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首页> 外文期刊>Electromagnetic Compatibility, IEEE Transactions on >Complex Permittivity and Permeability Measurements and Finite-Difference Time-Domain Simulation of Ferrite Materials
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Complex Permittivity and Permeability Measurements and Finite-Difference Time-Domain Simulation of Ferrite Materials

机译:铁氧体材料的复介电常数和磁导率测量以及时域有限差分模拟

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摘要

A methodology to efficiently design products based on magneto-dielectric (ferrite) materials with desirable frequency responses that satisfy electromagnetic compatibility and signal integrity requirements over RF and microwave bands is presented here. This methodology is based on an analytical model of a composite magneto-dielectric material with both frequency-dispersive permittivity and permeability. A procedure for extracting complex permittivity and permeability of materials from experimental data is based on transmission line measurements. The genetic algorithm is applied for approximating both permittivity and permeability of materials by series of Debye frequency dependencies, so that they are represented as “double-Debye materials” (DDM). The DDM is incorporated in the finite-difference time-domain numerical codes by the auxiliary differential equation approach.
机译:本文介绍了一种有效设计基于磁电介质(铁氧体)的产品的方法,该材料具有理想的频率响应,可以满足RF和微波频段上的电磁兼容性和信号完整性要求。该方法基于具有频散介电常数和磁导率的复合磁电介质材料的分析模型。从实验数据中提取材料的复介电常数和磁导率的过​​程是基于传输线测量的。遗传算法被应用来通过一系列的德拜频率相关性来近似估计材料的介电常数和磁导率,从而将它们表示为“双德拜材料”(DDM)。通过辅助微分方程方法将DDM合并到有限差分时域数字代码中。

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