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1
Knowledge-Driven Argument Mining Based on the Qualia Structure
In: ISSN: 1946-2166 ; EISSN: 1946-2174 ; Argument and Computation ; https://hal.archives-ouvertes.fr/hal-02535069 ; Argument and Computation, Taylor & Francis, 2017, 8 (2), pp.193-210. ⟨10.3233/AAC-170124⟩ (2017)
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2
Argument Mining: The bottleneck of knowledge and language resources
In: Proceedings of the 10th International Conference on Language Resources and Evaluation ; 10th International Conference on Language Resources and Evaluation (LREC 2016) ; https://hal.archives-ouvertes.fr/hal-01436203 ; 10th International Conference on Language Resources and Evaluation (LREC 2016), May 2016, Portoroz, Slovenia. pp. 983-990 (2016)
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3
Knowledge-Driven Argument Mining: what we learn from corpus analysis
In: Proceedings of COMMA 2016 ; 6th International Conference on Computational Models of Argument (COMMA 2016) ; https://hal.archives-ouvertes.fr/hal-01436201 ; 6th International Conference on Computational Models of Argument (COMMA 2016), Sep 2016, Potsdam, Germany. pp. 65-72 (2016)
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4
Computational pragmatics : time, space and discourse ; Phénomènes contextuels en TAL: temps, espace et discours
Muller, Philippe. - : HAL CCSD, 2014
In: https://hal-univ-tlse3.archives-ouvertes.fr/tel-03284109 ; Computation and Language [cs.CL]. UT3 Paul Sabatier, France, 2014 (2014)
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5
A three-level approach to the semantics of space
In: The semantics of prepositions: from mental processing to natural language processing ; https://hal.archives-ouvertes.fr/hal-00462578 ; Cornelia Zelinsky-Wibbelt. The semantics of prepositions: from mental processing to natural language processing, Mouton de Gruyter, pp.395-439, 1993, Natural Language Processing 3 (1993)
Abstract: This paper proposes some formal tools for representing the semantic content of French expressions referring to space. These tools consist of first, a relational –or qualitative– geometry encompassing topology, distance notions and projective geometry, as well as temporal notions, thus constituting a rather complete theory of naive space-time; and second, several formalisms to deal with functional aspects of entities such as intrinsic orientation, internal structure and categorizing; more generally, it is claimed that a representation in three levels (geometric, functional and pragmatic) is required to account for spatial expressions' semantics. To analyze the semantics of some of these expressions, this work systematically looks for valid reasoning schemata involving them; this approach also enables the testing of the proposed formal system as well as the evaluation of the definitions obtained for the studied lexemes.
Keyword: [INFO.INFO-CL]Computer Science [cs]/Computation and Language [cs.CL]; [SHS.LANGUE]Humanities and Social Sciences/Linguistics; French spatial prepositions; natural language understanding; spatial knowledge representation; spatial reasoning; spatial semantics
URL: https://hal.archives-ouvertes.fr/hal-00462578/document
https://hal.archives-ouvertes.fr/hal-00462578
https://hal.archives-ouvertes.fr/hal-00462578/file/aurnague-vieu-moutondegruyter.pdf
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