A study on vector modeling using Preisach and Stoner-Wholfarth Model

Preisach 모델과 Stoner-Wholfarth 모델을 결합한 벡터 모델링 기법에 관한 연구

  • Lee, Jung-Woo (School of Electrical Engineering. Seoul National Univ.) ;
  • Park, Gwan-Soo (Dept. of Electrical Engineering. Korea Maritime Univ.) ;
  • Hahn, Song-Yop (School of Electrical Engineering. Seoul National Univ.)
  • 이정우 (서울대학교 전기공학부) ;
  • 박관수 (한국 해양대학교 전기공학과) ;
  • 한송엽 (서울대학교 전기공학부)
  • Published : 1996.07.22

Abstract

Two current approaches for modeling the vector magnetic hysteretic process are the vector Preisach models and those models based on a system of noninteracting pseudo-particles. The pseudo-particles are intended to mimic the average behavior of real media particles. The simplest switching mechanisms of pseudoparticles is the Stoner-Wholfarth model. The Preisach models are quite precise in specifying the experimental input to the models. The vector properties of the Preisach models are, however, inadequate. This is partly because of the questionable assumptions used in coupling the various vector hysteresis components. Also these models do not include reversible magnetization changes. Unlike Preisach counterpart, the Stoner-Wholfarth model is inherently vector in nature. This is because spatial distribution and switching mechanisms are imposed on the system of pseudo-particles, so they come closer to representing the physical reality. The lack of interaction between pseudo-particles exclude the usefulness of the Stoner-Wholfarth model for small fields when the medium is traversing minor loops. The present work is an attempt at combining the advantages of above two models into one composite model, including the effect of particle interaction.

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