Title :
Smart electronic interface for Web Enabled Ocean Sensor Systems
Author :
Toma, Daniel M. ; Del Rio, J. ; Jirka, Simon ; Delory, E. ; Pearlman, Jay
Author_Institution :
Electron. Dept., Univ. Politec. de Catalunya (UPC), Vilanova i la Geltru, Spain
Abstract :
The objective of the European FP7 project NeXOS (Next generation Low-Cost Multifunctional Web Enabled Ocean Sensor Systems Empowering Marine, Maritime and Fisheries Management) is to develop cost-efficient innovative and interoperable in-situ sensors deployable from multiple platforms to support the development of a truly integrated Ocean Observing System. Therefore, several sensor systems will be developed in NeXOS project for specific technologies and monitoring strategies such as: ocean passive acoustics, ocean optics, and EAF monitoring (Ecosystem Approach to Fisheries), that will provide an integrated, technologically coherent system for multi-scale, multi-parameter monitoring of the oceans. For all these sensors system, NeXOS will develop the Smart Electronic Interface for Sensors and Instruments (SEISI) which is a set of standards and functionalities to enable Web-based sharing, discovery, exchange and processing of sensor observations, and operation of sensor systems. The architecture will satisfy international standards, defined by ISO, OGC, and the INSPIRE directive, to enable integration of marine sensors with existing observing systems. The SEISI will provide a multifunctional interface for many types of current sensors and instruments as well as the new multi-parameter sensor systems, and a standard interface for existing observing systems platforms such as: cabled observatories, buoys, gliders or Ferryboxes on ship or vessel of opportunity. To achieve the compatibility with all these platforms, the sensor systems developed in NeXOS based on SEISI will be designed to accomplish two main requirements of these platforms regarding the communication bandwidth and the power consumption.
Keywords :
ecology; geophysics computing; oceanographic techniques; underwater optics; underwater sound; EAF monitoring; European FP7 project; INSPIRE directive; ISO directive; NeXOS; NeXOS Empowering Marine Maritime and Fisheries Management; NeXOS project monitoring strategy; NeXOS project specific technology; Next generation Low-Cost Multifunctional Web Enabled Ocean Sensor System; OGC directive; SEISI; Smart Electronic Interface for Sensors and Instruments; buoy; cabled observatory; communication bandwidth; cost-efficient innovative in-situ sensor development; cost-efficient interoperable in-situ sensor development; current instrument type; current sensor type; ecosystem approach to fisheries; enable Web-based discovery; enable Web-based exchange; enable Web-based functionality; enable Web-based sharing; enable Web-based standard; glider; integrated coherent system; international standard; marine sensor integration; multifunctional interface; multiparameter ocean monitoring; multiparameter sensor system; multiscale ocean monitoring; observing system; ocean optic; ocean passive acoustics; power consumption; sensor observation processing; sensor system operation; ship Ferrybox; smart electronic interface; technologically coherent system; truly integrated ocean observing system development; vessel Ferrybox; web enabled ocean sensor system; Europe; Geospatial analysis; Instruments; Oceans; Protocols; Sensor systems; Standards; Interoperability; Multifunctional ocean sensors; OGC; SensorML; standards;
Conference_Titel :
Sensor Systems for a Changing Ocean (SSCO), 2014 IEEE
Conference_Location :
Brest
DOI :
10.1109/SSCO.2014.7000375