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Shielding Effectiveness Measurements for Ferromagnetic Shields

机译:铁磁屏蔽的屏蔽效能测量

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摘要

This paper proposes a new way to measure the shielding effectiveness of ferromagnetic shields. The procedure combines an experimental characterization of the shielding material and numerical simulations. In a first case, magnetic hysteresis is reduced to a series of equivalent $B$ –$H$ linear relations through an optimization procedure that is applied to a measured set of symmetric minor loops, and an equivalent multilayer linear medium is defined through a subsequent iterative procedure. In a second case, magnetic hysteresis is reduced to a simple $B$–$H$ nonlinear relation, obtaining an equivalent nonlinear shield. In both cases, the obtained results are compared with the direct measurements of the shielding effectiveness at different operating frequencies, showing good agreement and the validity of the proposed method. A comparison and a discussion on the harmonic content of the attenuated field for the investigated shield geometry are reported. The same analysis is carried out for a basic diffusion problem, comparing the results with those obtained by the use of a Preisach model.
机译:本文提出了一种测量铁磁屏蔽层屏蔽效果的新方法。该程序结合了屏蔽材料的实验特性和数值模拟。在第一种情况下,通过将优化过程应用于一系列测量的对称次要环路,将磁滞减小为一系列等效的$ B $ – $ H $线性关系,并通过后续步骤定义等效的多层线性介质迭代过程。在第二种情况下,磁滞减小为简单的$ B $ – $ H $非线性关系,从而获得等效的非线性屏蔽。在这两种情况下,将获得的结果与在不同工作频率下的屏蔽效果的直接测量结果进行比较,显示出良好的一致性和所提出方法的有效性。报告了对所研究的屏蔽几何形状的衰减场谐波含量的比较和讨论。对基本扩散问题进行了相同的分析,将结果与使用Preisach模型获得的结果进行了比较。

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