Search (233 results, page 11 of 12)

  • × theme_ss:"Wissensrepräsentation"
  1. Wu, D.; Shi, J.: Classical music recording ontology used in a library catalog (2016) 0.00
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  2. Nagao, M.: Knowledge and inference (1990) 0.00
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    Issue
    Aus d. Japan. übers. von Richard Weyrauch.
  3. Cao, N.; Sun, J.; Lin, Y.-R.; Gotz, D.; Liu, S.; Qu, H.: FacetAtlas : Multifaceted visualization for rich text corpora (2010) 0.00
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  4. Ma, N.; Zheng, H.T.; Xiao, X.: ¬An ontology-based latent semantic indexing approach using long short-term memory networks (2017) 0.00
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    Language
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  5. Dietiker, S.: Cognitive Map einer Bibliothek : eine Überprüfung der Methodentauglichkeit im Bereich Bibliothekswissenschaft - am Beispiel der Kantonsbibliothek Graubünden (2016) 0.00
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  6. Naskar, D.; Das, S.: HNS ontology using faceted approach (2019) 0.00
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  7. Miles, A.; Matthews, B.; Beckett, D.; Brickley, D.; Wilson, M.; Rogers, N.: SKOS: A language to describe simple knowledge structures for the web (2005) 0.00
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  8. Stollberg, M.: Ontologiebasierte Wissensmodellierung : Verwendung als semantischer Grundbaustein des Semantic Web (2002) 0.00
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    Abstract
    Basierend auf diesen Abhandlungen wird in Kapitel D die Verwendung von Ontologien im Semantic Web behandelt. Dabei ist das Semantic Web nicht als computergestützte Lösung für ein konkretes Anwendungsgebiet zu verstehen, sondern - ähnlich wie existente Web-Technologien - als eine informationstechnische Infrastruktur zur Bereitstellung und Verknüpfung von Applikationen für verschiedene Anwendungsgebiete. Die technologischen Lösungen zur Umsetzung des Semantic Web befinden sich noch in der Entwicklungsphase. Daher werden zunächst die grundlegenden Ideen der Vision des Semantic Web genauer erläutert und das antizipierte Architekturmodell zur Realisierung derselben vorgestellt, wobei insbesondere die darin angestrebte Rolle von Ontologien herausgearbeitet wird. Anschließend daran wird die formale Darstellung von Ontologien durch web-kompatible Sprachen erörtert, wodurch die Verwendung von Ontologien im Semantic Web ermöglicht werden soll. In diesem Zusammenhang sollen ferner die Beweggründe für die Verwendung von Ontologien als bedeutungsdefinierende Konstrukte im Semantic Web verdeutlicht sowie die auftretenden Herausforderungen hinsichtlich der Handhabung von Ontologien aufgezeigt werden. Dazu werden als dritter Aspekt des Kapitels entsprechende Lösungsansätze des Ontologie-Managements diskutiert. Abschließend wird auf die Implikationen für konkrete Anwendungen der Semantic Web - Technologien eingegangen, die aus der Verwendung von Ontologien im Semantic Web resultieren. Zum Abschluss der Ausführungen werden die Ergebnisse der Untersuchung zusammengefasst. Dabei soll auch eine kritische Betrachtung bezüglich der Notwendigkeit semantischer Web-Technologien sowie der Realisierbarkeit der Vision des Semantic Web vorgenommen werden.
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  9. Frey, J.; Streitmatter, D.; Götz, F.; Hellmann, S.; Arndt, N.: DBpedia Archivo (2020) 0.00
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    Content
    # Community action on all ontologies (quality, FAIRness, conformity) Archivo is extensible and allows contributions to give consumers a central place to encode their requirements. We envision fostering adherence to standards and strengthening incentives for publishers to build a better (FAIRer) web of ontologies. 1. SHACL (https://www.w3.org/TR/shacl/, co-edited by DBpedia's CTO D. Kontokostas) enables easy testing of ontologies. Archivo offers free SHACL continuous integration testing for ontologies. Anyone can implement their SHACL tests and add them to the SHACL library on Github. We believe that there are many synergies, i.e. SHACL tests for your ontology are helpful for others as well. 2. We are looking for ontology experts to join DBpedia and discuss further validation (e.g. stars) to increase FAIRness and quality of ontologies. We are forming a steering committee and also a PC for the upcoming Vocarnival at SEMANTiCS 2021. Please message hellmann@informatik.uni-leipzig.de <mailto:hellmann@informatik.uni-leipzig.de>if you would like to join. We would like to extend the Archivo platform with relevant visualisations, tests, editing aides, mapping management tools and quality checks.
  10. Moustafid, Y. El: Semantic Web Techniken für E-Learning (2003) 0.00
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    Abstract
    Im fünften Kapitel wurden die neuen Suchmaschinen, die ausschließlich auf dem Konzept der Topic Maps basieren und diese Technik auch tatsächlich verwenden, angesprochen und mit Beispielanfragen erläutert. In dieser Diplomarbeit wurden wegen dem großen Einsatzpotential von Topic Maps, viele Gebiete angesprochen, angefangen bei den Webkatalogen über Suchmaschinen bis hin zum E-Learning. Mit XML Topic Maps gibt man den Beziehungen zwischen den verschiedenen Topics die Chance sich auszuzeichnen. Damit erreicht die Suche eine neue, bis dahin unmögliche Qualität. Mit einer Topic Map lassen sich beispielsweise die klassischen Navigationselemente technischer Dokumentation (Inhalt, Index, Glossar etc.) in einheitlicher Weise beschreiben; eine andere Topic Map könnte die inhaltliche Vernetzung von Artikeln in einem Lexikon ausdrücken (z.B. Person A wurde geboren in Stadt B, B liegt in Land C, Oper D wurde komponiert von A, Person E war Zeitgenosse von A) und für "siehe auch"-Verweise sorgen (andere Werke dieses Komponisten, andere Städte in diesem Land etc.). Es klingt wie die Lösung aller Suchprobleme. Allerdings nur in der Theorie. Denn Tools, die in der Lage sind, das Wissen oder die Riesendaten in Topicmaps automatisch zu generieren, sind noch Mangelware, was die Ausbreitung von Topic Maps hemmt. Der Aufbau solcher Netze erfordert sehr viel Zeit und sehr viel "Handarbeit" - und damit auch viel Geld, was viele Firmen davon abhält Topic Maps zu benutzen.
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  11. Panyr, J.: Thesauri, Semantische Netze, Frames, Topic Maps, Taxonomien, Ontologien - begriffliche Verwirrung oder konzeptionelle Vielfalt? (2006) 0.00
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  12. Hermans, J.: Ontologiebasiertes Information Retrieval für das Wissensmanagement (2008) 0.00
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  13. Botana Varela, J.: Unscharfe Wissensrepräsentationen bei der Implementation des Semantic Web (2004) 0.00
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  14. Hauer, M.: Mehrsprachige semantische Netze leichter entwickeln (2002) 0.00
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  15. Vlachidis, A.; Binding, C.; Tudhope, D.; May, K.: Excavating grey literature : a case study on the rich indexing of archaeological documents via natural language-processing techniques and knowledge-based resources (2010) 0.00
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  16. Ricci, F.; Schneider, R.: ¬Die Verwendung von SKOS-Daten zur semantischen Suchfragenerweiterung im Kontext des individualisierbaren Informationsportals RODIN (2010) 0.00
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  17. Alvers, M.R.: Semantische wissensbasierte Suche in den Life Sciences am Beispiel von GoPubMed (2010) 0.00
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  18. Klein, M.; Ding, Y.; Fensel, D.; Omelayenko, B.: Ontology management : storing, aligning and maintaining ontologies (2004) 0.00
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  19. Bierbach, P.: Wissensrepräsentation - Gegenstände und Begriffe : Bedingungen des Antinomieproblems bei Frege und Chancen des Begriffssystems bei Lambert (2001) 0.00
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  20. Schmude, A.N.: Ontologiebasierte Suche und Navigation in webbasierten Informationssystemen : am Beispiel Bürgerinformationsdienste (2004) 0.00
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