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The Applicability Of SWE In Polish Spatial Data Infrastructures - The Example Of The SensorML Language


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[1] Act of 27 April 2001 Environmental Protection Law.Search in Google Scholar

[2] Chen N., Hu C., Chen Y., Wang C., Gong J., Using SensorML to construct a geoprocessing e-Science workflow model under a sensor web environment, Computers & Geosciences, 47, 2012, 119–129.10.1016/j.cageo.2011.11.027Search in Google Scholar

[3] Chen N., Wang X., Yang X., A direct registry service method for sensors and algorithms based on the process model, Computers & Geosciences, 56, 2013, 45–55.10.1016/j.cageo.2013.03.008Search in Google Scholar

[4] Compton M., Barnaghi P., Bermudez L., García-Castro R., Corcho O., Coxe S., Graybeal J., Hauswirth M., Hensonh C., Herzog A., Huang V., Janowicz K., David Kelsey W., Le Phuoc D., Lefort L., Leggieri M., Neuhaus H., Nikolov A., Page K., Passant A., Sheth A., Taylor K., Web Semantics: Science, Services and Agents on the World Wide Web, Web Semantics: Science, Services and Agents on the World Wide Web, 17, 2012, 25–32.10.1016/j.websem.2012.05.003Search in Google Scholar

[5] Conover H., Berthiau G., Botts M., Goodman H.M., Li X., Lu Z., Maskey M., Regner K., Zavodsky B., Using sensor web protocols for environmental data acquisition and management, Ecological Informatics, 5, 2010, 32–41.10.1016/j.ecoinf.2009.08.009Search in Google Scholar

[6] European Commission, Data Specification on Environmental Monitoring Facilities – Draft Technical Guidelines (D2.8.III.7_v3.0rc3), http://inspire.ec.europa.eu/documents/Data_Specifications/INSPIRE_DataSpecification_EF_v3.0rc3.pdf (access 28.01.2015).Search in Google Scholar

[7] European Commission, Guidelines for the use of Observations & Measurements and Sensor Web Enablement-related standards in INSPIRE Annex II and III data specification development (D2.9_v2.0), http://inspire.ec.europa.eu/documents/Data_Specifications/D2.9_O&M_Guidelines_v2.0.pdf (access 28.01.2015).Search in Google Scholar

[8] Fan M., Fan H., Chen N., Chen Z., Du W., Active on-demand service method based on event-driven architecture for geospatial data retrieval, Computers & Geosciences, 56, 2013, 1–11.10.1016/j.cageo.2013.01.013Search in Google Scholar

[9] Farazi F., Maltese V., Giunchiglia F., Ivanyukovich A., A faceted ontology for a semantic geo-catalogue, The SemanicWeb: Research and Applications, 8th Extended SemanticWeb Conference, ESWC 2011 Heraklion, Crete, Greece, May 29 – June 2, 2011, Proceedings, Part II.10.1007/978-3-642-21064-8_12Search in Google Scholar

[10] Gaździcki J., Internetowy Leksykon Geomatyczny – Lexicon of Geomatics. (www.ptip.org.pl), 2010.Search in Google Scholar

[11] Gomes de Andrade F., de Souza Baptista C., Augusto Davis Jr. C., Improving geographic information retrieval in spatial data infrastructures, Geoinformatica, 2014, DOI 10.1007/s10707-014-0202-x.10.1007/s10707-014-0202-xSearch in Google Scholar

[12] Giuliani G., Ray N., Lehmann A., Grid-enabled Spatial Data Infrastructure for environmental sciences: Challenges and opportunities, Future Generation Computer Systems, 27, 2011, 292–303.10.1016/j.future.2010.09.011Search in Google Scholar

[13] IDABC, EIF – European Interoperability Framework for pan-European eGovernment services, 2004.Search in Google Scholar

[14] IEEE Standard, Institute of Electrical and Electronics Engineers. IEEE Standard Computer Dictionary: A Compilation of IEEE Standard Computer Glossaries. p. 42, New York, 1990.Search in Google Scholar

[15] ISA 2011 EIF – European Interoperability Framework. Towards Interoperability for European Public Services. NO-30-11-312-EN-C. European Commission, Directorate-General for Informatics.Search in Google Scholar

[16] ISO/IEC, Technical Draft Report, Ref. No. JTC1 SC36 WG4 N0070. Information Technology – Learning, education, and training – Management and delivery – Specification and use extensions and profiles, 2003. US SC36 Secretariat.Search in Google Scholar

[17] Iwaniak A., Kubik T., Ontologies in GIS and their use for construction of intelligent geoportals, Annals of Geomatics, VI, 7, 2008, 23-34.Search in Google Scholar

[18] Iwaniak A., Kubik T., Paluszyński W., Tykierko M., Kaczmarek I., Semantic based extension of search capability of SDI, Global Geospatial Conference 2012 “Spatially Enabling Government, Industry and Citizens”, Québec City, Canada, May 14-17.Search in Google Scholar

[19] Iwaniak A., Łukowicz J., Strzelecki M., Kaczmarek I., Implementation aspects of an intelligent spatial information infrastructure, Annals of Geomatics, X, 4, 2012, 103-117.Search in Google Scholar

[20] KRI, 2012 Rozporządzenie Rady Ministrów z dnia 16 maja 2012 r. w sprawie Krajowych Ram Interoperacyjności, minimalnych wymagań dla rejestrów publicznych i wymiany informacji w postaci elektronicznej oraz minimalnych wymagań dla systemów teleinformatycznych (Dz. U. z 2012 r. poz. 526).Search in Google Scholar

[21] Kaczmarek I., Iwaniak A., The role of thesaurus in creating semantic interoperability, Annals of Geomatics, IX, 4, 2011, 61-69.Search in Google Scholar

[22] Liang S.H.L., Croitoru A., Vincent Tao C., A distributed geospatial infrastructure for Sensor Web, Computers & Geosciences, 31, 2005, 221–231.10.1016/j.cageo.2004.06.014Search in Google Scholar

[23] Lutz M., Sprado J., Klien E., Schubert C., Christ I., Overcoming semantic heterogeneity in spatial data infrastructures, Computers & Geosciences, 35, 2009, 739–752.10.1016/j.cageo.2007.09.017Search in Google Scholar

[24] Michalak J., Languages derived from and connected with GML, Annals of Geomatics, VI, 6, 2008, 75-84.Search in Google Scholar

[25] Michalak J., UML geospatial data models and their transformation into GML schemas and database structures, Annals of Geomatics, X, 1, 2012, 15-34.Search in Google Scholar

[26] Nałęcz T., The use of spatial data models and their transformation (UML, XML, GML) in geology and hydrogeology, Annals of Geomatics, IX, 4, 2011, 105-115.Search in Google Scholar

[27] Prandi F., De Amicis R., Conti G., Debiasi A., Use of OGC Web Standard for a Spatio-Temporal Enabled SDI for Civil Protection, Proceedings of the 17th International Conference on 3D Web Technology, New York, 2012.10.1145/2338714.2338732Search in Google Scholar

[28] Rossa M., Gogołek W., Łukasiewicz A., Geostandardy, metadane i dyrektywa INSPIRE. Poradnik metodyczny Zintegrowanego Systemu Kartografii Geologicznej IKAR. Państwowy Instytut Geologiczny, Warszawa, 2009.Search in Google Scholar

[29] Rossa M., Aplikacje GML dla środowiska na przykładzie GeoSciML i GWML2 – stan aktualny, kierunki rozwoju, zastosowania praktyczne, Konferencja „GML w praktyce”, 12.04.2012, Kon-Dor, Warszawa, 2013.Search in Google Scholar

[30] Rossa M., 2014a Zastosowanie języka GML do przetwarzania danych geologicznych, XXIII Szkoła eksploatacji górniczej, 24-28.02.2014, Kraków.Search in Google Scholar

[31] Rossa M., 2014b Wykorzystanie języka GML do opisu danych hydrogeologicznych i hydrograficznych, XXIII Szkoła eksploatacji górniczej, 24-28.02.2014, Kraków.Search in Google Scholar

[32] Sánchez López T., RFID and sensor integration standards: State and future prospects, Computer Standards & Interfaces, 33, 2011, 207–213.10.1016/j.csi.2010.09.002Search in Google Scholar

eISSN:
2300-3405
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Computer Sciences, Artificial Intelligence, Software Development