An European Approach to GEOSS
Short Description
The EuroGEOSS project will demonstrate the added scientific value of making existing systems and applications interoperable and used within the GEOSS and INSPIRE frameworks. Focus will be on the application areas (Drought, Forest and Biodiversity), and the multi-disciplinary interoperability aspects to opening them up, linking them, and making them GEOSS components. Demonstration will be made that through this process increased access to new forms of data and services are enabled, and as a result new scientific questions can be addressed, or old questions can be addressed in new and better ways.
GEOTEC’s contribution
GEOTEC led the 'alternative discovery mechanism for geospatial resources' task of the EuroGEOSS project, which investigated new ways and implemented a brokered tool (called Web 2.0 Broker) to perform spatio-temporal queries over Web 2.0 resources and social network sites. GEOTEC coorganised and actively participated in the final EUROGEOSS conference to show the main results achieved over the course of the project.
Publications
DÃaz-Sánchez, Laura; Bröring, Arne; McInerney, Daniel; Libertá, Giorgio; Foerster, Theodor
Publishing sensor observations into Geospatial Information Infrastructures: A use case in fire danger assessment Journal Article
In: Environmental Modelling and Software, vol. 48, pp. 65-80, 2013, ISSN: 13648152, (IF: 4.538, q1).
@article{DiazSanchez2013,
title = {Publishing sensor observations into Geospatial Information Infrastructures: A use case in fire danger assessment},
author = { Laura DÃaz-Sánchez and Arne Bröring and Daniel McInerney and Giorgio Libertá and Theodor Foerster},
url = {http://hdl.handle.net/10234/159894},
doi = {10.1016/j.envsoft.2013.06.002},
issn = {13648152},
year = {2013},
date = {2013-01-01},
journal = {Environmental Modelling and Software},
volume = {48},
pages = {65-80},
publisher = {Elsevier Ltd},
abstract = {To improve environmental monitoring, the availability of large coverage, interoperable spatio-temporal data is crucial for its integration into environmental models, for example, to compute fire danger models. In order to produce up-to-date and accurate results, these models require data with high temporal and spatial resolution. Thus, it is promising to consider the increasing number of in-situ sensors providing observations of our environment in real-time. Today, interoperable access to such spatio-temporal data is achieved by Geospatial Information Infrastructures (GIIs). From a technical point of view, GIIs provide these data through standards-based Web service interfaces. While those Web service interfaces already enable the interoperable discovery and retrieval of sensor observations, the functionality to publish sensor observations is still an arduous task. Hence, in this paper, we present an approach to improve the registration of sensors and the publication of their observations via standards-based Web service interfaces. We evaluate our approach by extending a standards-based GII and by applying the developed approach as a proof of concept to integrate in-situ weather observations into the European Forest Fire Information System for assessing fire danger in Spain.},
note = {IF: 4.538, q1},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
To improve environmental monitoring, the availability of large coverage, interoperable spatio-temporal data is crucial for its integration into environmental models, for example, to compute fire danger models. In order to produce up-to-date and accurate results, these models require data with high temporal and spatial resolution. Thus, it is promising to consider the increasing number of in-situ sensors providing observations of our environment in real-time. Today, interoperable access to such spatio-temporal data is achieved by Geospatial Information Infrastructures (GIIs). From a technical point of view, GIIs provide these data through standards-based Web service interfaces. While those Web service interfaces already enable the interoperable discovery and retrieval of sensor observations, the functionality to publish sensor observations is still an arduous task. Hence, in this paper, we present an approach to improve the registration of sensors and the publication of their observations via standards-based Web service interfaces. We evaluate our approach by extending a standards-based GII and by applying the developed approach as a proof of concept to integrate in-situ weather observations into the European Forest Fire Information System for assessing fire danger in Spain.
Coordinator
IP:Â JoaquÃn Huerta (huerta@uji.es)
Technical contact: Carlos Granell (carlos.granell@uji.es)