Article ID Journal Published Year Pages File Type
1798762 Journal of Magnetism and Magnetic Materials 2016 7 Pages PDF
Abstract

•The interleaved hysteresis loop in magnetic measurements has been documented•A successful procedure for modeling the interleaved hysteresis loop is presented•The efficiency of the proposed PI model is compared to Preisach model.

The measurement of core losses in machine laminations reveals a fundamental difference between rotational and pulsating types. Rotational core losses under rotating fields decrease at high flux density, while pulsating losses keep increasing steadily. Experimental analyses of loss components Px and Py in x and y directions with rotating fields show that the loss decreases in one loss component and sometimes attains negative values. Tracking the evolution of hysteresis loops along this loss component discloses a peculiar behavior of magnetic hysteresis, where the loop changes its path from counterclockwise to clockwise within a cycle of magnetization process, the so called interleaved hysteresis loop. This paper highlights a successful procedure for modeling the interleaved hysteresis loop in the measurement of rotational core losses in electrical machine laminations using the generalized Prandtl–Ishlinskii (PI) model. The efficiency of the proposed model is compared to Preisach model. Results and conclusion of this work are of importance toward building an accurate model of rotational core losses.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Condensed Matter Physics
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