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논문 기본 정보

자료유형
학술대회자료
저자정보
Le Tran Su (University of Ulsan) Jong Soo Lee (University of Ulsan)
저널정보
한국통신학회 한국통신학회 학술대회논문집 한국통신학회 종합 학술 발표회 논문집 (하계) 2009
발행연도
2009.6
수록면
221 - 225 (5page)

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초록· 키워드

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The 3D ArtiSynth is a 3D biomechanical simulation platform directed toward modelling the vocal tract. It provides an open-source, cross-platform environment in which researchers can create and interconnect various kinds of dynamic and parametric models to form a complete integrated biomechanical system that is capable of articulatory speech synthesis. Articulatory synthesis is a method of generating speech by controlling the speech articulators such as tongue, lips. In articulatory models, changing the position of the articulators results in a change in the shape of the vocal tract. This controllable vocal tract serves as a filter with its own resonance characteristics. Separate source models can be used to provide input for the system, resulting in sound being generated. In this paper, we try to develop a 2D model for analyzing and synthesizing English speech as a first step to interconnect with cross-platform ArtiSynth to form a desired biomechanical speech synthesis system. We proposed an approach to model using the modelling tools and animator tools, met the objectives of creating a computational model of the vocal tract. The vocal tract model will be useful for users, such as linguists, in the investigation of how the shape of the vocal tract affects sound output. Therefore, our system is useful for improving speaking skills of English language learners. The proposed system is created by using Java programming language and OpenGL library. The vocal model was to be coupled with an aeroacoustic renderer to create the vocalized sounds. Additionally, it will be integrated into the ArtiSynth framework, which is a system for speech synthesis, facial modeling, and vocal tract modeling.

목차

Abstract
I. Introduction
II. Speech Production Mechanism
III. Measuring and Analyzing Speech Production using 3D ArtiSynth System
IV. 2D Model of English Speech Production Animation using ArtisSynth
V. Conclusion
VI. References

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