Complex permittivity measurement system for solid materials using complementary frequency selective surfaces

This paper describes a novel method of characterizing complex permittivity using a complementary frequency selective surface (CFSS). The CFSS provides a passband behavior and the change in the passband when a material under test (MUT) is placed adjacent to the CFSS has been used for retrieving of th...

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Main Authors: Chih-Kuo Lee, Shiyu Zhang, Syed Bukhari, Darren Cadman, J. C. Vardaxoglou, William Whittow
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Published: 2020
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Online Access:https://hdl.handle.net/2134/11536452.v1
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spelling rr-article-115364522020-01-03T00:00:00Z Complex permittivity measurement system for solid materials using complementary frequency selective surfaces Chih-Kuo Lee (1384866) Shiyu Zhang (1222824) Syed Bukhari (3914960) Darren Cadman (1250775) J. C. Vardaxoglou (1257960) William Whittow (1224405) dielectric losses dielectric measurement frequency selective surfaces permittivity This paper describes a novel method of characterizing complex permittivity using a complementary frequency selective surface (CFSS). The CFSS provides a passband behavior and the change in the passband when a material under test (MUT) is placed adjacent to the CFSS has been used for retrieving of the complex permittivity of the MUT. The complex permittivity of the MUT are determined based on the measured bandpass resonant frequency and insertion loss of the CFSS with the MUT. This is an amplitudeonly method where phase measurements are not required. This technique offers a convenient, fast, low-cost and nondestructive measurement that is not restricted by the sample size or shape 2020-01-03T00:00:00Z Text Journal contribution 2134/11536452.v1 https://figshare.com/articles/journal_contribution/Complex_permittivity_measurement_system_for_solid_materials_using_complementary_frequency_selective_surfaces/11536452 CC BY 4.0
institution Loughborough University
collection Figshare
topic dielectric losses
dielectric measurement
frequency selective surfaces
permittivity
spellingShingle dielectric losses
dielectric measurement
frequency selective surfaces
permittivity
Chih-Kuo Lee
Shiyu Zhang
Syed Bukhari
Darren Cadman
J. C. Vardaxoglou
William Whittow
Complex permittivity measurement system for solid materials using complementary frequency selective surfaces
description This paper describes a novel method of characterizing complex permittivity using a complementary frequency selective surface (CFSS). The CFSS provides a passband behavior and the change in the passband when a material under test (MUT) is placed adjacent to the CFSS has been used for retrieving of the complex permittivity of the MUT. The complex permittivity of the MUT are determined based on the measured bandpass resonant frequency and insertion loss of the CFSS with the MUT. This is an amplitudeonly method where phase measurements are not required. This technique offers a convenient, fast, low-cost and nondestructive measurement that is not restricted by the sample size or shape
format Default
Article
author Chih-Kuo Lee
Shiyu Zhang
Syed Bukhari
Darren Cadman
J. C. Vardaxoglou
William Whittow
author_facet Chih-Kuo Lee
Shiyu Zhang
Syed Bukhari
Darren Cadman
J. C. Vardaxoglou
William Whittow
author_sort Chih-Kuo Lee (1384866)
title Complex permittivity measurement system for solid materials using complementary frequency selective surfaces
title_short Complex permittivity measurement system for solid materials using complementary frequency selective surfaces
title_full Complex permittivity measurement system for solid materials using complementary frequency selective surfaces
title_fullStr Complex permittivity measurement system for solid materials using complementary frequency selective surfaces
title_full_unstemmed Complex permittivity measurement system for solid materials using complementary frequency selective surfaces
title_sort complex permittivity measurement system for solid materials using complementary frequency selective surfaces
publishDate 2020
url https://hdl.handle.net/2134/11536452.v1
_version_ 1797822882607267840