Novel Fiber Optic Sensor Probe with a Pair of Highly Reflected Connectors and a Vessel of Water Absorption Material for Water Leak Detection

The use of a fiber optic quasi-distributed sensing technique for detecting the location and severity of water leakage is suggested. A novel fiber optic sensor probe is devised with a vessel of water absorption material called as water combination soil (WCS) located between two highly reflected conne...

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Main Authors: Tae-Sik Cho, Ki-Sun Choi, Dae-Cheol Seo, Il-Bum Kwon, Jung-Ryul Lee
Format: Article
Language:English
Published: MDPI AG 2012-08-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/12/8/10906
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spelling doaj-92cc03c141974d8c975381552249435c2020-11-25T01:30:52ZengMDPI AGSensors1424-82202012-08-01128109061091910.3390/s120810906Novel Fiber Optic Sensor Probe with a Pair of Highly Reflected Connectors and a Vessel of Water Absorption Material for Water Leak DetectionTae-Sik ChoKi-Sun ChoiDae-Cheol SeoIl-Bum KwonJung-Ryul LeeThe use of a fiber optic quasi-distributed sensing technique for detecting the location and severity of water leakage is suggested. A novel fiber optic sensor probe is devised with a vessel of water absorption material called as water combination soil (WCS) located between two highly reflected connectors: one is a reference connector and the other is a sensing connector. In this study, the sensing output is calculated from the reflected light signals of the two connectors. The first reflected light signal is a reference and the second is a sensing signal which is attenuated by the optical fiber bending loss due to the WCS expansion absorbing water. Also, the bending loss of each sensor probe is determined by referring to the total number of sensor probes and the total power budget of an entire system. We have investigated several probe characteristics to show the design feasibility of the novel fiber sensor probe. The effects of vessel sizes of the probes on the water detection sensitivity are studied. The largest vessel probe provides the highest sensitivity of 0.267 dB/mL, while the smallest shows relatively low sensitivity of 0.067 dB/mL, and unstable response. The sensor probe with a high output value provides a high sensitivity with various detection levels while the number of total installable sensor probes decreases.http://www.mdpi.com/1424-8220/12/8/10906water leak detectionhighly reflected connectorreference connectorsensing connectorsensor probewater combination soilvessel
collection DOAJ
language English
format Article
sources DOAJ
author Tae-Sik Cho
Ki-Sun Choi
Dae-Cheol Seo
Il-Bum Kwon
Jung-Ryul Lee
spellingShingle Tae-Sik Cho
Ki-Sun Choi
Dae-Cheol Seo
Il-Bum Kwon
Jung-Ryul Lee
Novel Fiber Optic Sensor Probe with a Pair of Highly Reflected Connectors and a Vessel of Water Absorption Material for Water Leak Detection
Sensors
water leak detection
highly reflected connector
reference connector
sensing connector
sensor probe
water combination soil
vessel
author_facet Tae-Sik Cho
Ki-Sun Choi
Dae-Cheol Seo
Il-Bum Kwon
Jung-Ryul Lee
author_sort Tae-Sik Cho
title Novel Fiber Optic Sensor Probe with a Pair of Highly Reflected Connectors and a Vessel of Water Absorption Material for Water Leak Detection
title_short Novel Fiber Optic Sensor Probe with a Pair of Highly Reflected Connectors and a Vessel of Water Absorption Material for Water Leak Detection
title_full Novel Fiber Optic Sensor Probe with a Pair of Highly Reflected Connectors and a Vessel of Water Absorption Material for Water Leak Detection
title_fullStr Novel Fiber Optic Sensor Probe with a Pair of Highly Reflected Connectors and a Vessel of Water Absorption Material for Water Leak Detection
title_full_unstemmed Novel Fiber Optic Sensor Probe with a Pair of Highly Reflected Connectors and a Vessel of Water Absorption Material for Water Leak Detection
title_sort novel fiber optic sensor probe with a pair of highly reflected connectors and a vessel of water absorption material for water leak detection
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2012-08-01
description The use of a fiber optic quasi-distributed sensing technique for detecting the location and severity of water leakage is suggested. A novel fiber optic sensor probe is devised with a vessel of water absorption material called as water combination soil (WCS) located between two highly reflected connectors: one is a reference connector and the other is a sensing connector. In this study, the sensing output is calculated from the reflected light signals of the two connectors. The first reflected light signal is a reference and the second is a sensing signal which is attenuated by the optical fiber bending loss due to the WCS expansion absorbing water. Also, the bending loss of each sensor probe is determined by referring to the total number of sensor probes and the total power budget of an entire system. We have investigated several probe characteristics to show the design feasibility of the novel fiber sensor probe. The effects of vessel sizes of the probes on the water detection sensitivity are studied. The largest vessel probe provides the highest sensitivity of 0.267 dB/mL, while the smallest shows relatively low sensitivity of 0.067 dB/mL, and unstable response. The sensor probe with a high output value provides a high sensitivity with various detection levels while the number of total installable sensor probes decreases.
topic water leak detection
highly reflected connector
reference connector
sensing connector
sensor probe
water combination soil
vessel
url http://www.mdpi.com/1424-8220/12/8/10906
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