Title :
Testing dielectric properties of tissue-equivalent liquid using open-ended coaxial line technique based on the transverse electromagnetic model
Author :
Kang Zhang ; Tong Wu ; Jun-heng Teng
Author_Institution :
Div. of Energy & Environ. Meas., China Nat. Inst. of Metrol., Beijing, China
Abstract :
The experiments of the open-ended coaxial sensor used in the liquid dielectric properties testing based on the transverse electromagnetic (TEM) model are presented. In this approach, the input admittance at the coaxial opening end is approximated as a polynomial of the complex wave number in the liquid under test (LUT) that terminates the sensor, which gives advantageous to de-embedding the unknown complex permittivity by iteratively solving an algebraic equation. To avoid the inconveniences in using a short circuit reference load, the saline solution with known complex dielectric constants given by the empirical dispersion equations is used as an alternative in the calibration. The performance of measurements on dilute saline water and a 900MHz phantom head tissue-equivalent liquid (TEL) are verified by comparisons with the reference data.
Keywords :
1/f noise; bioelectric potentials; biological tissues; brain; calibration; iterative methods; permittivity; phantoms; polynomials; short-circuit currents; algebraic equation; calibration; coaxial opening end; complex dielectric constants; complex wave number; deembedding; dilute saline water measurements; empirical dispersion equations; frequency 900 MHz; input admittance; iterative solving; liquid dielectric properties; open-ended coaxial line technique; open-ended coaxial sensor; phantom head tissue-equivalent liquid; polynomial; saline solution; short circuit reference load; testing dielectric properties; tissue-equivalent liquid; transverse electromagnetic model; unknown complex permittivity; Calibration; Dielectric measurement; Equations; Frequency measurement; Liquids; Mathematical model; Permittivity; calibration; input admittance; open-ended coaxial line; specific absorption rate; tissue-equivalent liquid;
Conference_Titel :
Biomedical Engineering and Informatics (BMEI), 2014 7th International Conference on
Conference_Location :
Dalian
Print_ISBN :
978-1-4799-5837-5
DOI :
10.1109/BMEI.2014.7002826