DocumentCode
1248905
Title
Calibration-Independent and Position-Insensitive Transmission/Reflection Method for Permittivity Measurement With One Sample in Coaxial Line
Author
Caijun, Zhao ; Quanxing, Jiang ; Shenhui, Jing
Author_Institution
Electromagn. Compatibility Lab., Southeast Univ., Nanjing, China
Volume
53
Issue
3
fYear
2011
Firstpage
684
Lastpage
689
Abstract
In recent decades, the calibration-independent methods have successfully been employed to determine the complex permittivity of dielectric materials without the need of calibration before measurements. However, these methods experience their respective problems from the requirement of two samples, the movement of the sample, or the introduction of extra assistant transmission lines. To eliminate these problems, a simple method is proposed based on transmission/reflection method in this paper. This method can afford high accurate measurement results without singularities by only two measurements of uncalibrated scattering parameters with one sample and one line. One measurement is for the empty fixture and the other for the same fixture holding the sample at a single position. Additionally, the principle of the proposed method ensures it independent of the fixture and the sample position. Some experiments were made using the vector network analyzer 8753ES and a Φ 16-mm coaxial line fixture. The proposed method is validated by the measurements of the permittivity of polytetrafluoro ethylene from 2 to 6 GHz.
Keywords
calibration; coaxial cables; dielectric materials; electromagnetic wave scattering; network analysers; permittivity; transmission lines; waveguides; 8753ES vector network analyzer; calibration-independent method; coaxial line; dielectric material permittivity; extra assistant transmission lines; frequency 2 GHz to 6 GHz; permittivity measurement; polytetrafluoro ethylene; position-insensitive transmission-reflection method; uncalibrated scattering parameter measurement; waveguide; Calibration; Materials; Permittivity; Permittivity measurement; Position measurement; Transmission line measurements; Calibration; coaxial line; permittivity measurement; scattering parameters;
fLanguage
English
Journal_Title
Electromagnetic Compatibility, IEEE Transactions on
Publisher
ieee
ISSN
0018-9375
Type
jour
DOI
10.1109/TEMC.2011.2156416
Filename
5898400
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