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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Full-Wave Hybrid Technique for 3-D Isotropic-Chiral-Material Discontinuities in Rectangular Waveguides: Theory and Experiment
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Full-Wave Hybrid Technique for 3-D Isotropic-Chiral-Material Discontinuities in Rectangular Waveguides: Theory and Experiment

机译:矩形波导中3-D各向同性-手性材料间断的全波混合技术:理论与实验

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摘要

Numerical results obtained using a full-wave hybrid technique (comprising a new formulation of the coupled-mode method and the mode-matching method) for treating 3-D isotropic- chiral-material discontinuities in rectangular wave guides with perfect electrically conducting walls were compared with experimental data. For that purpose, samples of an isotropic chiral material were manufactured as composite materials. These samples were then fully characterized in the $X$-band. The measured constitutive parameters were used in the full-wave hybrid technique to predict the scattering parameters of three different structures—each a waveguide filled partially with the isotropic chiral material. The scattering parameters were also measured. The predicted and measured scattering parameters were in reasonably good agreement.
机译:比较了使用全波混合技术(包括耦合模式方法和模式匹配方法的新公式)处理具有完美导电壁的矩形波导中的3D各向同性手性材料间断的数值结果与实验数据。为此,将各向同性手性材料的样品制造为复合材料。然后在$ X $波段中充分表征了这些样本。在全波混合技术中,将测得的本构参数用于预测三种不同结构的散射参数-每个结构均部分填充有各向同性手性材料。还测量了散射参数。预测和测得的散射参数基本吻合良好。

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