Unsaturated polyester resin/polymethylmethacrylate waveguide-based refractive index sensor with dual-wavelength temperature compensation
This paper demonstrates an optical waveguide based- refractive index (RI) sensor using the temperature compensation method. The optical waveguide was formed using a polymethylmethacrylate sheet as the cladding material and unsaturated polyester resin as the core material. The sensor design consists...
Main Authors: | , , , , , , , , , |
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Format: | Article |
Language: | English |
Published: |
IOP
2023
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Subjects: | |
Online Access: | http://eprints.uthm.edu.my/9934/1/J16046_e6441dbebb32472e79cb30f79ec52b4f.pdf |
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author | Ian Yulianti, Ian Yulianti Putut Marwoto, Putut Marwoto Budi Astuti, Budi Astuti Ngurah Made DP, Ngurah Made DP Fianti, Fianti Dhea Paradita, Dhea Paradita Teguh Darsono, Teguh Darsono Ngajikin, Nor Hafizah Yaacob, Maslina Azizan Cholan, Noran |
author_facet | Ian Yulianti, Ian Yulianti Putut Marwoto, Putut Marwoto Budi Astuti, Budi Astuti Ngurah Made DP, Ngurah Made DP Fianti, Fianti Dhea Paradita, Dhea Paradita Teguh Darsono, Teguh Darsono Ngajikin, Nor Hafizah Yaacob, Maslina Azizan Cholan, Noran |
author_sort | Ian Yulianti, Ian Yulianti |
collection | UTHM |
description | This paper demonstrates an optical waveguide based- refractive index (RI) sensor using the temperature compensation method. The optical waveguide was formed using a polymethylmethacrylate sheet as the cladding material and unsaturated polyester resin as the core material. The sensor design consists of two input waveguide branches, a sensing area and an output branch. Two light emitting diodes with wavelength of 530 nm and 660 nm were used
as light sources. In this work, temperature compensation was done by dual-wavelength technique in which RI and temperature sensitivities were measured at two different wavelengths at 530 nm and 660 nm. Based on the RI and temperature sensitivities, temperature compensation was implemented. Experimental fndings indicated that the average relative error of the uncompensated measurement using the light source of 530 nm and 660 nm were 0.4372%
and 0.2749%, respectively. Meanwhile, the average error of the temperature compensation method was 0.0344%. Hence, the temperature compensation method provides measurement error up to 92% lower compared to the uncompensated method. As such, the proposed
dual-wavelength compensation method could effectively improve the RI measurement accuracy. |
first_indexed | 2024-03-05T22:04:03Z |
format | Article |
id | uthm.eprints-9934 |
institution | Universiti Tun Hussein Onn Malaysia |
language | English |
last_indexed | 2024-03-05T22:04:03Z |
publishDate | 2023 |
publisher | IOP |
record_format | dspace |
spelling | uthm.eprints-99342023-09-13T07:30:58Z http://eprints.uthm.edu.my/9934/ Unsaturated polyester resin/polymethylmethacrylate waveguide-based refractive index sensor with dual-wavelength temperature compensation Ian Yulianti, Ian Yulianti Putut Marwoto, Putut Marwoto Budi Astuti, Budi Astuti Ngurah Made DP, Ngurah Made DP Fianti, Fianti Dhea Paradita, Dhea Paradita Teguh Darsono, Teguh Darsono Ngajikin, Nor Hafizah Yaacob, Maslina Azizan Cholan, Noran T Technology (General) This paper demonstrates an optical waveguide based- refractive index (RI) sensor using the temperature compensation method. The optical waveguide was formed using a polymethylmethacrylate sheet as the cladding material and unsaturated polyester resin as the core material. The sensor design consists of two input waveguide branches, a sensing area and an output branch. Two light emitting diodes with wavelength of 530 nm and 660 nm were used as light sources. In this work, temperature compensation was done by dual-wavelength technique in which RI and temperature sensitivities were measured at two different wavelengths at 530 nm and 660 nm. Based on the RI and temperature sensitivities, temperature compensation was implemented. Experimental fndings indicated that the average relative error of the uncompensated measurement using the light source of 530 nm and 660 nm were 0.4372% and 0.2749%, respectively. Meanwhile, the average error of the temperature compensation method was 0.0344%. Hence, the temperature compensation method provides measurement error up to 92% lower compared to the uncompensated method. As such, the proposed dual-wavelength compensation method could effectively improve the RI measurement accuracy. IOP 2023 Article PeerReviewed text en http://eprints.uthm.edu.my/9934/1/J16046_e6441dbebb32472e79cb30f79ec52b4f.pdf Ian Yulianti, Ian Yulianti and Putut Marwoto, Putut Marwoto and Budi Astuti, Budi Astuti and Ngurah Made DP, Ngurah Made DP and Fianti, Fianti and Dhea Paradita, Dhea Paradita and Teguh Darsono, Teguh Darsono and Ngajikin, Nor Hafizah and Yaacob, Maslina and Azizan Cholan, Noran (2023) Unsaturated polyester resin/polymethylmethacrylate waveguide-based refractive index sensor with dual-wavelength temperature compensation. Measurement Science and Technology, 34. pp. 1-11. https://doi.org/10.1088/1361-6501/acce59 |
spellingShingle | T Technology (General) Ian Yulianti, Ian Yulianti Putut Marwoto, Putut Marwoto Budi Astuti, Budi Astuti Ngurah Made DP, Ngurah Made DP Fianti, Fianti Dhea Paradita, Dhea Paradita Teguh Darsono, Teguh Darsono Ngajikin, Nor Hafizah Yaacob, Maslina Azizan Cholan, Noran Unsaturated polyester resin/polymethylmethacrylate waveguide-based refractive index sensor with dual-wavelength temperature compensation |
title | Unsaturated polyester resin/polymethylmethacrylate
waveguide-based refractive index sensor with dual-wavelength temperature compensation |
title_full | Unsaturated polyester resin/polymethylmethacrylate
waveguide-based refractive index sensor with dual-wavelength temperature compensation |
title_fullStr | Unsaturated polyester resin/polymethylmethacrylate
waveguide-based refractive index sensor with dual-wavelength temperature compensation |
title_full_unstemmed | Unsaturated polyester resin/polymethylmethacrylate
waveguide-based refractive index sensor with dual-wavelength temperature compensation |
title_short | Unsaturated polyester resin/polymethylmethacrylate
waveguide-based refractive index sensor with dual-wavelength temperature compensation |
title_sort | unsaturated polyester resin polymethylmethacrylate waveguide based refractive index sensor with dual wavelength temperature compensation |
topic | T Technology (General) |
url | http://eprints.uthm.edu.my/9934/1/J16046_e6441dbebb32472e79cb30f79ec52b4f.pdf |
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