Automatic real-time interpolation of radiation hazards: prototype and system architecture considerations

Detecting and monitoring the development of radioactive releases in the atmosphere is important. In many European countries monitoring networks have been established to perform this task. In the Netherlands the National Radioactivity Monitoring network (NRM) was installed. Currently, point maps are used to interpret the data from the NRM. Automatically generating maps in realtime would improve the interpretation of the data by giving the user a clear overview of the present radiological situation and provide an estimate of the radioactivity level at unmeasured locations. In this paper we present a prototype system that automatically generates real-time maps of radioactivity levels and presents results in an interoperable way through a Web Map Service. The system defines a first step towards a emergency management system and is suited primarily for data without large outliers. The automatic interpolation is done using universal kriging in combination with an automatic variogram fitting procedure. The focus is on mathematical and operational issues and on architectural considerations on how to improve the interoperability and portability of the prototype system.

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Main Authors: Hiemstra, P.H., Pebesma, E.J., Twenhöfel, C.J.W., Heuvelink, G.B.M.
Format: Article/Letter to editor biblioteca
Language:English
Subjects:Life Science,
Online Access:https://research.wur.nl/en/publications/automatic-real-time-interpolation-of-radiation-hazards-prototype-
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spelling dig-wur-nl-wurpubs-3735002024-06-25 Hiemstra, P.H. Pebesma, E.J. Twenhöfel, C.J.W. Heuvelink, G.B.M. Article/Letter to editor International Journal of Spatial Data Infrastructures Research 3 (2008) ISSN: 1725-0463 Automatic real-time interpolation of radiation hazards: prototype and system architecture considerations 2008 Detecting and monitoring the development of radioactive releases in the atmosphere is important. In many European countries monitoring networks have been established to perform this task. In the Netherlands the National Radioactivity Monitoring network (NRM) was installed. Currently, point maps are used to interpret the data from the NRM. Automatically generating maps in realtime would improve the interpretation of the data by giving the user a clear overview of the present radiological situation and provide an estimate of the radioactivity level at unmeasured locations. In this paper we present a prototype system that automatically generates real-time maps of radioactivity levels and presents results in an interoperable way through a Web Map Service. The system defines a first step towards a emergency management system and is suited primarily for data without large outliers. The automatic interpolation is done using universal kriging in combination with an automatic variogram fitting procedure. The focus is on mathematical and operational issues and on architectural considerations on how to improve the interoperability and portability of the prototype system. en application/pdf https://research.wur.nl/en/publications/automatic-real-time-interpolation-of-radiation-hazards-prototype- 10.2902/1725-0463.2008.03.art5 https://edepot.wur.nl/52903 Life Science Wageningen University & Research
institution WUR NL
collection DSpace
country Países bajos
countrycode NL
component Bibliográfico
access En linea
databasecode dig-wur-nl
tag biblioteca
region Europa del Oeste
libraryname WUR Library Netherlands
language English
topic Life Science
Life Science
spellingShingle Life Science
Life Science
Hiemstra, P.H.
Pebesma, E.J.
Twenhöfel, C.J.W.
Heuvelink, G.B.M.
Automatic real-time interpolation of radiation hazards: prototype and system architecture considerations
description Detecting and monitoring the development of radioactive releases in the atmosphere is important. In many European countries monitoring networks have been established to perform this task. In the Netherlands the National Radioactivity Monitoring network (NRM) was installed. Currently, point maps are used to interpret the data from the NRM. Automatically generating maps in realtime would improve the interpretation of the data by giving the user a clear overview of the present radiological situation and provide an estimate of the radioactivity level at unmeasured locations. In this paper we present a prototype system that automatically generates real-time maps of radioactivity levels and presents results in an interoperable way through a Web Map Service. The system defines a first step towards a emergency management system and is suited primarily for data without large outliers. The automatic interpolation is done using universal kriging in combination with an automatic variogram fitting procedure. The focus is on mathematical and operational issues and on architectural considerations on how to improve the interoperability and portability of the prototype system.
format Article/Letter to editor
topic_facet Life Science
author Hiemstra, P.H.
Pebesma, E.J.
Twenhöfel, C.J.W.
Heuvelink, G.B.M.
author_facet Hiemstra, P.H.
Pebesma, E.J.
Twenhöfel, C.J.W.
Heuvelink, G.B.M.
author_sort Hiemstra, P.H.
title Automatic real-time interpolation of radiation hazards: prototype and system architecture considerations
title_short Automatic real-time interpolation of radiation hazards: prototype and system architecture considerations
title_full Automatic real-time interpolation of radiation hazards: prototype and system architecture considerations
title_fullStr Automatic real-time interpolation of radiation hazards: prototype and system architecture considerations
title_full_unstemmed Automatic real-time interpolation of radiation hazards: prototype and system architecture considerations
title_sort automatic real-time interpolation of radiation hazards: prototype and system architecture considerations
url https://research.wur.nl/en/publications/automatic-real-time-interpolation-of-radiation-hazards-prototype-
work_keys_str_mv AT hiemstraph automaticrealtimeinterpolationofradiationhazardsprototypeandsystemarchitectureconsiderations
AT pebesmaej automaticrealtimeinterpolationofradiationhazardsprototypeandsystemarchitectureconsiderations
AT twenhofelcjw automaticrealtimeinterpolationofradiationhazardsprototypeandsystemarchitectureconsiderations
AT heuvelinkgbm automaticrealtimeinterpolationofradiationhazardsprototypeandsystemarchitectureconsiderations
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