The increasing diffusion of environmental monitoring systems demands for more flexibility in the management of the whole system and in a lower cost for the arrangement of each measuring unit. Both these requirements can be met by arranging the whole system as a GRID architecture and employing units that are based on low-cost micro-controllers or palm PCs. However, such kind of units does not exhibit enough processing capabilities to met the full GRID requirements. For this reason, the authors propose a proxybased approach that allows low-cost measuring units to be integrated into a GRID architecture, by introducing the concept of virtual measurement GRID node. Such a node is mainly composed of a measurement front-end that communicates with a proxy GRID node, which exhibits the full GRID services. An example of virtual measurement node is proposed that is conceived for pollution monitoring and a prototype of measurement node is described that senses temperature and concentration of carbone monoxide.
Integration of low computational power nodes in a GRID measurement architecture / Carullo, Alessio; Corbellini, Simone; Ferraris, Franco; Parvis, Marco; Vallan, Alberto. - STAMPA. - (2007), pp. 1-5. (Intervento presentato al convegno 2007 IEEE Instrumentation and Measurement Technology, IMTC 2007 - Synergy of Science and Technology in Instrumentation and Measurement tenutosi a Warsaw, Poland nel 1-3 May) [10.1109/IMTC.2007.379165].
Integration of low computational power nodes in a GRID measurement architecture
CARULLO, Alessio;CORBELLINI, SIMONE;FERRARIS, Franco;PARVIS, Marco;VALLAN, Alberto
2007
Abstract
The increasing diffusion of environmental monitoring systems demands for more flexibility in the management of the whole system and in a lower cost for the arrangement of each measuring unit. Both these requirements can be met by arranging the whole system as a GRID architecture and employing units that are based on low-cost micro-controllers or palm PCs. However, such kind of units does not exhibit enough processing capabilities to met the full GRID requirements. For this reason, the authors propose a proxybased approach that allows low-cost measuring units to be integrated into a GRID architecture, by introducing the concept of virtual measurement GRID node. Such a node is mainly composed of a measurement front-end that communicates with a proxy GRID node, which exhibits the full GRID services. An example of virtual measurement node is proposed that is conceived for pollution monitoring and a prototype of measurement node is described that senses temperature and concentration of carbone monoxide.Pubblicazioni consigliate
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https://hdl.handle.net/11583/1820014
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