Smart water grade continuous monitoring fiber optic sensing system
This project presents a water grade monitoring system using fiber optics to continuously monitor multiple water-related parameters. The objective of the project is to construct a system that can detect the changes in parameters of the river-water parameters continuously for long distances and alert...
Published in: | ISCAIE 2015 - 2015 IEEE Symposium on Computer Applications and Industrial Electronics |
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Institute of Electrical and Electronics Engineers Inc.
2015
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Online Access: | https://www.scopus.com/inward/record.uri?eid=2-s2.0-84959038172&doi=10.1109%2fISCAIE.2015.7298343&partnerID=40&md5=85ed2862ca4690ed58d7910f92552681 |
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2-s2.0-84959038172 Ahmad M.A.A.; Pauzi I.S.; Ariff N.S.K.; Shawal H.; Abdullah W.F.H. Smart water grade continuous monitoring fiber optic sensing system 2015 ISCAIE 2015 - 2015 IEEE Symposium on Computer Applications and Industrial Electronics 10.1109/ISCAIE.2015.7298343 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84959038172&doi=10.1109%2fISCAIE.2015.7298343&partnerID=40&md5=85ed2862ca4690ed58d7910f92552681 This project presents a water grade monitoring system using fiber optics to continuously monitor multiple water-related parameters. The objective of the project is to construct a system that can detect the changes in parameters of the river-water parameters continuously for long distances and alert the authorities if necessary. The system is an alternative approach to overcome limitations of current solutions that result in water body structures unmonitored due to labour intensiveness. The design methodology is divided into the following scope of work: (i) system design, covering interfacing and information processing, (ii) optical fiber network setup, and (ii) sensing modules, covering electronic sensors applications and interfacing of sensors. A water body model is constructed to demonstrate action of four parameter sensing: pH, oil detection, water flow and water level electrical sensors. Results show that difference in electrical sensor voltage output is able to induce pressure to FBG through servomotors. This action causes a shift on central wavelength along the optical fiber network. This information will be detected and analyzed by Agilent VEE. Analysis covers model data with pH ranging from 4 to 12 in 4 levels, presence of oil, water level rise between 5 to 15 cm and water flow rate change of in litres/min. © 2015 IEEE. Institute of Electrical and Electronics Engineers Inc. English Conference paper |
author |
Ahmad M.A.A.; Pauzi I.S.; Ariff N.S.K.; Shawal H.; Abdullah W.F.H. |
spellingShingle |
Ahmad M.A.A.; Pauzi I.S.; Ariff N.S.K.; Shawal H.; Abdullah W.F.H. Smart water grade continuous monitoring fiber optic sensing system |
author_facet |
Ahmad M.A.A.; Pauzi I.S.; Ariff N.S.K.; Shawal H.; Abdullah W.F.H. |
author_sort |
Ahmad M.A.A.; Pauzi I.S.; Ariff N.S.K.; Shawal H.; Abdullah W.F.H. |
title |
Smart water grade continuous monitoring fiber optic sensing system |
title_short |
Smart water grade continuous monitoring fiber optic sensing system |
title_full |
Smart water grade continuous monitoring fiber optic sensing system |
title_fullStr |
Smart water grade continuous monitoring fiber optic sensing system |
title_full_unstemmed |
Smart water grade continuous monitoring fiber optic sensing system |
title_sort |
Smart water grade continuous monitoring fiber optic sensing system |
publishDate |
2015 |
container_title |
ISCAIE 2015 - 2015 IEEE Symposium on Computer Applications and Industrial Electronics |
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doi_str_mv |
10.1109/ISCAIE.2015.7298343 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84959038172&doi=10.1109%2fISCAIE.2015.7298343&partnerID=40&md5=85ed2862ca4690ed58d7910f92552681 |
description |
This project presents a water grade monitoring system using fiber optics to continuously monitor multiple water-related parameters. The objective of the project is to construct a system that can detect the changes in parameters of the river-water parameters continuously for long distances and alert the authorities if necessary. The system is an alternative approach to overcome limitations of current solutions that result in water body structures unmonitored due to labour intensiveness. The design methodology is divided into the following scope of work: (i) system design, covering interfacing and information processing, (ii) optical fiber network setup, and (ii) sensing modules, covering electronic sensors applications and interfacing of sensors. A water body model is constructed to demonstrate action of four parameter sensing: pH, oil detection, water flow and water level electrical sensors. Results show that difference in electrical sensor voltage output is able to induce pressure to FBG through servomotors. This action causes a shift on central wavelength along the optical fiber network. This information will be detected and analyzed by Agilent VEE. Analysis covers model data with pH ranging from 4 to 12 in 4 levels, presence of oil, water level rise between 5 to 15 cm and water flow rate change of in litres/min. © 2015 IEEE. |
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Institute of Electrical and Electronics Engineers Inc. |
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language |
English |
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Conference paper |
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scopus |
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Scopus |
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1809677608408842240 |