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Hits 1 – 9 of 9

1
Improving Intrinsic Exploration with Language Abstractions ...
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2
Learning to Compose Words into Sentences with Reinforcement Learning ...
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3
Reasoning about Entailment with Neural Attention ...
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4
Quantum physics and linguistics : a compositional, diagrammatic discourse
Heunen, Christiaan; Sadrzadeh, Mehrnoosh; Grefenstette, Edward. - Oxford : Oxford Univ. Press, 2013
Leibniz-Zentrum Allgemeine Sprachwissenschaft
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5
Quantum physics and linguistics: a compositional, diagrammatic discourse
Sadrzadeh, Mehrnoosh; Grefenstette, Edward; Heunen, Chris. - : Oxford University Press, 2013
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6
Category-theoretic quantitative compositional distributional models of natural language semantics
Abstract: This thesis is about the problem of compositionality in distributional semantics. Distributional semantics presupposes that the meanings of words are a function of their occurrences in textual contexts. It models words as distributions over these contexts and represents them as vectors in high dimensional spaces. The problem of compositionality for such models concerns itself with how to produce distributional representations for larger units of text (such as a verb and its arguments) by composing the distributional representations of smaller units of text (such as individual words). This thesis focuses on a particular approach to this compositionality problem, namely using the categorical framework developed by Coecke, Sadrzadeh, and Clark, which combines syntactic analysis formalisms with distributional semantic representations of meaning to produce syntactically motivated composition operations. This thesis shows how this approach can be theoretically extended and practically implemented to produce concrete compositional distributional models of natural language semantics. It furthermore demonstrates that such models can perform on par with, or better than, other competing approaches in the field of natural language processing. There are three principal contributions to computational linguistics in this thesis. The first is to extend the DisCoCat framework on the syntactic front and semantic front, incorporating a number of syntactic analysis formalisms and providing learning procedures allowing for the generation of concrete compositional distributional models. The second contribution is to evaluate the models developed from the procedures presented here, showing that they outperform other compositional distributional models present in the literature. The third contribution is to show how using category theory to solve linguistic problems forms a sound basis for research, illustrated by examples of work on this topic, that also suggest directions for future research. ; This thesis is not currently available in ORA.
Keyword: Artificial Intelligence; category theory; Computational Linguistics; Computer science (mathematics); distributional semantics; Natural Language Processing; semantics; vector space models
URL: http://arxiv.org/abs/1311.1539
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7
A graphical approach to measurement-based quantum computing
Duncan, Ross. - : OUP, 2013
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8
Concrete Sentence Spaces for Compositional Distributional Models of Meaning ...
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9
Experimental Support for a Categorical Compositional Distributional Model of Meaning ...
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