method
Current loss
Curve fitting
Eddy current testing
Eddy currents
eddy-current loss
Finite element method
Magnetic cores
Magnetic flux
Magnetism
Magnetostatics
Mathematical analysis
Mathematical models
Motors
NdFeB permanent magnets (PMs)
Permanent magnets
saturated core fault current limiter (SCFCL)
Segmentation
Three dimensional models
Transient analysis
title A Coupled Method for Evaluating Eddy Current Loss of NdFeB Permanent Magnets in a Saturated Core Fault Current Limiter
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