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Published in: Earth Science Informatics 4/2019

06-08-2019 | Research Article

Towards an information centric flood ontology for information management and communication

Authors: Yusuf Sermet, Ibrahim Demir

Published in: Earth Science Informatics | Issue 4/2019

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Abstract

Advancements and new techniques in information technologies are making it possible to manage, analyze and present large-scale environmental modeling results and spatial data acquired from various sources. However, it is a major challenge to make this data accessible because of its unstructured, incomplete and varied nature. Extracting information and making accurate inferences from various data sources rapidly is critical for natural disaster preparedness and response. Critical information about disasters needs to be provided in a structured and easily accessible way in a context-specific manner. This paper introduces a group of information-centric ontologies that encompass the flood domain and describes how they can be benefited to access, analyze, and visualize flood-related data with natural language queries. The presented methodology enables the easy integration of domain knowledge into expert systems and voice-enabled intelligent applications that can be accessed through web-based information platforms, instant messaging apps, automated workflow systems, home automation devices, and augmented and virtual reality platforms. A case study is described to demonstrate the usage of presented ontologies in such intelligent systems.

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Literature
go back to reference Abburu S, Golla SB (2017) Ontology and NLP support for building disaster knowledge base. In: 2017 2nd International Conference on Communication and Electronics Systems (ICCES). IEEE, pp 98–103 Abburu S, Golla SB (2017) Ontology and NLP support for building disaster knowledge base. In: 2017 2nd International Conference on Communication and Electronics Systems (ICCES). IEEE, pp 98–103
go back to reference Agresta A, Fattoruso G, Pollino M, Pasanisi F, Tebano C, De Vito S, Di Francia G (2014) An ontology framework for flooding forecasting. In: International conference on computational science and its applications. Springer, pp 417–428 Agresta A, Fattoruso G, Pollino M, Pasanisi F, Tebano C, De Vito S, Di Francia G (2014) An ontology framework for flooding forecasting. In: International conference on computational science and its applications. Springer, pp 417–428
go back to reference Apacible JT, Encarnación MJ, Nareddy KR (2013) U.S. patent no. 8,606,739. Washington, DC: U.S. Patent and Trademark Office Apacible JT, Encarnación MJ, Nareddy KR (2013) U.S. patent no. 8,606,739. Washington, DC: U.S. Patent and Trademark Office
go back to reference Babitski G, Probst F, Hoffmann J, Oberle D (2009) Ontology design for information integration in disaster management Babitski G, Probst F, Hoffmann J, Oberle D (2009) Ontology design for information integration in disaster management
go back to reference Beran B, Piasecki M (2009) Engineering new paths to water data. Comput Geosci 35(4):753–760CrossRef Beran B, Piasecki M (2009) Engineering new paths to water data. Comput Geosci 35(4):753–760CrossRef
go back to reference Bermudez LE, Piasecki M (2003) Hydrologic ontology for the web. In: AGU Fall Meeting Abstracts Bermudez LE, Piasecki M (2003) Hydrologic ontology for the web. In: AGU Fall Meeting Abstracts
go back to reference Brank J, Grobelnik M, Mladenic D (2005) A survey of ontology evaluation techniques. In Proceedings of the conference on data mining and data warehouses (SiKDD 2005). Citeseer Ljubljana, Slovenia, pp 166–170 Brank J, Grobelnik M, Mladenic D (2005) A survey of ontology evaluation techniques. In Proceedings of the conference on data mining and data warehouses (SiKDD 2005). Citeseer Ljubljana, Slovenia, pp 166–170
go back to reference De Nicola A, Missikoff M, Navigli R (2009) A software engineering approach to ontology building. Inf Syst 34(2):258–275CrossRef De Nicola A, Missikoff M, Navigli R (2009) A software engineering approach to ontology building. Inf Syst 34(2):258–275CrossRef
go back to reference Demir I, Beck MB, (2009) GWIS: a prototype information system for Georgia watersheds. In Georgia water resources conference: regional water management opportunities, UGA, Athens, GA Demir I, Beck MB, (2009) GWIS: a prototype information system for Georgia watersheds. In Georgia water resources conference: regional water management opportunities, UGA, Athens, GA
go back to reference Demir I, Krajewski WF (2013) Towards an integrated flood information system: centralized data access, analysis, and visualization. Environ Model Softw 50:77–84CrossRef Demir I, Krajewski WF (2013) Towards an integrated flood information system: centralized data access, analysis, and visualization. Environ Model Softw 50:77–84CrossRef
go back to reference Demir I, Szczepanek R (2017) Optimization of river network representation data models for web-based systems. Earth and Space Science 4(6):336–347CrossRef Demir I, Szczepanek R (2017) Optimization of river network representation data models for web-based systems. Earth and Space Science 4(6):336–347CrossRef
go back to reference Demir I, Jiang F, Walker RV, Parker AK, Beck MB (2009) Information systems and social legitimacy scientific visualization of water quality. In: EEEE International conference on systems, man and cybernetics, 2009. SMC 2009. IEEE, pp 1067–1072 Demir I, Jiang F, Walker RV, Parker AK, Beck MB (2009) Information systems and social legitimacy scientific visualization of water quality. In: EEEE International conference on systems, man and cybernetics, 2009. SMC 2009. IEEE, pp 1067–1072
go back to reference Demir I, Conover H, Krajewski WF, Seo BC, Goska R, He Y, McEniry MF, Graves SJ, Petersen W (2015) Data-enabled field experiment planning, management, and research using cyberinfrastructure. J Hydrometeorol 16(3):1155–1170CrossRef Demir I, Conover H, Krajewski WF, Seo BC, Goska R, He Y, McEniry MF, Graves SJ, Petersen W (2015) Data-enabled field experiment planning, management, and research using cyberinfrastructure. J Hydrometeorol 16(3):1155–1170CrossRef
go back to reference Demir I, Yildirim E, Sermet Y, Sit MA (2018) FLOODSS: Iowa flood information system as a generalized flood cyberinfrastructure. International Journal of River Basin Management 16(3):393–400CrossRef Demir I, Yildirim E, Sermet Y, Sit MA (2018) FLOODSS: Iowa flood information system as a generalized flood cyberinfrastructure. International Journal of River Basin Management 16(3):393–400CrossRef
go back to reference Djurić D, Gašević D, Devedžić V, Damjanović V (2005) A UML profile for OWL ontologies. In: Model driven architecture. Springer, Berlin, Heidelberg, pp 204–219CrossRef Djurić D, Gašević D, Devedžić V, Damjanović V (2005) A UML profile for OWL ontologies. In: Model driven architecture. Springer, Berlin, Heidelberg, pp 204–219CrossRef
go back to reference Dolbear C, Goodwin J, Mizen H, Ritchie J (2005) Semantic interoperability between topographic data and a flood defence ontology. Ordnance Survey Research & Innovation, Southampton Dolbear C, Goodwin J, Mizen H, Ritchie J (2005) Semantic interoperability between topographic data and a flood defence ontology. Ordnance Survey Research & Innovation, Southampton
go back to reference Garrido J, Requena I, Mambretti S (2012) Semantic model for flood management. J Hydroinf 14(4):918–936CrossRef Garrido J, Requena I, Mambretti S (2012) Semantic model for flood management. J Hydroinf 14(4):918–936CrossRef
go back to reference Gray AJG, Galpin I, Fernandes AA, Paton NW, Page K, Sadler J, Kyzirakos K, Koubarakis M, Calbimonte JP, García Castro R, Corcho O (2010) Semsorgrid4env architecture Gray AJG, Galpin I, Fernandes AA, Paton NW, Page K, Sadler J, Kyzirakos K, Koubarakis M, Calbimonte JP, García Castro R, Corcho O (2010) Semsorgrid4env architecture
go back to reference Gruber TR (1995) Toward principles for the design of ontologies used for knowledge sharing? Int J Hum Comput Stud 43(5–6):907–928CrossRef Gruber TR (1995) Toward principles for the design of ontologies used for knowledge sharing? Int J Hum Comput Stud 43(5–6):907–928CrossRef
go back to reference Guarino N (ed) (1998) Formal ontology in information systems: proceedings of the first international conference (FOIS'98), June 6–8, Trento, Italy, vol. 46. IOS press Guarino N (ed) (1998) Formal ontology in information systems: proceedings of the first international conference (FOIS'98), June 6–8, Trento, Italy, vol. 46. IOS press
go back to reference Guha-Sapir D, Vos F, Below R, Ponserre S (2012) Annual disaster statistical review 2011: the numbers and trends. Centre for Research on the Epidemiology of Disasters (CRED) Guha-Sapir D, Vos F, Below R, Ponserre S (2012) Annual disaster statistical review 2011: the numbers and trends. Centre for Research on the Epidemiology of Disasters (CRED)
go back to reference Holz KP, Hildebrandt G, Weber L (2006) Concept for a web-based information system for flood management. Nat Hazards 38(1–2):121–140CrossRef Holz KP, Hildebrandt G, Weber L (2006) Concept for a web-based information system for flood management. Nat Hazards 38(1–2):121–140CrossRef
go back to reference Jackson P (1998) Introduction to expert systems. Addison-Wesley Longman Publishing Co., Inc Jackson P (1998) Introduction to expert systems. Addison-Wesley Longman Publishing Co., Inc
go back to reference Jones CS, Davis CA, Drake CW, Schilling KE, Debionne SH, Gilles DW, Demir I, Weber LJ (2018) Iowa statewide stream nitrate load calculated using in situ sensor network. JAWRA J Am Water Resour Assoc 54(2):471–486CrossRef Jones CS, Davis CA, Drake CW, Schilling KE, Debionne SH, Gilles DW, Demir I, Weber LJ (2018) Iowa statewide stream nitrate load calculated using in situ sensor network. JAWRA J Am Water Resour Assoc 54(2):471–486CrossRef
go back to reference Kalabokidis K, Athanasis N, Vaitis M (2011) OntoFire: an ontology-based geo-portal for wildfires. Nat Hazards Earth Syst Sci 11(12):3157–3170CrossRef Kalabokidis K, Athanasis N, Vaitis M (2011) OntoFire: an ontology-based geo-portal for wildfires. Nat Hazards Earth Syst Sci 11(12):3157–3170CrossRef
go back to reference Katuk N, Ruhana Ku-Mahamud K, Norwawi N, Deris S (2009) Web-based support system for flood response operation in Malaysia. Disaster Prevention and Management: An International Journal 18(3):327–337CrossRef Katuk N, Ruhana Ku-Mahamud K, Norwawi N, Deris S (2009) Web-based support system for flood response operation in Malaysia. Disaster Prevention and Management: An International Journal 18(3):327–337CrossRef
go back to reference Kogut P, Cranefield S, Hart L, Dutra M, Baclawski K, Kokar M, Smith J (2002) UML for ontology development. Knowl Eng Rev 17(1):61–64CrossRef Kogut P, Cranefield S, Hart L, Dutra M, Baclawski K, Kokar M, Smith J (2002) UML for ontology development. Knowl Eng Rev 17(1):61–64CrossRef
go back to reference Kollarits S, Wergles N, Siegel H, Liehr C, Kreuzer S, Torsoni D, Sulzenbacher U, Papez J, Mayer R, Plank C, Maurer L (2009) ONITOR–an ontological basis for risk management. Tech. rep., MONITOR (January 2009) Kollarits S, Wergles N, Siegel H, Liehr C, Kreuzer S, Torsoni D, Sulzenbacher U, Papez J, Mayer R, Plank C, Maurer L (2009) ONITOR–an ontological basis for risk management. Tech. rep., MONITOR (January 2009)
go back to reference Kurte KR, Durbha SS, King RL, Younan NH, Potnis AV (2017) A spatio-temporal ontological model for flood disaster monitoring. In: 2017 IEEE International Geoscience and Remote Sensing Symposium (IGARSS), Fort Worth, TX, pp 5213–5216 Kurte KR, Durbha SS, King RL, Younan NH, Potnis AV (2017) A spatio-temporal ontological model for flood disaster monitoring. In: 2017 IEEE International Geoscience and Remote Sensing Symposium (IGARSS), Fort Worth, TX, pp 5213–5216
go back to reference Liang TP, Turban E, Aronson JE (2005) Decision support systems and intelligent systems. Penerbit Andi, Yogyakarta Liang TP, Turban E, Aronson JE (2005) Decision support systems and intelligent systems. Penerbit Andi, Yogyakarta
go back to reference Liao SH (2005) Expert system methodologies and applications—a decade review from 1995 to 2004. Expert Syst Appl 28(1):93–103CrossRef Liao SH (2005) Expert system methodologies and applications—a decade review from 1995 to 2004. Expert Syst Appl 28(1):93–103CrossRef
go back to reference Peppard J, Ward J (2016) The strategic management of information systems: building a digital strategy. Wiley Peppard J, Ward J (2016) The strategic management of information systems: building a digital strategy. Wiley
go back to reference Scheuer S, Haase D, Meyer V (2013) Towards a flood risk assessment ontology–knowledge integration into a multi-criteria risk assessment approach. Comput Environ Urban Syst 37:82–94CrossRef Scheuer S, Haase D, Meyer V (2013) Towards a flood risk assessment ontology–knowledge integration into a multi-criteria risk assessment approach. Comput Environ Urban Syst 37:82–94CrossRef
go back to reference Sermet Y, Demir I (2018a) An intelligent system on knowledge generation and communication about flooding. Environ Model Softw 108:51–60CrossRef Sermet Y, Demir I (2018a) An intelligent system on knowledge generation and communication about flooding. Environ Model Softw 108:51–60CrossRef
go back to reference Sermet Y, Demir I (2018b) Flood action VR: a virtual reality framework for disaster awareness and emergency response training. In: Proceedings of the international conference on modeling, simulation and visualization methods (MSV), pp. 65–68 Sermet Y, Demir I (2018b) Flood action VR: a virtual reality framework for disaster awareness and emergency response training. In: Proceedings of the international conference on modeling, simulation and visualization methods (MSV), pp. 65–68
go back to reference Sit MA, Koylu C, Demir I (2019) Identifying disaster-related tweets and their semantic, spatial and temporal context using deep learning, natural language processing and spatial analysis: a case study of hurricane Irma. Int J Digital Earth 1–25 Sit MA, Koylu C, Demir I (2019) Identifying disaster-related tweets and their semantic, spatial and temporal context using deep learning, natural language processing and spatial analysis: a case study of hurricane Irma. Int J Digital Earth 1–25
go back to reference Studer R, Benjamins VR, Fensel D (1998) Knowledge engineering: principles and methods. Data Knowl Eng 25(1):161–198CrossRef Studer R, Benjamins VR, Fensel D (1998) Knowledge engineering: principles and methods. Data Knowl Eng 25(1):161–198CrossRef
go back to reference Sui DZ, Maggio RC (1999) Integrating GIS with hydrological modeling: practices, problems, and prospects. Comput Environ Urban Syst 23(1):33–51CrossRef Sui DZ, Maggio RC (1999) Integrating GIS with hydrological modeling: practices, problems, and prospects. Comput Environ Urban Syst 23(1):33–51CrossRef
go back to reference Tripathi A, Babaie HA (2008) Developing a modular hydrogeology ontology by extending the SWEET upper-level ontologies. Comput Geosci 34(9):1022–1033CrossRef Tripathi A, Babaie HA (2008) Developing a modular hydrogeology ontology by extending the SWEET upper-level ontologies. Comput Geosci 34(9):1022–1033CrossRef
go back to reference Uschold M, King M (1995) Towards a methodology for building ontologies. Artificial Intelligence Applications Institute, University of Edinburgh, Edinburgh, pp 15–30 Uschold M, King M (1995) Towards a methodology for building ontologies. Artificial Intelligence Applications Institute, University of Edinburgh, Edinburgh, pp 15–30
go back to reference Wang W, Stewart K (2015) Spatiotemporal and semantic information extraction from web news reports about natural hazards. Comput Environ Urban Syst 50:30–40CrossRef Wang W, Stewart K (2015) Spatiotemporal and semantic information extraction from web news reports about natural hazards. Comput Environ Urban Syst 50:30–40CrossRef
go back to reference Weber LJ, Muste M, Bradley AA, Amado AA, Demir I, Drake CW, Krajewski WF, Loeser TJ, Politano MS, Shea BR, Thomas NW (2018) The Iowa watersheds project: Iowa's prototype for engaging communities and professionals in watershed hazard mitigation. International Journal of River Basin Management 16(3):315–328CrossRef Weber LJ, Muste M, Bradley AA, Amado AA, Demir I, Drake CW, Krajewski WF, Loeser TJ, Politano MS, Shea BR, Thomas NW (2018) The Iowa watersheds project: Iowa's prototype for engaging communities and professionals in watershed hazard mitigation. International Journal of River Basin Management 16(3):315–328CrossRef
go back to reference Wu X, Zhu X, Wu GQ, Ding W (2014) Data mining with big data. IEEE Trans Knowl Data Eng 26(1):97–107CrossRef Wu X, Zhu X, Wu GQ, Ding W (2014) Data mining with big data. IEEE Trans Knowl Data Eng 26(1):97–107CrossRef
go back to reference Xu J, Nyerges TL, Nie G (2014) Modeling and representation for earthquake emergency response knowledge: perspective for working with geo-ontology. Int J Geogr Inf Sci 28(1):185–205CrossRef Xu J, Nyerges TL, Nie G (2014) Modeling and representation for earthquake emergency response knowledge: perspective for working with geo-ontology. Int J Geogr Inf Sci 28(1):185–205CrossRef
Metadata
Title
Towards an information centric flood ontology for information management and communication
Authors
Yusuf Sermet
Ibrahim Demir
Publication date
06-08-2019
Publisher
Springer Berlin Heidelberg
Published in
Earth Science Informatics / Issue 4/2019
Print ISSN: 1865-0473
Electronic ISSN: 1865-0481
DOI
https://doi.org/10.1007/s12145-019-00398-9

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