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  • × theme_ss:"Wissensrepräsentation"
  1. 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) 0.11
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    Content
    Vgl.: https%3A%2F%2Faclanthology.org%2FD19-5317.pdf&usg=AOvVaw0ZZFyq5wWTtNTvNkrvjlGA.
  2. Xiong, C.: Knowledge based text representations for information retrieval (2016) 0.10
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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.
  3. Stojanovic, N.: Ontology-based Information Retrieval : methods and tools for cooperative query answering (2005) 0.07
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    Content
    Vgl.: http%3A%2F%2Fdigbib.ubka.uni-karlsruhe.de%2Fvolltexte%2Fdocuments%2F1627&ei=tAtYUYrBNoHKtQb3l4GYBw&usg=AFQjCNHeaxKkKU3-u54LWxMNYGXaaDLCGw&sig2=8WykXWQoDKjDSdGtAakH2Q&bvm=bv.44442042,d.Yms.
  4. Hannech, A.: Système de recherche d'information étendue basé sur une projection multi-espaces (2018) 0.01
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    Abstract
    Since its appearance in the early 90's, the World Wide Web (WWW or Web) has provided universal access to knowledge and the world of information has been primarily witness to a great revolution (the digital revolution). It quickly became very popular, making it the largest and most comprehensive database and knowledge base thanks to the amount and diversity of data it contains. However, the considerable increase and evolution of these data raises important problems for users, in particular for accessing the documents most relevant to their search queries. In order to cope with this exponential explosion of data volume and facilitate their access by users, various models are offered by information retrieval systems (IRS) for the representation and retrieval of web documents. Traditional SRIs use simple keywords that are not semantically linked to index and retrieve these documents. This creates limitations in terms of the relevance and ease of exploration of results. To overcome these limitations, existing techniques enrich documents by integrating external keywords from different sources. However, these systems still suffer from limitations that are related to the exploitation techniques of these sources of enrichment. When the different sources are used so that they cannot be distinguished by the system, this limits the flexibility of the exploration models that can be applied to the results returned by this system. Users then feel lost to these results, and find themselves forced to filter them manually to select the relevant information. If they want to go further, they must reformulate and target their search queries even more until they reach the documents that best meet their expectations. In this way, even if the systems manage to find more relevant results, their presentation remains problematic. In order to target research to more user-specific information needs and improve the relevance and exploration of its research findings, advanced SRIs adopt different data personalization techniques that assume that current research of user is directly related to his profile and / or previous browsing / search experiences.
    Date
    29. 9.2018 18:57:38
  5. Angerer, C.: Neuronale Netze : Revolution für die Wissenschaft? (2018) 0.01
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  6. Boteram, F.: Semantische Relationen in Dokumentationssprachen : vom Thesaurus zum semantischen Netz (2010) 0.01
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    Date
    2. 3.2013 12:29:05
    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
  7. Hinkelmann, K.: Ontopia Omnigator : ein Werkzeug zur Einführung in Topic Maps (20xx) 0.01
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    Date
    4. 9.2011 12:29:09
  8. Semenova, E.; Stricker, M.: ¬Eine Ontologie der Wissenschaftsdisziplinen : Entwicklung eines Instrumentariums für die Wissenskommunikation (2007) 0.01
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    Abstract
    Interdisziplinarität als Kennzeichen des modernen Wissenschaftslebens setzt in Forschung und Lehre eine effiziente Wissenschaftskommunikation voraus, bei der sich die Partner über eine gemeinsame Sprache verständigen können. Klassifikationen und Thesauri übernehmen dabei eine wichtige Rolle. Zu beobachten ist, dass vorhandene Instrumente in ihrem Gefüge zu inflexibel sind, um die komplex ineinander verwobenen Felder der Wissenschaft in ihrer dynamischen Entwicklung adäquat abzubilden, zur (Selbst-)Verständigung über das Wesen und Struktur der Wissenschaftslandschaft sowie zum erfolgreichen Wissensaustausch beizutragen. Ontologien erschließen neue Wege zur Lösung dieser Aufgaben. In einigen Einzelwissenschaften und Teilgebieten ist diesbezüglich eine rege Tätigkeit zu beobachten, es fehlt allerdings noch ein fachübergreifendes Instrumentarium. Im Vortrag wird das von der DFG geförderte Projekt "Entwicklung einer Ontologie der Wissenschaftsdisziplinen" vorgestellt. Es gilt, die oben beschriebene Lücke zu schließen und eine umfassende Ontologie für Erschließung, Recherche und Datenaustausch bei der Wissenschaftskommunikation zu erstellen. Diese Ontologie soll dazu beitragen, eine effiziente Wissenskommunikation, besonders bei interdisziplinären Projekten, zu unterstützen, verfügbare Ressourcen auffindbar zu machen und mögliche Knotenstellen künftiger Kooperationen zu verdeutlichen. Ausgehend von der Kritik an vorhandenen Instrumenten wird derzeit ein Begriffsmodell für die Beschreibung von Wissenschaftsdisziplinen, ihrer zentralen Facetten sowie ihrer interdisziplinären Beziehungen untereinander entwickelt. Das Modell, inspiriert vom Topic Maps Paradigma, basiert auf einer überschaubaren Menge zentraler Konzepte sowie prinzipiell inverser Beziehungen. Eine entsprechende Ontologie wird in unterschiedlichen (technischen) Beschreibungsformaten formuliert werden können. Dies bildet den Grundstein für den Fokus des Projekts, flexible, verteilte, benutzer- wie pflegefreundliche technische Umsetzungen zu entwickeln und mit Kooperationspartnern zu implementieren.
  9. Helbig, H.: Wissensverarbeitung und die Semantik der natürlichen Sprache : Wissensrepräsentation mit MultiNet (2008) 0.01
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    Abstract
    Das Buch gibt eine umfassende Darstellung einer Methodik zur Interpretation und Bedeutungsrepräsentation natürlichsprachlicher Ausdrücke. Diese Methodik der "Mehrschichtigen Erweiterten Semantischen Netze", das sogenannte MultiNet-Paradigma, ist sowohl für theoretische Untersuchungen als auch für die automatische Verarbeitung natürlicher Sprache auf dem Rechner geeignet. Im ersten Teil des zweiteiligen Buches werden grundlegende Probleme der semantischen Repräsentation von Wissen bzw. der semantischen Interpretation natürlichsprachlicher Phänomene behandelt. Der zweite Teil enthält eine systematische Zusammenstellung des gesamten Repertoires von Darstellungsmitteln, die jeweils nach einem einheitlichen Schema beschrieben werden. Er dient als Kompendium der im Buch verwendeten formalen Beschreibungsmittel von MultiNet. Die vorgestellten Ergebnisse sind eingebettet in ein System von Software-Werkzeugen, die eine praktische Nutzung der MultiNet-Darstellungsmittel als Formalismus zur Bedeutungsrepräsentation im Rahmen der automatischen Sprachverarbeitung sichern. Hierzu gehören: eine Werkbank für den Wissensingenieur, ein Übersetzungssystem zur automatischen Gewinnung von Bedeutungsdarstellungen natürlichsprachlicher Sätze und eine Werkbank für den Computerlexikographen. Der Inhalt des Buches beruht auf jahrzehntelanger Forschung auf dem Gebiet der automatischen Sprachverarbeitung und wurde mit Vorlesungen zur Künstlichen Intelligenz und Wissensverarbeitung an der TU Dresden und der FernUniversität Hagen wiederholt in der Hochschullehre eingesetzt. Als Vorkenntnisse werden beim Leser lediglich Grundlagen der traditionellen Grammatik und elementare Kenntnisse der Prädikatenlogik vorausgesetzt.
  10. Hollink, L.; Assem, M. van: Estimating the relevance of search results in the Culture-Web : a study of semantic distance measures (2010) 0.01
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    Date
    29. 7.2011 14:44:56
    26.12.2011 13:40:22
  11. Auer, S.; Sens, I.; Stocker, M.: Erschließung wissenschaftlicher Literatur mit dem Open Research Knowledge Graph (2020) 0.01
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    Abstract
    Die Weitergabe von Wissen hat sich seit vielen hundert Jahren nicht grundlegend verändert: Sie erfolgt in der Regel dokumentenbasiert - früher als klassischer Aufsatz auf Papier gedruckt, heute als PDF. Bei jährlich rund 2,5 Millionen neuen Forschungsbeiträgen ertrinken die Forschenden in einer Flut pseudodigitalisierter PDF-Publikationen. Die Folge: Die Forschung wird ernsthaft geschwächt. Denn viele Forschungsergebnisse können durch andere nicht reproduziert werden, es gibt mehr und mehr Redundanzen und das Meer von Publikationen ist unübersichtlich. Deshalb denkt die TIB - Leibniz-Informationszentrum Technik und Naturwissenschaften Wissenskommunikation neu: Statt auf statische PDF-Artikel setzt die TIB auf Wissensgraphen. Sie arbeitet daran, Wissen unterschiedlichster Form - Texte, Bilder, Grafiken, Audio- und Video-Dateien, 3D-Modelle und vieles mehr - intuitiv mithilfe dynamischer Wissensgraphen zu vernetzen. Der Wissensgraph soll verschiedene Forschungsideen, -ansätze, -methoden und -ergebnisse maschinenlesbar darstellen, sodass völlig neue Zusammenhänge von Wissen zutage treten und zur Lösung globaler Probleme beitragen könnten. Die großen gesellschaftlichen Herausforderungen verlangen Interdisziplinarität und das Zusammenfügen von Erkenntnis-Einzelteilen. Mit dem Wissensgraphen kann das gelingen und der Fluss wissenschaftlicher Erkenntnisse revolutioniert werden.
  12. Meng, K.; Ba, Z.; Ma, Y.; Li, G.: ¬A network coupling approach to detecting hierarchical linkages between science and technology (2024) 0.01
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    Naturwissenschaften
  13. Griffiths, T.L.; Steyvers, M.: ¬A probabilistic approach to semantic representation (2002) 0.01
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    Date
    29. 6.2015 14:55:01
    29. 6.2015 16:09:05
  14. Botana Varela, J.: Unscharfe Wissensrepräsentationen bei der Implementation des Semantic Web (2004) 0.01
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    Abstract
    In der vorliegenden Arbeit soll einen Ansatz zur Implementation einer Wissensrepräsentation mit den in Abschnitt 1.1. skizzierten Eigenschaften und dem Semantic Web als Anwendungsbereich vorgestellt werden. Die Arbeit ist im Wesentlichen in zwei Bereiche gegliedert: dem Untersuchungsbereich (Kapitel 2-5), in dem ich die in Abschnitt 1.1. eingeführte Terminologie definiert und ein umfassender Überblick über die zugrundeliegenden Konzepte gegeben werden soll, und dem Implementationsbereich (Kapitel 6), in dem aufbauend auf dem im Untersuchungsbereich erarbeiteten Wissen einen semantischen Suchdienst entwickeln werden soll. In Kapitel 2 soll zunächst das Konzept der semantischen Interpretation erläutert und in diesem Kontext hauptsächlich zwischen Daten, Information und Wissen unterschieden werden. In Kapitel 3 soll Wissensrepräsentation aus einer kognitiven Perspektive betrachtet und in diesem Zusammenhang das Konzept der Unschärfe beschrieben werden. In Kapitel 4 sollen sowohl aus historischer als auch aktueller Sicht die Ansätze zur Wissensrepräsentation und -auffindung beschrieben und in diesem Zusammenhang das Konzept der Unschärfe diskutiert werden. In Kapitel 5 sollen die aktuell im WWW eingesetzten Modelle und deren Einschränkungen erläutert werden. Anschließend sollen im Kontext der Entscheidungsfindung die Anforderungen beschrieben werden, die das WWW an eine adäquate Wissensrepräsentation stellt, und anhand der Technologien des Semantic Web die Repräsentationsparadigmen erläutert werden, die diese Anforderungen erfüllen. Schließlich soll das Topic Map-Paradigma erläutert werden. In Kapitel 6 soll aufbauend auf die im Untersuchtungsbereich gewonnenen Erkenntnisse ein Prototyp entwickelt werden. Dieser besteht im Wesentlichen aus Softwarewerkzeugen, die das automatisierte und computergestützte Extrahieren von Informationen, das unscharfe Modellieren, sowie das Auffinden von Wissen unterstützen. Die Implementation der Werkzeuge erfolgt in der Programmiersprache Java, und zur unscharfen Wissensrepräsentation werden Topic Maps eingesetzt. Die Implementation wird dabei schrittweise vorgestellt. Schließlich soll der Prototyp evaluiert und ein Ausblick auf zukünftige Erweiterungsmöglichkeiten gegeben werden. Und schließlich soll in Kapitel 7 eine Synthese formuliert werden.
  15. Roth, G.; Schwegler, H.: Kognitive Referenz und Selbstreferentialität des Gehirns : ein Beitrag zur Klärung des Verhältnisses zwischen Erkenntnistheorie und Hirnforschung (1992) 0.01
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    Date
    20.12.2018 12:39:29
  16. Clark, M.; Kim, Y.; Kruschwitz, U.; Song, D.; Albakour, D.; Dignum, S.; Beresi, U.C.; Fasli, M.; Roeck, A De: Automatically structuring domain knowledge from text : an overview of current research (2012) 0.01
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    Date
    29. 1.2016 18:29:51
  17. Broughton, V.: Facet analysis as a fundamental theory for structuring subject organization tools (2007) 0.01
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    Date
    26.12.2011 13:21:29
  18. Mustafa El Hadi, W.: Terminologies, ontologies and information access (2006) 0.01
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    Date
    29. 2.2008 16:25:23
  19. Schubert, C.; Kinkeldey, C.; Reich, H.: Handbuch Datenbankanwendung zur Wissensrepräsentation im Verbundprojekt DeCOVER (2006) 0.01
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    Date
    29. 1.2011 18:45:23
  20. Hoppe, T.: Semantische Filterung : ein Werkzeug zur Steigerung der Effizienz im Wissensmanagement (2013) 0.01
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    Date
    29. 9.2015 18:56:44

Authors

Years

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  • a 75
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