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A dynamic magnetostrictive model based on the Jiles–Atherton hysteresis model and field separation approach

  • Yaqi Wang [1] ; Lin Li [1] ; Xiaojun Zhao [1]
    1. [1] North China Electric Power University

      North China Electric Power University

      China

  • Localización: Compel: International journal for computation and mathematics in electrical and electronic engineering, ISSN 0332-1649, Vol. 42, Nº Extra 1, 2023, págs. 219-229
  • Idioma: inglés
  • Enlaces
  • Resumen
    • Purpose – The purpose of this paper is to combine the Jiles-Atherton (J-A) hysteresis model with the field separation approach to realize the accurate simulation of dynamic magnetostrictive characteristics of silicon steel sheet.

      Design/methodology/approach – First, the energy loss of silicon steel sheet is divided into hysteresis loss Why, classical eddy current loss Wed and anomalous loss Wan according to the statistical theory of losses. The Why is calculated by static J-A hysteresis model, Wed and Wan are calculated by the analytical formulae. Then, based on the field separation approach, the dynamic magnetic field is derived. Finally, a new dynamic magnetostrictive model is proposed by means of the quadratic domain rotation model.

      Findings – Comparison of simulation and experimental results verifies that the proposed model has high accuracy and strong universality.

      Originality/value – The proposed method improves the existing method’s problem of relying on too much experimental data, and the method ensures the calculation accuracy, parameter identification accuracy and engineering practicability. Consequently, the presented work greatly facilitates further explorations and studies on simulation of dynamic magnetostrictive characteristics of silicon steel sheet.


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