DocumentCode
110625
Title
Audiovisual Voice Activity Detection Based on Microphone Arrays and Color Information
Author
Minotto, Vicente P. ; Lopes, C.B.O. ; Scharcanski, Jacob ; Jung, Claudio R. ; Bowon Lee
Author_Institution
Inst. de Inf., Univ. Fed. do Rio Grande do Sul, Porto Alegre, Brazil
Volume
7
Issue
1
fYear
2013
fDate
Feb. 2013
Firstpage
147
Lastpage
156
Abstract
Audiovisual voice activity detection is a necessary stage in several problems, such as advanced teleconferencing, speech recognition, and human-computer interaction. Lip motion and audio analysis provide a large amount of information that can be integrated to produce more robust audiovisual voice activity detection (VAD) schemes, as we discuss in this paper. Lip motion is very useful for detecting the active speaker, and in this paper we introduce a new approach for lips and visual VAD. First, the algorithm performs skin segmentation to reduce the search area for lip extraction, and the most likely lip and non-lip regions are detected using a Bayesian approach within the delimited area. Lip motion is then detected using Hidden Markov Models (HMMs) that estimate the likely occurrence of active speech within a temporal window. Audio information is captured by an array of microphones, and the sound-based VAD is related to finding spatio-temporally coherent sound sources through another set of HMMs. To increase the robustness of the proposed system, a late fusion approach is employed to combine the result of each modality (audio and video). Our experimental results indicate that the proposed audiovisual approach presents better results when compared to existing VAD algorithms.
Keywords
audio-visual systems; hidden Markov models; image colour analysis; microphone arrays; speech recognition; Bayesian approach; HMM; active speaker detection; advanced teleconferencing; audio analysis; audio information; audiovisual voice activity detection; color information; fusion approach; hidden Markov model; human-computer interaction; lip extraction; lip motion; microphone arrays; robust VAD scheme; skin segmentation; sound-based VAD; spatio-temporally coherent sound sources; speech recognition; temporal window; visual VAD; Feature extraction; Hidden Markov models; Lips; Noise; Speech; Speech recognition; Visualization; SRP-PHAT; Voice activity detection; hidden Markov model; lips detection; microphone array;
fLanguage
English
Journal_Title
Selected Topics in Signal Processing, IEEE Journal of
Publisher
ieee
ISSN
1932-4553
Type
jour
DOI
10.1109/JSTSP.2012.2237379
Filename
6400215
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