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In-Situ Measurement of Complex EM Parameters of Dispersive Absorbing Materials by Coaxial-Probe-Based Frequency-Variation Method

机译:基于同轴探针的频率变化法原位测量分散吸收材料的复杂电磁参数

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摘要

Frequency-variation method (FVM), reported in [1], was further studied for simultaneously measuring the both complex permittivity and complex permeability by intentionally changing the test frequency to obtain different reflections. An enhanced coaxial-probe-based in-situ measurement system has been established. The spectral domain full-wave model is derived to take place of the quasi-static one. A novel coaxial probe is designed so that the one-port calibration could be performed with Agilent-supplied precise cal-kit instead of the liquid standard. Criterions for a right order of the interpolation polynomial used to approximate the frequency-dependent EM parameters; measures to reduce the residual mismatch errors and random error in reflection measurements and to suppress the ambiguities in solving the transcendent equation system were experimentally studied to resolve the problems and improve the accuracy in dispersive absorbing materials' test. Several typical dispersive absorbing coatings have been tested via FVM. The good comparison between the measured results and reference ones validate the feasibility of the proposed improved technique.
机译:文献[1]中报道了频率变化方法(FVM),该方法通过有意改变测试频率以获得不同的反射率,同时测量复介电常数和复磁导率。已经建立了一种基于同轴探针的增强型原位测量系统。推导了谱域全波模型来代替准静态模型。设计了一种新颖的同轴探头,因此可以使用安捷伦提供的精确校准套件代替液体标准品进行单端口校准。插值多项式的正确阶数准则,用于近似于频率相关的EM参数;通过实验研究了减少反射测量中的残余失配误差和随机误差,以及抑制解决超越方程组的歧义的措施,以解决这些问题并提高色散吸收材料测试的准确性。几种典型的分散吸收涂料已通过FVM进行了测试。测量结果与参考值之间的良好比较验证了所提出的改进技术的可行性。

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