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2019 | OriginalPaper | Buchkapitel

Magnetic Hysteresis Represented by Play Model

verfasst von : Tetsuji Matsuo

Erschienen in: Magnetic Material for Motor Drive Systems

Verlag: Springer Singapore

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Abstract

The play model is a simple and efficient hysteresis model that is mathematically equivalent to the classical Preisach model. The play model requires only one-dimensional integral, whereas the Preisach model is described by a two-dimensional integral basically. The relation between the Preisach distribution function and the shape function of the play model is explained. Based on the Everett integral for the Preisach model, a method for identification of the play model is presented, where the shape function is determined from given symmetric hysteresis loops. For the application to the magnetic field analysis using the magnetic vector potential, B-input play model is also explained. Isotropic and anisotropic vector play models are presented, which are required for 2D and 3D magnetic field analyses.

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Literatur
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Zurück zum Zitat Matsuo, T., Shimasaki, M.: An identification method of play model with input-dependent shape function. IEEE Trans. Magn. 41(10), 3112–3114 (2005)CrossRef Matsuo, T., Shimasaki, M.: An identification method of play model with input-dependent shape function. IEEE Trans. Magn. 41(10), 3112–3114 (2005)CrossRef
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Zurück zum Zitat Matsuo, T., Shimasaki, M.: Two types of isotropic vector play models and their rotational hysteresis losses. IEEE Trans. Magn. 44(6), 898–901 (2008)CrossRef Matsuo, T., Shimasaki, M.: Two types of isotropic vector play models and their rotational hysteresis losses. IEEE Trans. Magn. 44(6), 898–901 (2008)CrossRef
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Zurück zum Zitat Matsuo, T.: Anisotropic vector hysteresis model using an isotropic vector play model. IEEE Trans. Magn. 46(8), 3041–3044 (2010)CrossRef Matsuo, T.: Anisotropic vector hysteresis model using an isotropic vector play model. IEEE Trans. Magn. 46(8), 3041–3044 (2010)CrossRef
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Zurück zum Zitat Matsuo, T., Miyamoto, M.: Dynamic and anisotropic vector hysteresis model based on isotropic vector play model for non-oriented silicon steel sheet. IEEE Trans. Magn. 48(2), 215–218 (2012)CrossRef Matsuo, T., Miyamoto, M.: Dynamic and anisotropic vector hysteresis model based on isotropic vector play model for non-oriented silicon steel sheet. IEEE Trans. Magn. 48(2), 215–218 (2012)CrossRef
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Zurück zum Zitat Fujinaga, T., Mifune, T., Matsuo, T.: Anisotropic vector play model incorporating decomposed shape functions. IEEE Trans. Magn. 52(3), 7300604 (2016)CrossRef Fujinaga, T., Mifune, T., Matsuo, T.: Anisotropic vector play model incorporating decomposed shape functions. IEEE Trans. Magn. 52(3), 7300604 (2016)CrossRef
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Zurück zum Zitat Shindo, Y., Miyazaki, T., Matsuo, T.: Cauer circuit representation of the homogenized eddy-current field based on the Legendre expansion for a magnetic sheet. IEEE Trans. Magn. 52(3), 6300504 (2016)CrossRef Shindo, Y., Miyazaki, T., Matsuo, T.: Cauer circuit representation of the homogenized eddy-current field based on the Legendre expansion for a magnetic sheet. IEEE Trans. Magn. 52(3), 6300504 (2016)CrossRef
Metadaten
Titel
Magnetic Hysteresis Represented by Play Model
verfasst von
Tetsuji Matsuo
Copyright-Jahr
2019
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-32-9906-1_13

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