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2010 | Vol. 10, iss. 2 | 69--74
Tytuł artykułu

Analysis of the applicability of domain ontology in copper alloys processing

Wybrane pełne teksty z tego czasopisma
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Efficient use of corporate resources in the form of intellectual capital is due in large measure to effectiveness of knowledge codification and distribution systems. Making intellectual resources available to employees in time short enough to enable efficient use is possible due to search tools. The goal is to provide relevant and significant knowledge in right time. Full-text search in the databases, whether the use of directories, no longer fulfills its tasks in a situation where knowledge comes from diverse, often semantically and formally inconsistent sources. The creation of an ontology-based system would eliminate these difficulties. This paper proposes algorithms of development domain ontology of the knowledge of copper alloys, and also analyzes the feasibility of such a system. The estimate benefits of implementation, according to the authors, as well as the main difficulties associated with implementation was presented. Conclusions reached are the basis for a broader study on the feasibility of this class of systems in the foundry industry. Anticipated solution of this problem oriented on the processing of copper alloys, information-share tools discussed in the article must include specific to foundry processes issues, and thus will have an innovative character.
Wydawca

Rocznik
Strony
69--74
Opis fizyczny
Bibliogr. 13 poz., rys.
Twórcy
  • Polish Foundry Research Institute, Zakopiańska 73, Kraków, Poland
  • AGH, Faculty of Metals Engineering and Industrial Computer Science, Department of Industrial Computer Science, Mickiewicza 30, Kraków, Poland , bmrzyglod@tempus.metal.agh.edu.pl
autor
  • AGH, Faculty of Metals Engineering and Industrial Computer Science, Department of Industrial Computer Science, Mickiewicza 30, Kraków, Poland
autor
  • AGH, Faculty of Metals Engineering and Industrial Computer Science, Department of Industrial Computer Science, Mickiewicza 30, Kraków, Poland
Bibliografia
  • [1] Brachman R, Levesque H, Knowledge Representation and Reasoning, Morgan Kaufmann, 2004.
  • [2] Thomas R. Gruber: A translation approach to portable ontology specifications. Knowl. Acquis., 5 (2), 199–220, June 1993.
  • [3] Ciszewski S., Kluska-Nawarecka S., Document driven ontological engineering with applications in casting defects diagnostic, Computer Methods in Materials Science, AGH, Krakow, 2004, ISSN 1641-8581 (in Polish).
  • [4] The Protégé Ontology Editor and Knowledge Acquisition System, http://protege.stanford.edu/
  • [5] Zhuoming Xu, Shichao Zhang, Yisheng Dong. Mapping between Relational Database Schema and OWL Ontology for Deep Annotation. Proceedings of the 2006 IEEE/WIC/ACM International Conference on Web Intelligence .
  • [6] Nadine Cullot, Raji Ghawi, and Kokou Yétongnon. DB2OWL: A Tool for Automatic Database-to-Ontology Mapping. In Proceedings of the 15th Italian Symposium on Advanced Database Systems (SEBD 2007), Torre Canne di Fasano (BR), Italy, p. 491-494, June 2007.
  • [7] Nikolaos Konstantinou, Dimitrios-Emmanuel Spanos, Michael Chalas, Emmanuel Solidakis and Nikolas Mitrou. VisAVis: An Approach to an Intermediate Layer between Ontologies and Relational Database Contents. Web Information Systems Modeling 2006.
  • [8] Bąk J., Jędrzejek C., Wnioskowanie hybrydowe w relacyjnej bazie danych, wykorzystujące ontologię OWL wzbogaconą regułami języka SWRL, XIII Konferencja PLOUG, Kościelisko, Październik 2007 (in Polish).
  • [9] M. Kondracki, J. Gawronski, Identification of some structural components in fixture brasses, Archives of Foundry vol. 5, No. 15 (2005), 204–209 (in Polish).
  • [10] L.A. Dobrzański, J. Mikuła, D. Pakuła, J. Kopač, M. Soković, Cutting properties of the ceramic tool materials based on Si3N4 and Al2O3 coated with PVD and CVD process, Proceedings of the 12th Scientific International Conference „Achievements in Mechanical and Materials Engineering” AMME’2003, Gliwice – Zakopane, 2003, 249-252.
  • [11] OWL: (2004) OWL Web Ontology Language Reference. http://www.w3.org/TR/owl-ref
  • [12] Martin O’Connor, Amar Das, SQWRL: a Query Language for OWL, OWL: Experiences and Directions (OWLED 2009), Fifth International Workshop, Chantilly, VA, 2009.
  • [13] Szymanski K., Dobrowolski G., Kozlak J., Zygmunt A., A proposition of knowledge management methodology for the purpose of reasoning with the use of an upper-ontology, Computer Science 2007, Vol. 8, Spec. Ed.
Typ dokumentu
Bibliografia
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Identyfikator YADDA
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