Search (2040 results, page 1 of 102)

  • × year_i:[2010 TO 2020}
  1. Kleineberg, M.: Context analysis and context indexing : formal pragmatics in knowledge organization (2014) 0.82
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    Source
    http://www.google.de/url?sa=t&rct=j&q=&esrc=s&source=web&cd=5&ved=0CDQQFjAE&url=http%3A%2F%2Fdigbib.ubka.uni-karlsruhe.de%2Fvolltexte%2Fdocuments%2F3131107&ei=HzFWVYvGMsiNsgGTyoFI&usg=AFQjCNE2FHUeR9oQTQlNC4TPedv4Mo3DaQ&sig2=Rlzpr7a3BLZZkqZCXXN_IA&bvm=bv.93564037,d.bGg&cad=rja
  2. Verwer, K.: Freiheit und Verantwortung bei Hans Jonas (2011) 0.76
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    Content
    Vgl.: http%3A%2F%2Fcreativechoice.org%2Fdoc%2FHansJonas.pdf&usg=AOvVaw1TM3teaYKgABL5H9yoIifA&opi=89978449.
  3. Herb, U.; Beucke, D.: ¬Die Zukunft der Impact-Messung : Social Media, Nutzung und Zitate im World Wide Web (2013) 0.57
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    Content
    Vgl. unter: https://www.leibniz-science20.de%2Fforschung%2Fprojekte%2Faltmetrics-in-verschiedenen-wissenschaftsdisziplinen%2F&ei=2jTgVaaXGcK4Udj1qdgB&usg=AFQjCNFOPdONj4RKBDf9YDJOLuz3lkGYlg&sig2=5YI3KWIGxBmk5_kv0P_8iQ.
  4. Suchenwirth, L.: Sacherschliessung in Zeiten von Corona : neue Herausforderungen und Chancen (2019) 0.53
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    Footnote
    https%3A%2F%2Fjournals.univie.ac.at%2Findex.php%2Fvoebm%2Farticle%2Fdownload%2F5332%2F5271%2F&usg=AOvVaw2yQdFGHlmOwVls7ANCpTii.
  5. Huo, W.: Automatic multi-word term extraction and its application to Web-page summarization (2012) 0.50
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    Abstract
    In this thesis we propose three new word association measures for multi-word term extraction. We combine these association measures with LocalMaxs algorithm in our extraction model and compare the results of different multi-word term extraction methods. Our approach is language and domain independent and requires no training data. It can be applied to such tasks as text summarization, information retrieval, and document classification. We further explore the potential of using multi-word terms as an effective representation for general web-page summarization. We extract multi-word terms from human written summaries in a large collection of web-pages, and generate the summaries by aligning document words with these multi-word terms. Our system applies machine translation technology to learn the aligning process from a training set and focuses on selecting high quality multi-word terms from human written summaries to generate suitable results for web-page summarization.
    Content
    A Thesis presented to The University of Guelph In partial fulfilment of requirements for the degree of Master of Science in Computer Science. Vgl. Unter: http://www.inf.ufrgs.br%2F~ceramisch%2Fdownload_files%2Fpublications%2F2009%2Fp01.pdf.
    Date
    10. 1.2013 19:22:47
  6. Gödert, W.; Lepsky, K.: Informationelle Kompetenz : ein humanistischer Entwurf (2019) 0.44
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    Footnote
    Rez. in: Philosophisch-ethische Rezensionen vom 09.11.2019 (Jürgen Czogalla), Unter: https://philosophisch-ethische-rezensionen.de/rezension/Goedert1.html. In: B.I.T. online 23(2020) H.3, S.345-347 (W. Sühl-Strohmenger) [Unter: https%3A%2F%2Fwww.b-i-t-online.de%2Fheft%2F2020-03-rezensionen.pdf&usg=AOvVaw0iY3f_zNcvEjeZ6inHVnOK]. In: Open Password Nr. 805 vom 14.08.2020 (H.-C. Hobohm) [Unter: https://www.password-online.de/?mailpoet_router&endpoint=view_in_browser&action=view&data=WzE0MywiOGI3NjZkZmNkZjQ1IiwwLDAsMTMxLDFd].
  7. Farazi, M.: Faceted lightweight ontologies : a formalization and some experiments (2010) 0.42
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    Abstract
    While classifications are heavily used to categorize web content, the evolution of the web foresees a more formal structure - ontology - which can serve this purpose. Ontologies are core artifacts of the Semantic Web which enable machines to use inference rules to conduct automated reasoning on data. Lightweight ontologies bridge the gap between classifications and ontologies. A lightweight ontology (LO) is an ontology representing a backbone taxonomy where the concept of the child node is more specific than the concept of the parent node. Formal lightweight ontologies can be generated from their informal ones. The key applications of formal lightweight ontologies are document classification, semantic search, and data integration. However, these applications suffer from the following problems: the disambiguation accuracy of the state of the art NLP tools used in generating formal lightweight ontologies from their informal ones; the lack of background knowledge needed for the formal lightweight ontologies; and the limitation of ontology reuse. In this dissertation, we propose a novel solution to these problems in formal lightweight ontologies; namely, faceted lightweight ontology (FLO). FLO is a lightweight ontology in which terms, present in each node label, and their concepts, are available in the background knowledge (BK), which is organized as a set of facets. A facet can be defined as a distinctive property of the groups of concepts that can help in differentiating one group from another. Background knowledge can be defined as a subset of a knowledge base, such as WordNet, and often represents a specific domain.
    Content
    PhD Dissertation at International Doctorate School in Information and Communication Technology. Vgl.: https%3A%2F%2Fcore.ac.uk%2Fdownload%2Fpdf%2F150083013.pdf&usg=AOvVaw2n-qisNagpyT0lli_6QbAQ.
  8. Shala, E.: ¬Die Autonomie des Menschen und der Maschine : gegenwärtige Definitionen von Autonomie zwischen philosophischem Hintergrund und technologischer Umsetzbarkeit (2014) 0.41
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    Footnote
    Vgl. unter: https://www.google.de/url?sa=t&rct=j&q=&esrc=s&source=web&cd=2&cad=rja&uact=8&ved=2ahUKEwizweHljdbcAhVS16QKHXcFD9QQFjABegQICRAB&url=https%3A%2F%2Fwww.researchgate.net%2Fpublication%2F271200105_Die_Autonomie_des_Menschen_und_der_Maschine_-_gegenwartige_Definitionen_von_Autonomie_zwischen_philosophischem_Hintergrund_und_technologischer_Umsetzbarkeit_Redigierte_Version_der_Magisterarbeit_Karls&usg=AOvVaw06orrdJmFF2xbCCp_hL26q.
  9. Zeng, Q.; Yu, M.; Yu, W.; Xiong, J.; Shi, Y.; Jiang, M.: Faceted hierarchy : a new graph type to organize scientific concepts and a construction method (2019) 0.38
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    Content
    Vgl.: https%3A%2F%2Faclanthology.org%2FD19-5317.pdf&usg=AOvVaw0ZZFyq5wWTtNTvNkrvjlGA.
  10. Xiong, C.: Knowledge based text representations for information retrieval (2016) 0.35
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    Content
    Submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy in Language and Information Technologies. Vgl.: https%3A%2F%2Fwww.cs.cmu.edu%2F~cx%2Fpapers%2Fknowledge_based_text_representation.pdf&usg=AOvVaw0SaTSvhWLTh__Uz_HtOtl3.
  11. Semantische Technologien : Grundlagen - Konzepte - Anwendungen (2012) 0.34
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    Abstract
    Dieses Lehrbuch bietet eine umfassende Einführung in Grundlagen, Potentiale und Anwendungen Semantischer Technologien. Es richtet sich an Studierende der Informatik und angrenzender Fächer sowie an Entwickler, die Semantische Technologien am Arbeitsplatz oder in verteilten Applikationen nutzen möchten. Mit seiner an praktischen Beispielen orientierten Darstellung gibt es aber auch Anwendern und Entscheidern in Unternehmen einen breiten Überblick über Nutzen und Möglichkeiten dieser Technologie. Semantische Technologien versetzen Computer in die Lage, Informationen nicht nur zu speichern und wieder zu finden, sondern sie ihrer Bedeutung entsprechend auszuwerten, zu verbinden, zu Neuem zu verknüpfen, und so flexibel und zielgerichtet nützliche Leistungen zu erbringen. Das vorliegende Buch stellt im ersten Teil die als Semantische Technologien bezeichneten Techniken, Sprachen und Repräsentationsformalismen vor. Diese Elemente erlauben es, das in Informationen enthaltene Wissen formal und damit für den Computer verarbeitbar zu beschreiben, Konzepte und Beziehungen darzustellen und schließlich Inhalte zu erfragen, zu erschließen und in Netzen zugänglich zu machen. Der zweite Teil beschreibt, wie mit Semantischen Technologien elementare Funktionen und umfassende Dienste der Informations- und Wissensverarbeitung realisiert werden können. Hierzu gehören etwa die Annotation und das Erschließen von Information, die Suche in den resultierenden Strukturen, das Erklären von Bedeutungszusammenhängen sowie die Integration einzelner Komponenten in komplexe Ablaufprozesse und Anwendungslösungen. Der dritte Teil beschreibt schließlich vielfältige Anwendungsbeispiele in unterschiedlichen Bereichen und illustriert so Mehrwert, Potenzial und Grenzen von Semantischen Technologien. Die dargestellten Systeme reichen von Werkzeugen für persönliches, individuelles Informationsmanagement über Unterstützungsfunktionen für Gruppen bis hin zu neuen Ansätzen im Internet der Dinge und Dienste, einschließlich der Integration verschiedener Medien und Anwendungen von Medizin bis Musik.
    Content
    Inhalt: 1. Einleitung (A. Dengel, A. Bernardi) 2. Wissensrepräsentation (A. Dengel, A. Bernardi, L. van Elst) 3. Semantische Netze, Thesauri und Topic Maps (O. Rostanin, G. Weber) 4. Das Ressource Description Framework (T. Roth-Berghofer) 5. Ontologien und Ontologie-Abgleich in verteilten Informationssystemen (L. van Elst) 6. Anfragesprachen und Reasoning (M. Sintek) 7. Linked Open Data, Semantic Web Datensätze (G.A. Grimnes, O. Hartig, M. Kiesel, M. Liwicki) 8. Semantik in der Informationsextraktion (B. Adrian, B. Endres-Niggemeyer) 9. Semantische Suche (K. Schumacher, B. Forcher, T. Tran) 10. Erklärungsfähigkeit semantischer Systeme (B. Forcher, T. Roth-Berghofer, S. Agne) 11. Semantische Webservices zur Steuerung von Prooduktionsprozessen (M. Loskyll, J. Schlick, S. Hodeck, L. Ollinger, C. Maxeiner) 12. Wissensarbeit am Desktop (S. Schwarz, H. Maus, M. Kiesel, L. Sauermann) 13. Semantische Suche für medizinische Bilder (MEDICO) (M. Möller, M. Sintek) 14. Semantische Musikempfehlungen (S. Baumann, A. Passant) 15. Optimierung von Instandhaltungsprozessen durch Semantische Technologien (P. Stephan, M. Loskyll, C. Stahl, J. Schlick)
    RSWK
    Wissensrepräsentation / Semantisches Netz / RDF <Informatik> / OWL <Informatik> / Aufsatzsammlung
    Semantic Web / Information Extraction / Suche / Wissensbasiertes System / Aufsatzsammlung
    Semantic Web / Web Services / Semantische Modellierung / Ontologie <Wissensverarbeitung> / Suche / Navigieren / Anwendungsbereich / Aufsatzsammlung
    Subject
    Wissensrepräsentation / Semantisches Netz / RDF <Informatik> / OWL <Informatik> / Aufsatzsammlung
    Semantic Web / Information Extraction / Suche / Wissensbasiertes System / Aufsatzsammlung
    Semantic Web / Web Services / Semantische Modellierung / Ontologie <Wissensverarbeitung> / Suche / Navigieren / Anwendungsbereich / Aufsatzsammlung
    Theme
    Semantic Web
  12. Piros, A.: Az ETO-jelzetek automatikus interpretálásának és elemzésének kérdései (2018) 0.32
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    Content
    Vgl. auch: New automatic interpreter for complex UDC numbers. Unter: <https%3A%2F%2Fudcc.org%2Ffiles%2FAttilaPiros_EC_36-37_2014-2015.pdf&usg=AOvVaw3kc9CwDDCWP7aArpfjrs5b>
  13. Corporate Semantic Web : wie semantische Anwendungen in Unternehmen Nutzen stiften (2015) 0.11
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    Abstract
    Beim Corporate Semantic Web betrachtet man Semantic Web-Anwendungen, die innerhalb eines Unternehmens oder einer Organisation - kommerziell und nicht kommerziell - eingesetzt werden, von Mitarbeitern, von Kunden oder Partnern. Die Autoren erläutern prägende Erfahrungen in der Entwicklung von Semantic Web-Anwendungen. Sie berichten über Software-Architektur, Methodik, Technologieauswahl, Linked Open Data Sets, Lizenzfragen etc. Anwendungen aus den Branchen Banken, Versicherungen, Telekommunikation, Medien, Energie, Maschinenbau, Logistik, Touristik, Spielwaren, Bibliothekswesen und Kultur werden vorgestellt. Der Leser erhält so einen umfassenden Überblick über die Semantic Web-Einsatzbereiche sowie konkrete Umsetzungshinweise für eigene Vorhaben.
    Content
    Kapitel 1; Corporate Semantic Web; 1.1 Das Semantic Web; 1.2 Semantische Anwendungen im Unternehmenseinsatz; 1.3 Bereitstellen von Linked Data reicht nicht; 1.4 Eine global vernetzte Wissensbasis -- Fiktion oder Realität?; 1.5 Semantik)=)RDF?; 1.6 Richtig vorgehen; 1.7 Modellieren ist einfach (?!); 1.8 Juristische Fragen; 1.9 Semantische Anwendungen stiften Nutzen in Unternehmen -- nachweislich!; 1.10 Fazit; Literatur; Kapitel 2; Einordnung und Abgrenzung des Corporate Semantic Webs; 2.1 Grundlegende Begriffe; 2.2 Corporate Semantic Web 2.3 Public Semantic Web2.4 Social Semantic Web 3.0; 2.5 Pragmatic Web; 2.6 Zusammenfassung und Ausblick "Ubiquitous Pragmatic Web 4.0"; Literatur; Kapitel 3; Marktstudie: Welche Standards und Tools werden in Unternehmen eingesetzt?; 3.1 Einleitung; 3.2 Semantische Suche in Webarchiven (Quantinum AG); 3.2.1 Kundenanforderungen; 3.2.2 Technische Umsetzung; 3.2.3 Erfahrungswerte; 3.3 Semantische Analyse und Suche in Kundenspezifikationen (Ontos AG); 3.3.1 Kundenanforderungen; 3.3.2 Technische Umsetzung; 3.3.3 Erfahrungswerte 3.4 Sicherheit für Banken im Risikomanagement (VICO Research & Consulting GmbH)3.4.1 Kundenanforderungen; 3.4.2 Technische Umsetzung; 3.4.3 Erfahrungswerte; 3.5 Interaktive Fahrzeugdiagnose (semafora GmbH); 3.5.1 Kundenanforderungen; 3.5.2 Technische Umsetzung; 3.5.3 Erfahrungswerte; 3.6 Quo Vadis?; 3.7 Umfrage-Ergebnisse; 3.8 Semantic Web Standards & Tools; 3.9 Ausblick; Literatur; Kapitel 4; Modellierung des Sprachraums von Unternehmen; 4.1 Hintergrund; 4.2 Eine Frage der Bedeutung; 4.3 Bedeutung von Begriffen im Unternehmenskontext; 4.3.1 Website-Suche bei einem Industrieunternehmen 4.3.2 Extranet-Suche bei einem Marktforschungsunternehmen4.3.3 Intranet-Suche bei einem Fernsehsender; 4.4 Variabilität unserer Sprache und unseres Sprachgebrauchs; 4.4.1 Konsequenzen des Sprachgebrauchs; 4.5 Terminologiemanagement und Unternehmensthesaurus; 4.5.1 Unternehmensthesaurus; 4.5.2 Mut zur Lücke: Arbeiten mit unvollständigen Terminologien; 4.6 Pragmatischer Aufbau von Unternehmensthesauri; 4.6.1 Begriffsanalyse des Anwendungsbereichs; 4.6.2 Informationsquellen; 4.6.3 Häufigkeitsverteilung; 4.6.4 Aufwand und Nutzen; Literatur; Kapitel 5 Schlendern durch digitale Museen und Bibliotheken5.1 Einleitung; 5.2 Anwendungsfall 1: Schlendern durch das Digitale Museum; 5.3 Anwendungsfall 2: Literatur in Bibliotheken finden; 5.4 Herausforderungen; 5.5 Die Anforderungen treiben die Architektur; 5.5.1 Semantic ETL; 5.5.2 Semantic Logic; 5.5.3 Client; 5.6 Diskussion; 5.7 Empfehlungen und Fazit; Literatur; Kapitel 6; Semantische Suche im Bereich der Energieforschungsförderung; 6.1 Das Projekt EnArgus®; 6.2 Die Fachontologie; 6.2.1 Semantische Suche; 6.2.2 Repräsentation der semantischen Relationen in der Fachontologie
    RSWK
    Unternehmen / Semantic Web / Aufsatzsammlung
    Subject
    Unternehmen / Semantic Web / Aufsatzsammlung
    Theme
    Semantic Web
  14. Reichenberger, K.: Kompendium semantische Netze : Konzepte, Technologie, Modellierung (2010) 0.10
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    Abstract
    Semantische Technologien werden als die Zukunft menschlichen Wissens gehandelt. Gleichzeitig haftet ihnen immer noch etwas von Geheimwissenschaften an. Dieses Kompendium bietet eine auch für Quereinsteiger verständliche Einführung in das Thema. Es präsentiert verschiedene semantische Techniken, von automatischen Text-Mining-Verfahren bis hin zu komplexen Ontologien, mit einem Schwerpunkt auf semantischen Netzen. Das Kompendium semantische Netze versetzt seine Leser in die Lage zu beurteilen, was semantische Technologien leisten können, indem es die anschauliche Erklärung der Grundprinzipien mit Anwendungsbeispielen aus der Unternehmenspraxis und Kosten-Nutzen-Erwägungen ergänzt. Im praktischen Teil lernt der Leser semantische Netze zu modellieren. Eine Fülle von Beispielen, über 80 Abbildungen sowie zahlreiche Übungen erhöhen den praktischen Nutzen des Werkes.
    RSWK
    Semantisches Netz / Ontologie <Wissensverarbeitung> / Semantic Web
    Subject
    Semantisches Netz / Ontologie <Wissensverarbeitung> / Semantic Web
  15. Semenova, E.: Ontologie als Begriffssystem : Theoretische Überlegungen und ihre praktische Umsetzung bei der Entwicklung einer Ontologie der Wissenschaftsdisziplinen (2010) 0.08
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    Abstract
    Das Konzept des Semantic Web befindet sich gegenwärtig auf dem Weg von der Vision zur Realisierung und ist "noch gestaltbar", ebenso wie eine seiner Grundkonzeptionen, die Ontologie. Trotz der stetig wachsenden Anzahl der Forschungsarbeiten werden Ontologien primär aus der Sicht semantischer Technologien untersucht, Probleme der Ontologie als Begriffssystem werden in der Ontologieforschung nur partiell angetastet - für die praktische Arbeit erweist sich dieses als bedeutender Mangel. In diesem Bericht wird die Notwendigkeit, eine Ontologie aus der Sicht der Dokumentationssprache zu erforschen, als Fragestellung formuliert, außerdem werden einige schon erarbeitete theoretische Ansätze skizzenhaft dargestellt. Als Beispiel aus der Praxis wird das Material des von der DFG geförderten und am Hermann von Helmholtz-Zentrum für Kulturtechnik der Humboldt Universität zu Berlin durchgeführten Projektes "Entwicklung einer Ontologie der Wissenschaftsdisziplinen" einbezogen.
    Source
    Wissensspeicher in digitalen Räumen: Nachhaltigkeit - Verfügbarkeit - semantische Interoperabilität. Proceedings der 11. Tagung der Deutschen Sektion der Internationalen Gesellschaft für Wissensorganisation, Konstanz, 20. bis 22. Februar 2008. Hrsg.: J. Sieglerschmidt u. H.P.Ohly
  16. Euzenat, J.; Shvaiko, P.: Ontology matching (2010) 0.06
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    Abstract
    Ontologies are viewed as the silver bullet for many applications, but in open or evolving systems, different parties can adopt different ontologies. This increases heterogeneity problems rather than reducing heterogeneity. This book proposes ontology matching as a solution to the problem of semantic heterogeneity, offering researchers and practitioners a uniform framework of reference to currently available work. The techniques presented apply to database schema matching, catalog integration, XML schema matching and more. Ontologies tend to be found everywhere. They are viewed as the silver bullet for many applications, such as database integration, peer-to-peer systems, e-commerce, semantic web services, or social networks. However, in open or evolving systems, such as the semantic web, different parties would, in general, adopt different ontologies. Thus, merely using ontologies, like using XML, does not reduce heterogeneity: it just raises heterogeneity problems to a higher level. Euzenat and Shvaiko's book is devoted to ontology matching as a solution to the semantic heterogeneity problem faced by computer systems. Ontology matching aims at finding correspondences between semantically related entities of different ontologies. These correspondences may stand for equivalence as well as other relations, such as consequence, subsumption, or disjointness, between ontology entities. Many different matching solutions have been proposed so far from various viewpoints, e.g., databases, information systems, artificial intelligence. With Ontology Matching, researchers and practitioners will find a reference book which presents currently available work in a uniform framework. In particular, the work and the techniques presented in this book can equally be applied to database schema matching, catalog integration, XML schema matching and other related problems. The objectives of the book include presenting (i) the state of the art and (ii) the latest research results in ontology matching by providing a detailed account of matching techniques and matching systems in a systematic way from theoretical, practical and application perspectives.
    Date
    20. 6.2012 19:08:22
    LCSH
    World wide web
    RSWK
    Datenintegration / Informationssystem / Matching / Ontologie <Wissensverarbeitung> / Schema <Informatik> / Semantic Web
    Subject
    Datenintegration / Informationssystem / Matching / Ontologie <Wissensverarbeitung> / Schema <Informatik> / Semantic Web
    World wide web
    Theme
    Semantische Interoperabilität
  17. Pfeiffer, S.: Entwicklung einer Ontologie für die wissensbasierte Erschließung des ISDC-Repository und die Visualisierung kontextrelevanter semantischer Zusammenhänge (2010) 0.06
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    Abstract
    In der heutigen Zeit sind Informationen jeglicher Art über das World Wide Web (WWW) für eine breite Bevölkerungsschicht zugänglich. Dabei ist es jedoch schwierig die existierenden Dokumente auch so aufzubereiten, dass die Inhalte für Maschinen inhaltlich interpretierbar sind. Das Semantic Web, eine Weiterentwicklung des WWWs, möchte dies ändern, indem es Webinhalte in maschinenverständlichen Formaten anbietet. Dadurch können Automatisierungsprozesse für die Suchanfragenoptimierung und für die Wissensbasenvernetzung eingesetzt werden. Die Web Ontology Language (OWL) ist eine mögliche Sprache, in der Wissen beschrieben und gespeichert werden kann (siehe Kapitel 4 OWL). Das Softwareprodukt Protégé unterstützt den Standard OWL, weshalb ein Großteil der Modellierungsarbeiten in Protégé durchgeführt wurde. Momentan erhält der Nutzer in den meisten Fällen bei der Informationsfindung im Internet lediglich Unterstützung durch eine von Suchmaschinenbetreibern vorgenommene Verschlagwortung des Dokumentinhaltes, d.h. Dokumente können nur nach einem bestimmten Wort oder einer bestimmten Wortgruppe durchsucht werden. Die Ausgabeliste der Suchergebnisse muss dann durch den Nutzer selbst gesichtet und nach Relevanz geordnet werden. Das kann ein sehr zeit- und arbeitsintensiver Prozess sein. Genau hier kann das Semantic Web einen erheblichen Beitrag in der Informationsaufbereitung für den Nutzer leisten, da die Ausgabe der Suchergebnisse bereits einer semantischen Überprüfung und Verknüpfung unterliegt. Deshalb fallen hier nicht relevante Informationsquellen von vornherein bei der Ausgabe heraus, was das Finden von gesuchten Dokumenten und Informationen in einem bestimmten Wissensbereich beschleunigt.
    Um die Vernetzung von Daten, Informationen und Wissen imWWWzu verbessern, werden verschiedene Ansätze verfolgt. Neben dem Semantic Web mit seinen verschiedenen Ausprägungen gibt es auch andere Ideen und Konzepte, welche die Verknüpfung von Wissen unterstützen. Foren, soziale Netzwerke und Wikis sind eine Möglichkeit des Wissensaustausches. In Wikis wird Wissen in Form von Artikeln gebündelt, um es so einer breiten Masse zur Verfügung zu stellen. Hier angebotene Informationen sollten jedoch kritisch hinterfragt werden, da die Autoren der Artikel in den meisten Fällen keine Verantwortung für die dort veröffentlichten Inhalte übernehmen müssen. Ein anderer Weg Wissen zu vernetzen bietet das Web of Linked Data. Hierbei werden strukturierte Daten des WWWs durch Verweise auf andere Datenquellen miteinander verbunden. Der Nutzer wird so im Zuge der Suche auf themenverwandte und verlinkte Datenquellen verwiesen. Die geowissenschaftlichen Metadaten mit ihren Inhalten und Beziehungen untereinander, die beim GFZ unter anderem im Information System and Data Center (ISDC) gespeichert sind, sollen als Ontologie in dieser Arbeit mit den Sprachkonstrukten von OWL modelliert werden. Diese Ontologie soll die Repräsentation und Suche von ISDC-spezifischem Domänenwissen durch die semantische Vernetzung persistenter ISDC-Metadaten entscheidend verbessern. Die in dieser Arbeit aufgezeigten Modellierungsmöglichkeiten, zunächst mit der Extensible Markup Language (XML) und später mit OWL, bilden die existierenden Metadatenbestände auf einer semantischen Ebene ab (siehe Abbildung 2). Durch die definierte Nutzung der Semantik, die in OWL vorhanden ist, kann mittels Maschinen ein Mehrwert aus den Metadaten gewonnen und dem Nutzer zur Verfügung gestellt werden. Geowissenschaftliche Informationen, Daten und Wissen können in semantische Zusammenhänge gebracht und verständlich repräsentiert werden. Unterstützende Informationen können ebenfalls problemlos in die Ontologie eingebunden werden. Dazu gehören z.B. Bilder zu den im ISDC gespeicherten Instrumenten, Plattformen oder Personen. Suchanfragen bezüglich geowissenschaftlicher Phänomene können auch ohne Expertenwissen über Zusammenhänge und Begriffe gestellt und beantwortet werden. Die Informationsrecherche und -aufbereitung gewinnt an Qualität und nutzt die existierenden Ressourcen im vollen Umfang.
  18. Haffner, A.: Internationalisierung der GND durch das Semantic Web (2012) 0.06
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    Abstract
    Seit Bestehen der Menschheit sammelt der Mensch Informationen, seit Bestehen des Internets stellt der Mensch Informationen ins Web, seit Bestehen des Semantic Webs sollen auch Maschinen in die Lage versetzt werden mit diesen Informationen umzugehen. Das Bibliothekswesen ist einer der Sammler. Seit Jahrhunderten werden Kataloge und Bibliografien sowie Inventarnachweise geführt. Mit der Aufgabe des Zettelkatalogs hin zum Onlinekatalog wurde es Benutzern plötzlich möglich in Beständen komfortabel zu suchen. Durch die Bereitstellung von Daten aus dem Bibliothekswesen im Semantic Web sollen nicht nur die eigenen Katalogsysteme Zugriff auf diese Informationen erhalten, sondern jede beliebige Anwendung, die auf das Web zugreifen kann. Darüber hinaus ist die Vorstellung, dass sich die im Web befindenden Daten - in sofern möglich - miteinander verlinken und zu einem gigantischen semantischen Netz werden, das als ein großer Datenpool verwendet werden kann. Die Voraussetzung hierfür ist wie beim Übergang zum Onlinekatalog die Aufbereitung der Daten in einem passenden Format. Normdaten dienen im Bibliothekswesen bereits dazu eine Vernetzung der unterschiedlichen Bestände zu erlauben. Bei der Erschließung eines Buches wird nicht bloß gesagt, dass jemand, der Thomas Mann heißt, der Autor ist - es wird eine Verknüpfung vom Katalogisat zu dem Thomas Mann erzeugt, der am 6. Juni 1875 in Lübeck geboren und am 12. August 1955 in Zürich verstorben ist. Der Vorteil von Normdateneintragungen ist, dass sie zum eindeutigen Nachweis der Verfasserschaft oder Mitwirkung an einem Werk beitragen. Auch stehen Normdateneintragungen bereits allen Bibliotheken für die Nachnutzung bereit - der Schritt ins Semantic Web wäre somit die Öffnung der Normdaten für alle denkbaren Nutzergruppen.
    Die Gemeinsame Normdatei (GND) ist seit April 2012 die Datei, die die im deutschsprachigen Bibliothekswesen verwendeten Normdaten enthält. Folglich muss auf Basis dieser Daten eine Repräsentation für die Darstellung als Linked Data im Semantic Web etabliert werden. Neben der eigentlichen Bereitstellung von GND-Daten im Semantic Web sollen die Daten mit bereits als Linked Data vorhandenen Datenbeständen (DBpedia, VIAF etc.) verknüpft und nach Möglichkeit kompatibel sein, wodurch die GND einem internationalen und spartenübergreifenden Publikum zugänglich gemacht wird. Dieses Dokument dient vor allem zur Beschreibung, wie die GND-Linked-Data-Repräsentation entstand und dem Weg zur Spezifikation einer eignen Ontologie. Hierfür werden nach einer kurzen Einführung in die GND die Grundprinzipien und wichtigsten Standards für die Veröffentlichung von Linked Data im Semantic Web vorgestellt, um darauf aufbauend existierende Vokabulare und Ontologien des Bibliothekswesens betrachten zu können. Anschließend folgt ein Exkurs in das generelle Vorgehen für die Bereitstellung von Linked Data, wobei die so oft zitierte Open World Assumption kritisch hinterfragt und damit verbundene Probleme insbesondere in Hinsicht Interoperabilität und Nachnutzbarkeit aufgedeckt werden. Um Probleme der Interoperabilität zu vermeiden, wird den Empfehlungen der Library Linked Data Incubator Group [LLD11] gefolgt.
    Im Kapitel Anwendungsprofile als Basis für die Ontologieentwicklung wird die Spezifikation von Dublin Core Anwendungsprofilen kritisch betrachtet, um auszumachen wann und in welcher Form sich ihre Verwendung bei dem Vorhaben Bereitstellung von Linked Data anbietet. In den nachfolgenden Abschnitten wird die GND-Ontologie, welche als Standard für die Serialisierung von GND-Daten im Semantic Web dient, samt Modellierungsentscheidungen näher vorgestellt. Dabei wird insbesondere der Technik des Vocabulary Alignment eine prominente Position eingeräumt, da darin ein entscheidender Mechanismus zur Steigerung der Interoperabilität und Nachnutzbarkeit gesehen wird. Auch wird sich mit der Verlinkung zu externen Datensets intensiv beschäftigt. Hierfür wurden ausgewählte Datenbestände hinsichtlich ihrer Qualität und Aktualität untersucht und Empfehlungen für die Implementierung innerhalb des GND-Datenbestandes gegeben. Abschließend werden eine Zusammenfassung und ein Ausblick auf weitere Schritte gegeben.
    Content
    Vgl. auch die GND-Modellierung unter: http://d-nb.info/standards/elementset/gnd#.
    Theme
    Semantische Interoperabilität
  19. Hohmann, G.: ¬Die Anwendung des CIDOC-CRM für die semantische Wissensrepräsentation in den Kulturwissenschaften (2010) 0.06
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    Abstract
    Das CIDOC Conceptual Reference Model (CRM) ist eine Ontologie für den Bereich des Kulturellen Erbes, die als ISO 21127 standardisiert ist. Inzwischen liegen auch OWL-DL-Implementationen des CRM vor, die ihren Einsatz auch im Semantic Web ermöglicht. OWL-DL ist eine entscheidbare Untermenge der Web Ontology Language, die vom W3C spezifiziert wurde. Lokale Anwendungsontologien, die ebenfalls in OWL-DL modelliert werden, können über Subklassenbeziehungen mit dem CRM als Referenzontologie verbunden werden. Dadurch wird es automatischen Prozessen ermöglicht, autonom heterogene Daten semantisch zu validieren, zueinander in Bezug zu setzen und Anfragen über verschiedene Datenbestände innerhalb der Wissensdomäne zu verarbeiten und zu beantworten.
    Source
    Wissensspeicher in digitalen Räumen: Nachhaltigkeit - Verfügbarkeit - semantische Interoperabilität. Proceedings der 11. Tagung der Deutschen Sektion der Internationalen Gesellschaft für Wissensorganisation, Konstanz, 20. bis 22. Februar 2008. Hrsg.: J. Sieglerschmidt u. H.P.Ohly
  20. Alvers, M.R.: Semantische wissensbasierte Suche in den Life Sciences am Beispiel von GoPubMed (2010) 0.05
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    Abstract
    Nie zuvor war der Zugriff auf Informationen so einfach und schnell wie heute. Die Suchmaschine Google ist dabei mit einem Marktanteil von 95 Prozent in Deutschland führend. Aber reicht der heutige Status Quo aus? Wir meinen nein - andere meinen ja. Die Verwendung von Stichworten für die Suche ist sehr begrenzt, nicht intelligent und der Algorithmus zum ranking der Suchergebnisse fragwürdig. Wir zeigen neue Wege der semantischen Suche mittels der Verwendung von Hintergrundwissen. Die (semi)automatische Generierung von Ontologien wird ebenfalls als zentraler Bestandteil einer universellen Wissensplattform vorgestellt und gezeigt, wie Anwender mit dieser Technologie signifikant Zeit sparen und deutlich relevantere Informationen finden.
    Content
    "Im Vortrag werden Aspekte der Suche nach Informationen und Antworten aus dem breiten Spektrum von der Suche nach einer Telefonnummer bis zur Frage nach dem "Sinn des Lebens" (deren Antwort auch im Vortrag leider nicht gegeben werden kann) angesprochen. Die Verwendung von Hintergrundwissen in Form von semantischen Begriffsnetzwerken, sogenannten Ontologien, hilft enorm, der Beantwortung von Fragen näher zu kommen. Sie garantieren Vollständigkeit der Suchergebnisse und schnelles Fokussieren auf Relevantes. Das bedeutungs-getriebene Einsortieren oder das Klassifizieren von Informationen aus Dokumenten oder von Internetinhalten, ermöglicht die Disambiguierung von Begriffen wie Salz und 01, " Cyclooxygenase Inhibitoren" - eher bekannt als Aspirin - oder das Auffinden aller Dokumente, die zum Thema CO2 - Sequestrierung gehören - also auch solcher, in den Begriff CO2 - Sequestrierung nicht direkt enthalten aber solche, die für das Thema relevant sind. Die Technologie hinter GoPubMed automatisiert schwierige Analysen, die normaler Weise von Wissenschaftlern getätigt werden. Dabei werden die notwendigen Informationen, wie sie von ausgefeilten Algorithmen ([DS05]) vorausgesagt wurden, mit einer deutlich höheren Genauigkeit bereitgestellt. Transinsights semantische Suchtechnologien wurde als erstes Beispiel der nächsten Generation der Suche entwickelt. Die Stärke liegt in der Fähigkeit, große Textkorpora (> 500 Millionen Dokumente) mit großen Ontologien (> 15 Millionen Konzepte) zu verknüpfen. In GoPubMed wird die Gene Ontology und MeSH verwendet, die zusammen mit einer Geo-Ontologie und allen Autoren ca. 15 Millionen Konzepte beinhalten.m"
    Source
    Semantic web & linked data: Elemente zukünftiger Informationsinfrastrukturen ; 1. DGI-Konferenz ; 62. Jahrestagung der DGI ; Frankfurt am Main, 7. - 9. Oktober 2010 ; Proceedings / Deutsche Gesellschaft für Informationswissenschaft und Informationspraxis. Hrsg.: M. Ockenfeld

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