DocumentCode
3068512
Title
Sound quality improvement for the body-conducted speech of a sentence unit using differential acceleration
Author
Nakayama, Makoto ; Ishimitsu, Shunsuke ; Nakagawa, Seiji
Author_Institution
Kagawa Nat. Coll. of Technol., Takamatsu, Japan
fYear
2012
fDate
1-4 July 2012
Firstpage
147
Lastpage
153
Abstract
Speech is a human instrument for communication, and many applications of speech have been proposed. However, the sound quality of speech is reduced by noise in air, and many researchers and engineers have investigated speech measurement methods in noisy environments in terms of signal processing and the use of noise-robust microphones. Conventional approaches of signal measurement can measure speech in an environment with a high signal-to-noise ratio; however, these approaches do not work well in an environment with a low signal-to-noise ratio. By contrast, body-conducted speech, which is speech conducted through the bone and skin of the human body, can be measured in such an environment. However, the frequency characteristics of body-conducted speech are poorer than those of air-conducted speech, and the sound quality needs to be improved for speech applications and conversations. With this background, the paper discusses and investigates sound-quality improvements for the sentence unit of body-conducted speech using differential acceleration, which is a signal retrieval method employed to improve sound quality. The performance of the method is investigated in terms of signal retrieval from body-conducted speech recorded by an accelerometer and Optical Fiber Bragg Grating microphone.
Keywords
Bragg gratings; accelerometers; biomechanics; fibre optic sensors; microphones; speech processing; accelerometer; acoustic noise; body conducted speech; bone; differential acceleration; fiber Bragg grating microphone; frequency characteristics; noise robust microphones; noisy environments; optical FBG microphone; sentence utterance; signal processing; signal retrieval method; skin; sound quality improvement; speech sound quality; Magnetic resonance imaging; Microphones; Noise measurement; Optical recording; Speech; Accelerometer; Body-conducted speech; Differential acceleration; Noise reduction; Optical-fiber Bragg grating microphone; Signal retrieval; Sound quality;
fLanguage
English
Publisher
ieee
Conference_Titel
Complex Medical Engineering (CME), 2012 ICME International Conference on
Conference_Location
Kobe
Print_ISBN
978-1-4673-1617-0
Type
conf
DOI
10.1109/ICCME.2012.6275603
Filename
6275603
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