校准过程对开放式同轴探头复杂介电常数测量的影响

Ismail Dilman, Sulayman Joof, Cemanur Aydnalp, M. N. Akıncı, M. Çayören
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引用次数: 2

摘要

在本文中,我们研究了开放式同轴探头(OECP)的短路校准步骤,这是测量被测材料(MUT)的复介电常数(CDP)时面临的主要挑战之一。短路不准确的影响可以通过另一种校准方法减轻,即利用经合组织的校准数学模型并使用已知液体代替常用的金属短路程序。在校准过程中,分别使用三种已知液体丙酮、丁醇和2-丙醇作为短路材料,比较了甲酰胺和二甲基亚砜(DMSO)作为MUT的CDP结果。利用Ansys HFSS仿真程序在0.5 ~ 6ghz频率范围内对MUT和校准液进行了仿真,分辨率为0.25 GHz。市售的Speag DAK 3.5 mm OECP具有类似的材料规格和尺寸。为了从探测器- mut界面反射系数(rc)中提取cdp,实现了一种基于多频高斯-牛顿反演的方法。结果表明,在校准过程中选择合适的校准材料对于确保可靠的CDP结果非常重要。该研究还表明,需要进一步的数值研究来解释校准数学模型与CDP之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Calibration Process on Complex Dielectric Permittivity Measurements with Open-Ended Coaxial Probes
In this paper, we investigate the short-circuit calibration step of the open-ended coaxial probe (OECP) which is one of the major challenges when measuring complex dielectric permittivity (CDP) of a material under test (MUT). The effect of short-circuit inaccuracy can be mitigated by an alternative calibration approach by taking advantage of the calibration mathematical model of the OECP and using known liquid instead of the commonly used metallic short-circuit procedure. The CDP results of formamide and Dimethyl Sulfoxide (DMSO) as the MUT are compared using three known liquids acetone, butanol, and 2-propanol respectively, as the shorting material during the calibration procedure. The MUT and calibration liquids were simulated with Ansys HFSS simulation program from 0.5 to 6 GHz frequency range with a resolution of 0.25 GHz. The commercially available Speag DAK 3.5-mm OECP was replicated with similar material specifications and dimensions. In order to retrieve the CDPs from reflection coefficients (RCs) obtained from the probe-MUT interface, a multi-frequency Gauss-Newton inversion method based is implemented. The results demonstrate that it is important to select an appropriate calibration material during the calibration procedure to ensure reliable CDP results. The study also indicates that further numerical investigation is required to explain the relationship between the calibration mathematical model and CDP.
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