DocumentCode
2667394
Title
Voice driven applications in non-stationary and chaotic environment
Author
Kwan, C. ; Li, X. ; Lao, D. ; Deng, Y. ; Ren, Z. ; Raj, B. ; Singh, R. ; Stern, R.
Author_Institution
Intelligent Autom., Inc., Rockville, MD
fYear
0
fDate
0-0 0
Firstpage
127
Lastpage
132
Abstract
Automated operations based on voice commands would become more and more important in many applications, including robotics, maintenance operations, etc. However, voice command recognition rates drop quite a lot under nonstationary and chaotic noise environments. In this research, we tried to significantly improve the speech recognition rates under non-stationary noise environments. First, 298 Navy acronyms have been selected for automatic speech recognition. Data sets were collected under 4 types of non-stationary noisy environments: factory, buccaneer jet, babble noise in a canteen, and destroyer. Within each noisy environment, 4 levels (5 dB, 15 dB, 25 dB, and clean) of signal-to-noise ratio (SNR) were introduced to corrupt the speech. Second, a new algorithm to estimate speech or no speech regions has been developed, implemented, and evaluated. Third, extensive simulations were carried out. It was found that the combination of the new algorithm, the proper selection of language model and a customized training of the speech recognizer based on clean speech yielded very high recognition rates, which are from 80% to 90% for the four different noisy conditions. Fourth, extensive comparative studies have also been carried out
Keywords
chaos; speech recognition; speech synthesis; voice communication; chaotic noise environments; signal-to-noise ratio; speech recognition rates; voice command recognition; Automatic speech recognition; Chaos; Natural languages; Noise level; Production facilities; Robotics and automation; Signal to noise ratio; Speech analysis; Speech recognition; Working environment noise;
fLanguage
English
Publisher
ieee
Conference_Titel
Robotics and Biomimetics (ROBIO). 2005 IEEE International Conference on
Conference_Location
Shatin
Print_ISBN
0-7803-9315-5
Type
conf
DOI
10.1109/ROBIO.2005.246250
Filename
1708609
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