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Time domain sensitivity analysis of electromagnetic quantities utilising FEM for the identification of material conductivity distributions

机译:利用FEM识别材料电导率分布的电磁量时域灵敏度分析

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摘要

Purpose - This paper aims to present effective methods for computing electromagnetic field sensitivity in the time domain versus conductivity perturbations in finite elements. Design/methodology/approach - Two-dimensional cases in linear, isotropic media are considered and two effective methods for sensitivity analysis of a magnetic vector potential in the time domain are described. Findings - The paper finds that the convergence of numerical identification algorithm depends on exact measurement of magnetic flux density. For identification of real cracks the application of data filtering and TSVD regularization of Gauss-Newton algorithm is necessary. Practical implications - The resultant gradient information may be used for solving inverse problems such as the identification of material conductivity distributions. Originality/value - The algorithms described are based on known methods from established circuit theory - incremental circuit and adjoint circuit, these have been expanded to apply in electromagnetic field theory.
机译:目的-本文旨在提出一种有效的方法来计算时域中的电磁场灵敏度与有限元中的电导率扰动。设计/方法/方法-考虑了线性各向同性介质中的二维情况,并描述了两种有效的时域磁矢量电势敏感性分析方法。结论-本文发现数值识别算法的收敛性取决于磁通密度的精确测量。为了识别真实裂缝,必须使用数据过滤和高斯-牛顿算法的TSVD正则化应用。实际意义-所得的梯度信息可用于解决反问题,例如确定材料电导率分布。原创性/价值-所描述的算法基于现有电路理论中的已知方法-增量电路和伴随电路,这些已被扩展以应用于电磁场理论。

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