A novel method for wavelet quantization of noisy speech

This paper proposes an architecture for low bit rate coding of noisy speech. The input noisy speech is decomposed into multiresolution signal components using the wavelet transform. An iterative Wiener filtering is used at each level of wavelet analysis to enhance speech. The system model that evolv...

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Main Authors: Madhukumar, A. S., Premkumar, Annamalai Benjamin, Abut, H.
Other Authors: School of Computer Science and Engineering
Format: Conference or Workshop Item
Language:English
Published: 2020
Subjects:
Online Access:https://hdl.handle.net/10356/142735
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1427352020-06-29T08:04:07Z A novel method for wavelet quantization of noisy speech Madhukumar, A. S. Premkumar, Annamalai Benjamin Abut, H. School of Computer Science and Engineering 1999 IEEE Region 10 Conference (TENCON 1999) 'Multimedia Technology for Asia-Pacific Information Infrastructure' Engineering::Computer science and engineering Quantization Speech Coding This paper proposes an architecture for low bit rate coding of noisy speech. The input noisy speech is decomposed into multiresolution signal components using the wavelet transform. An iterative Wiener filtering is used at each level of wavelet analysis to enhance speech. The system model that evolves during enhancement is processed further to get optimal parameters for the quantization. A multistage vector quantizer is used for compression of the decomposed speech. The enhanced speech is reconstructed at the receiving end by a VQ decoder and the necessary wavelet reconstruction network. The speech coding rate for the proposed architecture is estimated to be about 2.37 kbps. 2020-06-29T08:04:07Z 2020-06-29T08:04:07Z 2002 Conference Paper Madhukumar, A. S., Premkumar, A. B., & Abut, H. (1999). A novel method for wavelet quantization of noisy speech. Proceedings of 1999 IEEE Region 10 Conference (TENCON 1999) 'Multimedia Technology for Asia-Pacific Information Infrastructure', 1, 142-145. doi:10.1109/TENCON.1999.818370 0-7803-5739-6 https://hdl.handle.net/10356/142735 10.1109/TENCON.1999.818370 2-s2.0-85044476748 1 142 145 en © 1999 IEEE. All rights reserved.
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic Engineering::Computer science and engineering
Quantization
Speech Coding
spellingShingle Engineering::Computer science and engineering
Quantization
Speech Coding
Madhukumar, A. S.
Premkumar, Annamalai Benjamin
Abut, H.
A novel method for wavelet quantization of noisy speech
description This paper proposes an architecture for low bit rate coding of noisy speech. The input noisy speech is decomposed into multiresolution signal components using the wavelet transform. An iterative Wiener filtering is used at each level of wavelet analysis to enhance speech. The system model that evolves during enhancement is processed further to get optimal parameters for the quantization. A multistage vector quantizer is used for compression of the decomposed speech. The enhanced speech is reconstructed at the receiving end by a VQ decoder and the necessary wavelet reconstruction network. The speech coding rate for the proposed architecture is estimated to be about 2.37 kbps.
author2 School of Computer Science and Engineering
author_facet School of Computer Science and Engineering
Madhukumar, A. S.
Premkumar, Annamalai Benjamin
Abut, H.
format Conference or Workshop Item
author Madhukumar, A. S.
Premkumar, Annamalai Benjamin
Abut, H.
author_sort Madhukumar, A. S.
title A novel method for wavelet quantization of noisy speech
title_short A novel method for wavelet quantization of noisy speech
title_full A novel method for wavelet quantization of noisy speech
title_fullStr A novel method for wavelet quantization of noisy speech
title_full_unstemmed A novel method for wavelet quantization of noisy speech
title_sort novel method for wavelet quantization of noisy speech
publishDate 2020
url https://hdl.handle.net/10356/142735
_version_ 1681058439137067008