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首页> 外文期刊>Sensors and Actuators, A. Physical >Reference-plane invariant transmission-reflection method for measurement of constitutive parameters of liquid materials
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Reference-plane invariant transmission-reflection method for measurement of constitutive parameters of liquid materials

机译:测量液体材料本构参数的参考面不变透射反射法

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We propose a new transmission-reflection method for measuring constitutive parameters of liquid samples inside an asymmetric measurement cell (a sample over a low-loss holder in vertical position inside an empty waveguide section). We derived reference-plane invariant expressions for constitutive parameters measurement of liquid samples from reference-plane dependent scattering parameters. In addition, we also applied a simple approach for unique determination of transformation factor and reference-plane distances. After, we also investigated how the performance of the proposed method could be improved by performing a differential uncertainty analysis. From this analysis, we found the following key results: (a) the accuracy of the proposed method could be enhanced for low-loss liquid samples by using thicker samples, and (b) the effect of constitutive parameters and the length of the (low-loss) sample holder on constitutive parameters measurements of liquid samples by the proposed method is a key parameter in increasing the accuracy of the measurements. Finally, we performed constitutive parameter measurements of distilled water and methanol to validate the proposed method and compared the proposed method with similar methods in the literature. From the measurements, we note that our method is especially useful for liquid sample measurements when the reference-plane transformation factors are not known a priori and/or if the measurements are carried out over a high frequency range.
机译:我们提出了一种新的透射反射方法,用于测量非对称测量单元(空波导段内垂直位置的低损耗支架上的样品)中液体样品的本构参数。我们从依赖于参考平面的散射参数中得出了用于液体样品的本构参数测量的参考平面不变表达式。此外,我们还应用了一种简单的方法来唯一确定变换因子和参考平面距离。之后,我们还研究了如何通过执行差分不确定性分析来改善所提出方法的性能。通过此分析,我们发现以下主要结果:(a)通过使用较厚的样品,可以提高低损耗液体样品的拟议方法的准确性,并且(b)本构参数和长度的影响(低损失)样品架,通过所提出的方法对液体样品的本构参数进行测量是提高测量精度的关键参数。最后,我们对蒸馏水和甲醇进行了本构参数测量以验证该方法,并将该方法与文献中的类似方法进行了比较。从测量中我们注意到,当先验未知参考平面转换因子和/或在高频范围内进行测量时,我们的方法对于液体样品测量特别有用。

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