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Microwave Sensors for Dielectric Sample Measurement Based on Coupled-Line Section

机译:基于耦合线截面的用于介电样品测量的微波传感器

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摘要

In this paper, a novel class of sensors composed of coupled-line sections dedicated for complex permittivity measurements of dielectric samples have been proposed. The end-shorted and open-ended coupled-line sections have been used as sensing elements for nonresonant and nondestructive measurements allowing for characterization of dielectric samples. It has been shown that by utilization of an iterative procedure, the complex permittivity of a dielectric material under test can be determined based on the measured complex odd-mode effective permittivity of the system. Since the complex odd-mode effective permittivity is mainly related to the mutual capacitance between coupled strips, high sensitivity on the covering sample has been obtained and the measured sample can be as narrow as the spacing between the coupled strips. The proposed sensors have been theoretically investigated and experimentally validated. The obtained results have been compared and the sensors’ advantages and limitations have been discussed. The obtained measurement results have proved the correctness and usefulness of the proposed approach.
机译:在本文中,提出了一种新型的由耦合线部分组成的传感器,专用于介电样品的复介电常数测量。端部短路和端部耦合线段已用作非谐振和无损测量的感测元件,从而可以表征介电样品。已经表明,通过使用迭代过程,可以基于所测量的系统的复奇数模式有效介电常数来确定被测介电材料的复介电常数。由于复数奇模有效介电常数主要与耦合条之间的互电容有关,因此在覆盖样品上获得了高灵敏度,并且所测样品可以与耦合条之间的间隔一样窄。所提出的传感器已经过理论研究和实验验证。比较了获得的结果,并讨论了传感器的优点和局限性。获得的测量结果证明了该方法的正确性和实用性。

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