Publication | Closed Access
The application of semantic classification trees to natural language understanding
118
Citations
26
References
1995
Year
EngineeringSpoken Language ProcessingSpeech UnderstandingSemanticsSemantic WebLanguage ProcessingText MiningSpeech RecognitionNatural Language ProcessingApplied LinguisticsData ScienceComputational LinguisticsModel Analysis (Educational Assessment)Nlu SystemLanguage StudiesSpoken Language UnderstandingSemantic LearningNlp TaskNatural Language InterfaceKnowledge DiscoveryComputer ScienceSemantic ParsingModel Analysis (Information Engineering)TreebanksNatural Language UnderstandingSpeech ProcessingSemantic Classification TreesLinguisticsComputational SemanticsSemantic Representation
This article describes a new method for building a natural language understanding (NLU) system, in which the system's rules are learnt automatically from training data. The method has been applied to design of a speech understanding (SU) system. Designers of such systems rely increasingly on robust matchers to perform the task of extracting meaning from one or several word sequence hypotheses generated by a speech recognizer. We describe a new data structure, the semantic classification tree (SCT), that learns semantic rules from training data and can be a building block for robust matchers for NLU tasks. By reducing the need for handcoding and debugging a large number of rules, this approach facilitates rapid construction of an NLU system. In the case of an SU system, the rules learned by an SCT are highly resistant to errors by the speaker or by the speech recognizer because they depend on a small number of words in each utterance. Our work shows that semantic rules can be learned automatically from training data, yielding successful NLU for a realistic application.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">></ETX>
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