DocumentCode
1455725
Title
Validation of a Complex Permittivity Meter for Porous Media Operating Between 1 and 20 MHz
Author
Bexi, Idris ; Chavanne, Xavier ; Conejo, Elian ; Frangi, Jean-Pierre
Author_Institution
Equipe Dynamique des Fluides Geologiques, Univ. Paris Diderot, Paris, France
Volume
61
Issue
7
fYear
2012
fDate
7/1/2012 12:00:00 AM
Firstpage
2000
Lastpage
2011
Abstract
This paper describes the procedure to qualify an admittance meter as a permittivity meter and a conductivity meter σsensor through validation with liquids over a range of relative permittivity εr values from 1 to 80 and with operating frequencies f between 1 and 20 MHz. The sensor is a capacitor which consists of two parallel cylinders of 10-cm typical dimension. A circuit-based model of the sensor was previously calibrated against accurate electronic components. A discrepancy of 10% is found between the calibration with components and the validation with liquids. All potential errors have been carefully examined: parasitic impedances of the electronic circuit and leads, modifications of liquid permittivity εrliq due to temperature influence, water contamination or relaxation effects, and possible fringing effects with the help of numeric simulations. Forty percent of the discrepancy results from the finite dimensions of the liquid-filled recipient. The fringing effects due to insulating rings at each end of the capacitor seem to be discarded. The analysis of the uncertainty on εrsensor and σsensor shows a relative uncertainty of 3%-5% due in large part to the numerical acquisition of high frequency.
Keywords
calibration; capacitive sensors; contamination; electric admittance measurement; electrical conductivity; measurement uncertainty; permittivity measurement; porous materials; σsensor; admittance meter; calibration; capacitor; circuit-based model; complex permittivity meter; conductivity meter; electronic circuit; electronic component; frequency 1 MHz to 20 MHz; fringing effect; insulating ring; liquid permittivity; measurement uncertainty; parasitic impedance; porous media; potential error; relative permittivity; relaxation effect; size 10 cm; temperature influence; water contamination; Calibration; Capacitors; Permittivity; Permittivity measurement; Soil; Uncertainty; Voltage measurement; Admittance measurement; calibration; capacitive sensor; conductivity; dielectric liquids; electrical circuit theory; permittivity;
fLanguage
English
Journal_Title
Instrumentation and Measurement, IEEE Transactions on
Publisher
ieee
ISSN
0018-9456
Type
jour
DOI
10.1109/TIM.2012.2182855
Filename
6156779
Link To Document