Permeability and permittivity uncertainty effects in modeling absorbing coatings and ferrites on cables

Jing Li, M. Koledintseva, A. Razmadze, A. Gafarov, Yaojiang Zhang, J. Drewniak, J. Fan, J. Shenhui
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引用次数: 5

Abstract

Sensitivity analysis of the performance of thin absorbing coatings and ferrite chokes on cables to the variation in dielectric and magnetic properties of materials is carried out. This variation corresponds to possible uncertainty in measuring complex permittivity and permeability of materials. The analysis in this paper is done numerically using the 2D-FEM code. The modeled parameters are input impedance and EMI radiation reduction when applying absorbing materials and ferrite chokes on the cables, represented as monopole antenna rods. The material parameters of absorbing materials and ferrites used in this study were measured using the standard 7-mm coaxial air line. Higher sensitivity of the modeled parameters to the uncertainty of measuring complex permeability of absorbing materials and ferrites, and lower to the uncertainty of measuring complex permittivity, even in the case of high-permittivity absorbing coatings, have been demonstrated.
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电缆吸波涂层和铁氧体建模中磁导率和介电常数的不确定性影响
对电缆上的薄吸收涂层和铁氧体扼流圈的性能对材料介电性能和磁性能变化的敏感性进行了分析。这种变化对应于测量材料复介电常数和磁导率时可能出现的不确定度。本文采用二维有限元程序进行数值分析。建模参数是在电缆上施加吸收材料和铁氧体扼流圈时的输入阻抗和EMI辐射降低,表示为单极天线杆。采用标准的7mm同轴气路测量吸波材料和铁氧体的材料参数。模型参数对吸收材料和铁氧体的复磁导率测量的不确定度有较高的敏感性,而对复介电常数测量的不确定度有较低的敏感性,即使在高介电常数吸收涂层的情况下也是如此。
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