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Magnetic Field Simulation With Data-Driven Material Modeling

机译:具有数据驱动材料建模的磁场模拟

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摘要

This article develops a data-driven magnetostatic finite-element (FE) solver that directly exploits the measured material data instead of a material curve constructed from it. The distances between the field solution and the measurement points are minimized while enforcing Maxwell's equations. The minimization problem is solved by employing the Lagrange multiplier approach. The procedure wraps the FE method within an outer data-driven iteration. The method is capable of considering anisotropic materials and is adapted to deal with models featuring a combination of exact material knowledge and measured material data. Thereto, three approaches with an increasing level of intrusivity according to the FE formulation are proposed. The numerical results for a quadrupole-magnet model show that data-driven field simulation is feasible and affordable and overcomes the need of modeling the material law.
机译:本文开发了一种数据驱动的磁静电有限元(FE)求解器,其直接利用测量的材料数据而不是由其构成的材料曲线。现场解决方案和测量点之间的距离在强制执行Maxwell等式时最小化。通过采用拉格朗日乘法器方法解决了最小化问题。该过程在外部数据驱动的迭代中包装FE方法。该方法能够考虑各向异性材料,并适于应对具有精确材料知识和测量材料数据组合的模型。在其上,提出了根据Fe配方的患者水平增加的三种方法。四极磁体模型的数值结果表明,数据驱动的场地仿真是可行的,价格实惠的,克服了建模材料法的需要。

著录项

  • 来源
    《IEEE Transactions on Magnetics》 |2020年第8期|1-6|共6页
  • 作者单位

    Tech Univ Darmstadt Inst Teilchenbeschleunigung & Elektromagnet Felde D-64289 Darmstadt Germany|Tech Univ Darmstadt Grad Sch Computat Engn D-64289 Darmstadt Germany|KU Leuven Kulak Wave Propagat & Signal Proc Res Grp B-8500 Kortrijk Belgium;

    Tech Univ Darmstadt Inst Teilchenbeschleunigung & Elektromagnet Felde D-64289 Darmstadt Germany|Tech Univ Darmstadt Grad Sch Computat Engn D-64289 Darmstadt Germany;

    Tech Univ Darmstadt Inst Teilchenbeschleunigung & Elektromagnet Felde D-64289 Darmstadt Germany|Tech Univ Darmstadt Grad Sch Computat Engn D-64289 Darmstadt Germany;

    Tech Univ Darmstadt Inst Teilchenbeschleunigung & Elektromagnet Felde D-64289 Darmstadt Germany|Tech Univ Darmstadt Grad Sch Computat Engn D-64289 Darmstadt Germany;

    TU Braunschweig Inst Dynam & Schwingungen D-38106 Braunschweig Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Data science; data-driven computation; electromagnetic field simulation; finite element (FE) analysis; magnetic materials; scientific computing;

    机译:数据科学;数据驱动计算;电磁场模拟;有限元(FE)分析;磁性材料;科学计算;

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