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A distributed and interconnected network of sensors for environmental radiological monitoring

The W-MON project aims to improve and automatize the control of the presence of radioactive material in conventional waste containers at CERN using a distributed network of interconnected low-power radiation sensors. The key development is the integration of a lightweight but sensitive radiation sen...

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Autores principales: Gallego Manzano, L, Bisegni, C, Boukabache, H, Curioni, A, Heracleous, N, Murtas, F, Perrin, D, Silari, M
Lenguaje:eng
Publicado: 2020
Acceso en línea:https://dx.doi.org/10.1016/j.radmeas.2020.106488
http://cds.cern.ch/record/2745530
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author Gallego Manzano, L
Bisegni, C
Boukabache, H
Curioni, A
Heracleous, N
Murtas, F
Perrin, D
Silari, M
author_facet Gallego Manzano, L
Bisegni, C
Boukabache, H
Curioni, A
Heracleous, N
Murtas, F
Perrin, D
Silari, M
author_sort Gallego Manzano, L
collection CERN
description The W-MON project aims to improve and automatize the control of the presence of radioactive material in conventional waste containers at CERN using a distributed network of interconnected low-power radiation sensors. The key development is the integration of a lightweight but sensitive radiation sensor in a powerful network that allows continuous data recording, transfer and storage in a database for alarm triggering and subsequent data analysis. The Chiyoda D-shuttle personal dosimeter was used as proof-of-concept. Extensive tests performed with the commercial version of the D-shuttle showed that its robustness, stability under variable thermal conditions, high sensitivity and hourly dose logging capabilities make it a strong candidate for the project. To comply with the requirements of remote operation and wireless data transmission to a central server, a customized version of the D-shuttle has been developed. Two additional radiation sensors are also currently being considered. The sensors have been coupled to a custom-made communication board allowing for long-range low-power LoRa wireless data transmission. A centralized IoT (Internet of Things) end-to-end data architecture has been developed for real-time monitoring and visualization of the radiation level in waste containers before the final integration into REMUS, the overall CERN Radiation and Environment Monitoring Unified Supervision service.
id oai-inspirehep.net-1831572
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling oai-inspirehep.net-18315722021-01-08T20:58:56Zdoi:10.1016/j.radmeas.2020.106488http://cds.cern.ch/record/2745530engGallego Manzano, LBisegni, CBoukabache, HCurioni, AHeracleous, NMurtas, FPerrin, DSilari, MA distributed and interconnected network of sensors for environmental radiological monitoringThe W-MON project aims to improve and automatize the control of the presence of radioactive material in conventional waste containers at CERN using a distributed network of interconnected low-power radiation sensors. The key development is the integration of a lightweight but sensitive radiation sensor in a powerful network that allows continuous data recording, transfer and storage in a database for alarm triggering and subsequent data analysis. The Chiyoda D-shuttle personal dosimeter was used as proof-of-concept. Extensive tests performed with the commercial version of the D-shuttle showed that its robustness, stability under variable thermal conditions, high sensitivity and hourly dose logging capabilities make it a strong candidate for the project. To comply with the requirements of remote operation and wireless data transmission to a central server, a customized version of the D-shuttle has been developed. Two additional radiation sensors are also currently being considered. The sensors have been coupled to a custom-made communication board allowing for long-range low-power LoRa wireless data transmission. A centralized IoT (Internet of Things) end-to-end data architecture has been developed for real-time monitoring and visualization of the radiation level in waste containers before the final integration into REMUS, the overall CERN Radiation and Environment Monitoring Unified Supervision service.oai:inspirehep.net:18315722020
spellingShingle Gallego Manzano, L
Bisegni, C
Boukabache, H
Curioni, A
Heracleous, N
Murtas, F
Perrin, D
Silari, M
A distributed and interconnected network of sensors for environmental radiological monitoring
title A distributed and interconnected network of sensors for environmental radiological monitoring
title_full A distributed and interconnected network of sensors for environmental radiological monitoring
title_fullStr A distributed and interconnected network of sensors for environmental radiological monitoring
title_full_unstemmed A distributed and interconnected network of sensors for environmental radiological monitoring
title_short A distributed and interconnected network of sensors for environmental radiological monitoring
title_sort distributed and interconnected network of sensors for environmental radiological monitoring
url https://dx.doi.org/10.1016/j.radmeas.2020.106488
http://cds.cern.ch/record/2745530
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