Enhanced accuracy and high sensitivity in dielectric characterization through a compact and miniaturized metamaterial inspired microwave sensor

This academic paper introduces a novel sensor known as the Planar Microstrip-based Triple Ring Bridge Complementary Split Ring Resonator (TRB-CSRR) sensor. The main objective of this sensor is to determine the permittivity and thickness of solid dielectric substances. The TRB-CSRR sensor is meticulo...

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Main Authors: Al Gburi, Ahmed Jamal Abdullah, Singh, Kunal Kumar, Singh, Ajit Kumar, Mahto, Santosh Kumar, Sinha, Rashmi
Format: Article
Language:English
Published: Elsevier B.V. 2024
Online Access:http://eprints.utem.edu.my/id/eprint/27597/2/0270221032024124822736.PDF
http://eprints.utem.edu.my/id/eprint/27597/
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Institution: Universiti Teknikal Malaysia Melaka
Language: English
id my.utem.eprints.27597
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institution Universiti Teknikal Malaysia Melaka
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continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
description This academic paper introduces a novel sensor known as the Planar Microstrip-based Triple Ring Bridge Complementary Split Ring Resonator (TRB-CSRR) sensor. The main objective of this sensor is to determine the permittivity and thickness of solid dielectric substances. The TRB-CSRR sensor is meticulously designed to resonate precisely at a frequency of 4.86 GHz, achieving a significant notch depth of −33.5 dB. This configuration displays an enhanced average relative sensitivity of 20.2%. The study undertakes numerical assessments across various scenarios, encompassing situations where the sensor interacts with diverse dielectric materials. These assessments yield insights into alterations in resonant frequencies. By meticulously refining the design, the sensor's capability to confine electric fields precisely at the resonant frequency is amplified, ultimately resulting in heightened sensitivity towards dielectric characteristics. The sensor's efficacy is tested using materials featuring relative permittivity values spanning from 1.006 to 12.9, while consistently adhering to dimensions of 5 mm×5 mm×1.6 mm. To validate the conceptual frame-work, a physical sensor is fabricated, and its response is gauged through the utilization of a vector network analyzer (VNA-AV3672D). Employing curve fitting methodologies, alterations in resonance frequencies due to interactions with the tested materials are presented, underscoring the impact of permittivity and thickness. The outcomes derived from simulations, empirical measurements, and calculations display a robust alignment.
format Article
author Al Gburi, Ahmed Jamal Abdullah
Singh, Kunal Kumar
Singh, Ajit Kumar
Mahto, Santosh Kumar
Sinha, Rashmi
spellingShingle Al Gburi, Ahmed Jamal Abdullah
Singh, Kunal Kumar
Singh, Ajit Kumar
Mahto, Santosh Kumar
Sinha, Rashmi
Enhanced accuracy and high sensitivity in dielectric characterization through a compact and miniaturized metamaterial inspired microwave sensor
author_facet Al Gburi, Ahmed Jamal Abdullah
Singh, Kunal Kumar
Singh, Ajit Kumar
Mahto, Santosh Kumar
Sinha, Rashmi
author_sort Al Gburi, Ahmed Jamal Abdullah
title Enhanced accuracy and high sensitivity in dielectric characterization through a compact and miniaturized metamaterial inspired microwave sensor
title_short Enhanced accuracy and high sensitivity in dielectric characterization through a compact and miniaturized metamaterial inspired microwave sensor
title_full Enhanced accuracy and high sensitivity in dielectric characterization through a compact and miniaturized metamaterial inspired microwave sensor
title_fullStr Enhanced accuracy and high sensitivity in dielectric characterization through a compact and miniaturized metamaterial inspired microwave sensor
title_full_unstemmed Enhanced accuracy and high sensitivity in dielectric characterization through a compact and miniaturized metamaterial inspired microwave sensor
title_sort enhanced accuracy and high sensitivity in dielectric characterization through a compact and miniaturized metamaterial inspired microwave sensor
publisher Elsevier B.V.
publishDate 2024
url http://eprints.utem.edu.my/id/eprint/27597/2/0270221032024124822736.PDF
http://eprints.utem.edu.my/id/eprint/27597/
https://pdf.sciencedirectassets.com/271352/1-s2.0-S0924424724X00047/1-s2.0-S0924424724002644/main.pdf?X-Amz-Security-Token=IQoJb3JpZ2luX2VjELf%2F%2F%2F%2F%2F%2F%2F%2F%2F%2FwEaCXVzLWVhc3QtMSJIMEYCIQCnghDe1U5r6Ge7mD9DpaDxmcKw6tIp8AwKKcqbsCnBLQIhAJuIXf%2Bbj0km9TLvdsk1WpoZbT1C%2FUQIk%2B8Yb9t%2BNc1SKrMFCHAQBRoMMDU5MDAzNTQ2ODY1Igz9vg8BgpsW6StBgvEqkAWvLBzdmSEk1mf2OD2PEZgIa2CgxrmcAqjxu4MY4z3o7VGC8JZgvBNqLkKaAeHD5BDsjmuz8Qza56vQzXEC0vYlh6ciH%2B%2B%2BAUK4CbQqjaGg%2BnMAeRHH2oEWFhlyAdR%2F6hDM1DAHLlIjSYdHr5%2BupP5eLX9AYpI94wvMxKLwIX3xjShEh9GPZ45gfUw7ww9Xu3UV%2BXHldT9CN8C%2B8hM0Kxg%2FUV5tJkxut3QcpGMHYXscgB9flKXT2t1omuVAljX58TpdxlFxUmkb1qMGq2BB0wZa%2FyQ1L6qRm1IAmc2Ik3d3WbUxsg5kbmzrUE4nmhrtxvJovcTEEdc3QwYP81jim%2B185VWqtZfQCeItpiznW2zK5yp2CkbhMGztbdU0vQzOQ0thWu5XtfIZ1Fxu1rHdjaWt4dJOKqOx9P7VWKO5UMqWtjJpEaKdLfQuh5ITYZ5fX%2FbwVstz3nFfIIvAqMjKA941WwI04xasBj%2FMSbuGZfElZAmFGFWTmeytF3x2k247pTpuDLQ%2Fm9o0OdmkVfmmDppBskowEDEUz2jhgHADFZSZQQ99g10tQkN9vtTpFgNHdsMETjxTW9KBB88KFEsGhEt3Of7sXKzg%2Bc0%2FomArX%2F2GYzbrwVf92NHn7NGX%2BUH5ttm3RpssQEe3yYQoCi3l9Ffn8%2Bxm5QzGDqidtt4DzsVemJ8ECtNiJmDqHhGAsg4dpYo7VwD2OTZcXOPvPx2C%2Fe%2BUiVeBQ07yad9wUudSysV%2BGFOOW2SAfIAIZvPlePBqMaume2Dam3JPV0bojJ5l9enh9TCf0nNJlGxfwPMe%2BoB7IHoSBkZxXRSIur5gLuyfmv75YIhelF1f3ithNh26t%2BtkevzUN86sA%2BC0JjpP%2B318NTCHy460BjqwAYnVshQSZiCcx%2FXdezybc8yJyQtTCoNrY4TSjfrcficOZ4s%2Buq2HbJ%2B5qRQIbmXRqOxBXu4agrEKn3YLqqoDJdJoCMdTAz6Ce4eJM%2Fh5BU81wAxwmxf%2BNbQTOKZgjAjUy2hhksRHvPS2zFtyA0GEv4zskUjMDpjqHk9QSMTFRM9%2FzwXm1JalF6uqcLAs8c0oAZjTwUDlHluDXeqPNa%2B9k%2BqvbiEb2i9oslgHV8%2BGMNnb&X-Amz-Algorithm=AWS4-HMAC-SHA256&X-Amz-Date=20240702T075400Z&X-Amz-SignedHeaders=host&X-Amz-Expires=300&X-Amz-Credential=ASIAQ3PHCVTYUFPFYUEJ%2F20240702%2Fus-east-1%2Fs3%2Faws4_request&X-Amz-Signature=512ada607715f2029c41133d0f498e4b9f22b12d6096b1ce8e0cfd8439375837&hash=9de5d72a067998cb51c1916bb750ae4f28c5ad0ca4c16ab5aa3150d1a49acbf3&host=68042c943591013ac2b2430a89b270f6af2c76d8dfd086a07176afe7c76c2c61&pii=S0924424724002644&tid=spdf-baa8d629-468b-41d2-a174-7990c8ac6288&sid=967c4a2e523d74452e388778fba30ff2b94agxrqb&type=client&tsoh=d3d3LnNjaWVuY2VkaXJlY3QuY29t&ua=031c575f0d0a5e5506&rr=89cd10b7ec3413d8&cc=my
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spelling my.utem.eprints.275972024-07-23T09:13:12Z http://eprints.utem.edu.my/id/eprint/27597/ Enhanced accuracy and high sensitivity in dielectric characterization through a compact and miniaturized metamaterial inspired microwave sensor Al Gburi, Ahmed Jamal Abdullah Singh, Kunal Kumar Singh, Ajit Kumar Mahto, Santosh Kumar Sinha, Rashmi This academic paper introduces a novel sensor known as the Planar Microstrip-based Triple Ring Bridge Complementary Split Ring Resonator (TRB-CSRR) sensor. The main objective of this sensor is to determine the permittivity and thickness of solid dielectric substances. The TRB-CSRR sensor is meticulously designed to resonate precisely at a frequency of 4.86 GHz, achieving a significant notch depth of −33.5 dB. This configuration displays an enhanced average relative sensitivity of 20.2%. The study undertakes numerical assessments across various scenarios, encompassing situations where the sensor interacts with diverse dielectric materials. These assessments yield insights into alterations in resonant frequencies. By meticulously refining the design, the sensor's capability to confine electric fields precisely at the resonant frequency is amplified, ultimately resulting in heightened sensitivity towards dielectric characteristics. The sensor's efficacy is tested using materials featuring relative permittivity values spanning from 1.006 to 12.9, while consistently adhering to dimensions of 5 mm×5 mm×1.6 mm. To validate the conceptual frame-work, a physical sensor is fabricated, and its response is gauged through the utilization of a vector network analyzer (VNA-AV3672D). Employing curve fitting methodologies, alterations in resonance frequencies due to interactions with the tested materials are presented, underscoring the impact of permittivity and thickness. The outcomes derived from simulations, empirical measurements, and calculations display a robust alignment. Elsevier B.V. 2024-03 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/27597/2/0270221032024124822736.PDF Al Gburi, Ahmed Jamal Abdullah and Singh, Kunal Kumar and Singh, Ajit Kumar and Mahto, Santosh Kumar and Sinha, Rashmi (2024) Enhanced accuracy and high sensitivity in dielectric characterization through a compact and miniaturized metamaterial inspired microwave sensor. Sensors and Actuators A: Physical, 370. 01-09. ISSN 0924-4247 https://pdf.sciencedirectassets.com/271352/1-s2.0-S0924424724X00047/1-s2.0-S0924424724002644/main.pdf?X-Amz-Security-Token=IQoJb3JpZ2luX2VjELf%2F%2F%2F%2F%2F%2F%2F%2F%2F%2FwEaCXVzLWVhc3QtMSJIMEYCIQCnghDe1U5r6Ge7mD9DpaDxmcKw6tIp8AwKKcqbsCnBLQIhAJuIXf%2Bbj0km9TLvdsk1WpoZbT1C%2FUQIk%2B8Yb9t%2BNc1SKrMFCHAQBRoMMDU5MDAzNTQ2ODY1Igz9vg8BgpsW6StBgvEqkAWvLBzdmSEk1mf2OD2PEZgIa2CgxrmcAqjxu4MY4z3o7VGC8JZgvBNqLkKaAeHD5BDsjmuz8Qza56vQzXEC0vYlh6ciH%2B%2B%2BAUK4CbQqjaGg%2BnMAeRHH2oEWFhlyAdR%2F6hDM1DAHLlIjSYdHr5%2BupP5eLX9AYpI94wvMxKLwIX3xjShEh9GPZ45gfUw7ww9Xu3UV%2BXHldT9CN8C%2B8hM0Kxg%2FUV5tJkxut3QcpGMHYXscgB9flKXT2t1omuVAljX58TpdxlFxUmkb1qMGq2BB0wZa%2FyQ1L6qRm1IAmc2Ik3d3WbUxsg5kbmzrUE4nmhrtxvJovcTEEdc3QwYP81jim%2B185VWqtZfQCeItpiznW2zK5yp2CkbhMGztbdU0vQzOQ0thWu5XtfIZ1Fxu1rHdjaWt4dJOKqOx9P7VWKO5UMqWtjJpEaKdLfQuh5ITYZ5fX%2FbwVstz3nFfIIvAqMjKA941WwI04xasBj%2FMSbuGZfElZAmFGFWTmeytF3x2k247pTpuDLQ%2Fm9o0OdmkVfmmDppBskowEDEUz2jhgHADFZSZQQ99g10tQkN9vtTpFgNHdsMETjxTW9KBB88KFEsGhEt3Of7sXKzg%2Bc0%2FomArX%2F2GYzbrwVf92NHn7NGX%2BUH5ttm3RpssQEe3yYQoCi3l9Ffn8%2Bxm5QzGDqidtt4DzsVemJ8ECtNiJmDqHhGAsg4dpYo7VwD2OTZcXOPvPx2C%2Fe%2BUiVeBQ07yad9wUudSysV%2BGFOOW2SAfIAIZvPlePBqMaume2Dam3JPV0bojJ5l9enh9TCf0nNJlGxfwPMe%2BoB7IHoSBkZxXRSIur5gLuyfmv75YIhelF1f3ithNh26t%2BtkevzUN86sA%2BC0JjpP%2B318NTCHy460BjqwAYnVshQSZiCcx%2FXdezybc8yJyQtTCoNrY4TSjfrcficOZ4s%2Buq2HbJ%2B5qRQIbmXRqOxBXu4agrEKn3YLqqoDJdJoCMdTAz6Ce4eJM%2Fh5BU81wAxwmxf%2BNbQTOKZgjAjUy2hhksRHvPS2zFtyA0GEv4zskUjMDpjqHk9QSMTFRM9%2FzwXm1JalF6uqcLAs8c0oAZjTwUDlHluDXeqPNa%2B9k%2BqvbiEb2i9oslgHV8%2BGMNnb&X-Amz-Algorithm=AWS4-HMAC-SHA256&X-Amz-Date=20240702T075400Z&X-Amz-SignedHeaders=host&X-Amz-Expires=300&X-Amz-Credential=ASIAQ3PHCVTYUFPFYUEJ%2F20240702%2Fus-east-1%2Fs3%2Faws4_request&X-Amz-Signature=512ada607715f2029c41133d0f498e4b9f22b12d6096b1ce8e0cfd8439375837&hash=9de5d72a067998cb51c1916bb750ae4f28c5ad0ca4c16ab5aa3150d1a49acbf3&host=68042c943591013ac2b2430a89b270f6af2c76d8dfd086a07176afe7c76c2c61&pii=S0924424724002644&tid=spdf-baa8d629-468b-41d2-a174-7990c8ac6288&sid=967c4a2e523d74452e388778fba30ff2b94agxrqb&type=client&tsoh=d3d3LnNjaWVuY2VkaXJlY3QuY29t&ua=031c575f0d0a5e5506&rr=89cd10b7ec3413d8&cc=my 10.1016/j.sna.2024.115271