Core loss analysis and calculation of stator permanent-magnet machine considering dc-biased magnetic induction

Journal Article (2014)
Author(s)

Sa Zhu (Southeast University)

Ming Cheng (Southeast University)

J. Dong (Southeast University)

Jun Du (Chongqing Jiaotong University, Southeast University)

Affiliation
External organisation
DOI related publication
https://doi.org/10.1109/TIE.2014.2300062
More Info
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Publication Year
2014
Language
English
Affiliation
External organisation
Issue number
10
Volume number
61
Pages (from-to)
5203-5212

Abstract

In this paper, core loss characteristics of stator permanent-magnet (PM) machines are analyzed and calculated, in which the unique dc-biased magnetic induction is taken into account. The flux density variation patterns in some key points in a doubly salient PM (DSPM) machine are analyzed by the two-dimensional time-stepping finite-element method. To calculate the core loss of stator and other minor hysteresis loops under dc magnetic bias, core loss characteristics of silicon steel sheet under dc-biased induction condition are first tested by a simple test system based on traditional Epstein frame and a functional relationship between the change of dc-biased induction and hysteresis loss is proposed. Two core loss calculation methods considering rotational magnetization based on flux density waveform are improved to take the influence of dc-biased magnetic induction into consideration. The calculation results are verified by experiments on a prototype DSPM machine. The conclusions are also applicable to other kinds of stator PM machines.

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