The use of Semantic Grid architecture eases the development of complex, flexible applications, in which several organisations are involved and where resources of diverse nature (data and computing elements) are shared. This is the situation in the Space domain, with an extensive and heterogeneous network of facilities and institutions. There is a strong need to share both data and computational resources for complex processing tasks. One such is monitoring and data analysis for Satellite Missions and this paper presents the Satellite Mission Grid, built in the OntoGrid project as an alternative to the current systems used. Flexibility, scalability, interoperability, extensibility and efficient development were the main advantages found in using a common framework for data sharing and creating a Semantic Data Grid.
%0 Conference Paper
%1 Wright/2007/Semantic
%A Wright, Reuben
%A Sánchez-Gestido, Manuel
%A Gomez-Perez, Asuncion
%A Pérez-Hernández, Maria
%A González-Cabero, Rafael
%A Corcho, Oscar
%B Proceedings of the Workshop on the First Industrial Results of Semantic Technologies (FIRST2007) at ISWC/ASWC2007, Busan, South Korea
%D 2007
%E Cuel, Roberta
%E Nixon, Lyndon J B
%E Bergamini, Claudio
%K 2007 analysis datum grid iswc mission quality satellite semantic workshop_first
%T A Semantic Data Grid for Satellite Mission Quality Analysis
%X The use of Semantic Grid architecture eases the development of complex, flexible applications, in which several organisations are involved and where resources of diverse nature (data and computing elements) are shared. This is the situation in the Space domain, with an extensive and heterogeneous network of facilities and institutions. There is a strong need to share both data and computational resources for complex processing tasks. One such is monitoring and data analysis for Satellite Missions and this paper presents the Satellite Mission Grid, built in the OntoGrid project as an alternative to the current systems used. Flexibility, scalability, interoperability, extensibility and efficient development were the main advantages found in using a common framework for data sharing and creating a Semantic Data Grid.
@inproceedings{Wright/2007/Semantic,
abstract = {The use of Semantic Grid architecture eases the development of complex, flexible applications, in which several organisations are involved and where resources of diverse nature (data and computing elements) are shared. This is the situation in the Space domain, with an extensive and heterogeneous network of facilities and institutions. There is a strong need to share both data and computational resources for complex processing tasks. One such is monitoring and data analysis for Satellite Missions and this paper presents the Satellite Mission Grid, built in the OntoGrid project as an alternative to the current systems used. Flexibility, scalability, interoperability, extensibility and efficient development were the main advantages found in using a common framework for data sharing and creating a Semantic Data Grid.},
added-at = {2007-11-07T19:18:42.000+0100},
author = {Wright, Reuben and Sánchez-Gestido, Manuel and Gomez-Perez, Asuncion and Pérez-Hernández, Maria and González-Cabero, Rafael and Corcho, Oscar},
biburl = {https://www.bibsonomy.org/bibtex/2af99ee89303a9e93c71a5c2756e4b73f/iswc2007},
booktitle = {Proceedings of the Workshop on the First Industrial Results of Semantic Technologies (FIRST2007) at ISWC/ASWC2007, Busan, South Korea},
crossref = {http://data.semanticweb.org/workshop/first/2007/proceedings},
editor = {Cuel, Roberta and Nixon, Lyndon J B and Bergamini, Claudio},
interhash = {fa93a97036e2fe87fb349859585c6369},
intrahash = {af99ee89303a9e93c71a5c2756e4b73f},
keywords = {2007 analysis datum grid iswc mission quality satellite semantic workshop_first},
month = {November},
timestamp = {2007-11-07T19:20:54.000+0100},
title = {A Semantic Data Grid for Satellite Mission Quality Analysis},
year = 2007
}