Sensitivity Study of a Coplanar Waveguide Antenna-Based Sensor for Hydration Monitoring
This paper presents a study on a coplanar waveguide (CPW) antenna-based sensor operating at frequency of 2.4 GHz. Designed with a compact size of 30 mm x 30 mm, the antenna-based sensor utilizes filtered paper as its substrate material. The performance analysis of the CPW antenna-based sensor focuse...
Published in: | 2024 IEEE 7th International Conference on Electrical, Electronics, and System Engineering: Dissemination and Advancement of Engineering Education using Artificial Intelligence, ICEESE 2024 |
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2-s2.0-85217427026 Mozi A.M.; Razali A.R.; Rahman N.H.A.; Azemi S.N.; Faudzi N.M.; Ibrahim A. Sensitivity Study of a Coplanar Waveguide Antenna-Based Sensor for Hydration Monitoring 2024 2024 IEEE 7th International Conference on Electrical, Electronics, and System Engineering: Dissemination and Advancement of Engineering Education using Artificial Intelligence, ICEESE 2024 10.1109/ICEESE62315.2024.10828554 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85217427026&doi=10.1109%2fICEESE62315.2024.10828554&partnerID=40&md5=ce89317858c9dfea33b56314cbf0813b This paper presents a study on a coplanar waveguide (CPW) antenna-based sensor operating at frequency of 2.4 GHz. Designed with a compact size of 30 mm x 30 mm, the antenna-based sensor utilizes filtered paper as its substrate material. The performance analysis of the CPW antenna-based sensor focuses on evaluating its sensitivity in detecting various types of sweat for hydration monitoring. The investigation encompasses a range of hydration levels, including hydrated, intermediate, dehydrated and severely dehydrated sweat. Results indicate that the CPW antenna-based sensor demonstrated high sensitivity to sweat, as evidenced by significant shifts in resonant frequency with increasing sweat volume. The maximum simulated frequency shift observed is 1.79 GHz when the CPW antenna-based sensor is fully immersed in sweat, compared to a 0.43 GHz shift at 10% immersion. The CPW antenna-based sensor effectively distinguishes between hydration states, with hydrated sweat exhibiting a substantial frequency shift of 74.21 % while dehydrated sweat showed a 45.42 % frequency shift. © 2024 IEEE. Institute of Electrical and Electronics Engineers Inc. English Conference paper |
author |
Mozi A.M.; Razali A.R.; Rahman N.H.A.; Azemi S.N.; Faudzi N.M.; Ibrahim A. |
spellingShingle |
Mozi A.M.; Razali A.R.; Rahman N.H.A.; Azemi S.N.; Faudzi N.M.; Ibrahim A. Sensitivity Study of a Coplanar Waveguide Antenna-Based Sensor for Hydration Monitoring |
author_facet |
Mozi A.M.; Razali A.R.; Rahman N.H.A.; Azemi S.N.; Faudzi N.M.; Ibrahim A. |
author_sort |
Mozi A.M.; Razali A.R.; Rahman N.H.A.; Azemi S.N.; Faudzi N.M.; Ibrahim A. |
title |
Sensitivity Study of a Coplanar Waveguide Antenna-Based Sensor for Hydration Monitoring |
title_short |
Sensitivity Study of a Coplanar Waveguide Antenna-Based Sensor for Hydration Monitoring |
title_full |
Sensitivity Study of a Coplanar Waveguide Antenna-Based Sensor for Hydration Monitoring |
title_fullStr |
Sensitivity Study of a Coplanar Waveguide Antenna-Based Sensor for Hydration Monitoring |
title_full_unstemmed |
Sensitivity Study of a Coplanar Waveguide Antenna-Based Sensor for Hydration Monitoring |
title_sort |
Sensitivity Study of a Coplanar Waveguide Antenna-Based Sensor for Hydration Monitoring |
publishDate |
2024 |
container_title |
2024 IEEE 7th International Conference on Electrical, Electronics, and System Engineering: Dissemination and Advancement of Engineering Education using Artificial Intelligence, ICEESE 2024 |
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doi_str_mv |
10.1109/ICEESE62315.2024.10828554 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85217427026&doi=10.1109%2fICEESE62315.2024.10828554&partnerID=40&md5=ce89317858c9dfea33b56314cbf0813b |
description |
This paper presents a study on a coplanar waveguide (CPW) antenna-based sensor operating at frequency of 2.4 GHz. Designed with a compact size of 30 mm x 30 mm, the antenna-based sensor utilizes filtered paper as its substrate material. The performance analysis of the CPW antenna-based sensor focuses on evaluating its sensitivity in detecting various types of sweat for hydration monitoring. The investigation encompasses a range of hydration levels, including hydrated, intermediate, dehydrated and severely dehydrated sweat. Results indicate that the CPW antenna-based sensor demonstrated high sensitivity to sweat, as evidenced by significant shifts in resonant frequency with increasing sweat volume. The maximum simulated frequency shift observed is 1.79 GHz when the CPW antenna-based sensor is fully immersed in sweat, compared to a 0.43 GHz shift at 10% immersion. The CPW antenna-based sensor effectively distinguishes between hydration states, with hydrated sweat exhibiting a substantial frequency shift of 74.21 % while dehydrated sweat showed a 45.42 % frequency shift. © 2024 IEEE. |
publisher |
Institute of Electrical and Electronics Engineers Inc. |
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English |
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Conference paper |
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scopus |
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Scopus |
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1825722578597052416 |