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Research of Marine Sensor Web Based on SOA and EDA 被引量:2

Research of Marine Sensor Web Based on SOA and EDA
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摘要 A great deal of ocean sensor observation data exists, for a wide range of marine disciplines, derived from in situ and remote observing platforms, in real-time, near-real-time and delayed mode. Ocean monitoring is routinely completed using sensors and instruments. Standardization is the key requirement for exchanging information about ocean sensors and sensor data and for comparing and combining information from different sensor networks. One or more sensors are often physically integrated into a single ocean ‘instrument' device, which often brings in many challenges related to diverse sensor data formats, parameters units, different spatiotemporal resolution, application domains, data quality and sensors protocols. To face these challenges requires the standardization efforts aiming at facilitating the so-called Sensor Web, which making it easy to provide public access to sensor data and metadata information. In this paper, a Marine Sensor Web, based on SOA and EDA and integrating the MBARI's PUCK protocol, IEEE 1451 and OGC SWE 2.0, is illustrated with a five-layer architecture. The Web Service layer and Event Process layer are illustrated in detail with an actual example. The demo study has demonstrated that a standard-based system can be built to access sensors and marine instruments distributed globally using common Web browsers for monitoring the environment and oceanic conditions besides marine sensor data on the Web, this framework of Marine Sensor Web can also play an important role in many other domains' information integration. A great deal of ocean sensor observation data exists, for a wide range of marine disciplines, derived from in situ and remote observing platforms, in real-time, near-real-time and delayed mode. Ocean monitoring is routinely completed using sensors and instruments. Standardization is the key requirement for exchanging information about ocean sensors and sensor data and for comparing and combining information from different sensor networks. One or more sensors are often physically integrated into a single ocean 'instrument' device, which often brings in many challenges related to diverse sensor data formats, parameters units, different spatiotemporal resolution, application domains, data quality and sensors protocols. To face these challenges requires the standardization efforts aiming at facilitating the so-called Sensor Web, which making it easy to provide public access to sensor data and metadata information. In this paper, a Marine Sensor Web, based on SOA and EDA and integrating the MBARI's PUCK protocol, IEEE 1451 and OGC SWE 2.0, is illustrated with a five-layer architecture. The Web Service layer and Event Process layer are illus- trated in detail with an actual example. The demo study has demonstrated that a standard-based system can be built to access sensors and marine instruments distributed globally using common Web browsers for monitoring the environment and oceanic conditions besides marine sensor data on the Web, this framework of Marine Sensor Web can also play an important role in many other do- mains' information integration.
出处 《Journal of Ocean University of China》 SCIE CAS 2015年第2期261-268,共8页 中国海洋大学学报(英文版)
基金 supported by the open fund project ‘Research of Information Service of Marine Sensor Web’ (Grant No.2011002) the project ‘Research on Channel-Characteristics-Oriented Data Transmission Algorithm in USNs’ of NSF of China (Grant No.61202403) the projects ‘Research of Making Regulation of Testing Technology of Device Interface’ and ‘Development and Application of Real-Time and Long-Term Observation Network Under Nearshore and Adjacent Marine Areas’ of Public science and Technology Research Funds Projects of Ocean(Grant No.201305033-6,No.201105030)
关键词 传感器网络 海洋学 EDA SOA WEB浏览器 元数据信息 海洋仪器 信息集成 ocean Sensor networks ocean observing systems marine sensor web web service SOA sensor web enablement(SWE) EDA
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  • 1Alves,A.,Arkin,A.,Askary,S.,Barreto,C.,Bloch,B.,Curbera,F.,Ford,M.,Goland,Y.,Guzar,A.,and Kartha,N.,2007.Web services business process execution language version 2.0(OASIS standard).WS-BPEL TC OASIS,21-25.
  • 2Balazinska,M.,Deshpande,A.,Franklin,M.J.,Gibbons,P.B.,Gray,J.,Nath,S.,Hansen,M.,Liebhold,M.,Szalay,A.,A.and Tao,V.,2007.Data management in the worldwide sensorweb.IEEE Pervasive Computing,30-40,DOI:10.1109/MPRV.2007.27.
  • 3Br?ring,A.,Maué,P.,Janowicz,K.,Nüst,D.,and Malewski C.,2011.Semantically-enabled sensor plug and play for the sensor web.Sensors,7568-7605,DOI:10.3390/s110807568.
  • 4Br?ring,A.,Echterhoff,J.,Jirka,S.,Simonis,I.,Everding,T.,Stasch,C.,Liang,S.,and Lemmens,R.,2011.New generation sensor web enablement.Sensors,2652-2699,DOI:10.3390/s110302652.
  • 5Chen,N.C.,Di,L.P.,Yu,G.N.,and Min,M.,2009.A flexiblegeospatial sensor observation service for diverse sensor databased on web service.ISPRS Journal of Photogrammetry andRemote Sensing,234-242,DOI:10.1016/j.isprsjprs.2008.12.001.
  • 6Chen,N.C.,Di,L.P.,Yu,G.N.,Gong,J.Y.,and Wei,Y.X.,2009.Use of eb RIM-based CSW with sensor observationservices for registry and discovery of remote-sensing observations.Computers and Geosciences,360-372.
  • 7Gibbons,P.B.,Karp,B.,Ke,Y.,Nath,S.,and Seshan,S.,2003.Irisnet:An architecture for a worldwide sensor web.IEEEPervasive Computing,2(4):22-33,DOI:10.1109/MPRV.2003.1251166.
  • 8Jeff,S.,Peter,P.,Jonathan,L.,Mema,R.,Margo,S.,and Matt,W.,2004.Hourglass:An infrastructure for connecting sensornetworks and applications.Technical Report,Harvard University,Columbia,1-13.
  • 9Jirka,S.,Br?ring,A.,and Stasch,C.,2009.Discovery mechanisms for the sensor web.Sensors,2661-2681,DOI:10.3390/s90402661.
  • 10Kevin,A.D.,Shannon,P.J.,David,W.J.,Scott,C.B.,RichardR.W.,and Baker,V.R.,2005.Environmental studies withthe sensor web:Principles and practice.Sensors,5(1):103-117,DOI:10.3390/s5010103.

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