Title :
Circular Layered Waveguide Use for Wideband Complex Permittivity Measurement of Lossy Liquids
Author :
Skresanov, Valery N. ; Eremenko, Zoya E. ; Kuznetsova, Ekaterina S. ; Yun Wu ; Yusheng He
Author_Institution :
O. Ya. Usikov Inst. for Radiophys. & Electron., Kharkiv, Ukraine
Abstract :
The electromagnetic characteristics of a circular metal waveguide with a coaxial cylindrical dielectric insert and a layer of absorbing liquid that fills the space between the insert and the waveguide wall have been studied. The transverse waveguide dimensions are comparable with the wavelength. Dependences of the attenuation and phase coefficients of waveguide modes on the structure size and material properties of the layers are found by solving the boundary value problem. It is shown that based on the proposed layered waveguide with the HE11 type of wave, a measuring cell can be designed to work at either fixed frequency with high differential sensitivity or in the frequency range of the single-mode waveguide operation. The cell is of class of cells with calculable geometry. In this case, a reference liquid with known dielectric properties is not required for absolute measurements of the complex permittivity (CP) of the absorbing liquid. The method of finding the CP of absorbing liquids are verified using electromagnetic modeling with CST Microwave Studio.
Keywords :
absorbing media; boundary-value problems; circular waveguides; coaxial waveguides; dielectric materials; dielectric waveguides; electromagnetic wave propagation; inhomogeneous media; microwave measurement; permittivity measurement; CST Microwave Studio; H E11 type; absorbing liquid; attenuation coefficients; boundary value problem; circular layered waveguide; circular metal waveguide; coaxial cylindrical dielectric; differential sensitivity; electromagnetic modeling; lossy liquids; material property; phase coefficients; structure size; waveguide modes; waveguide wall; wideband complex permittivity measurement; Attenuation; Dielectrics; Frequency measurement; Liquid waveguides; Liquids; Transmission line measurements; Absorbing liquid; attenuation and phase coefficients; circular metal waveguide; complex permittivity (CP); electromagnetic characteristics; microwave frequencies; waveguide;
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
DOI :
10.1109/TIM.2013.2282003