Frequency and Wavelet Filtering for Robust Speech Recognition
Identifieur interne : 001A44 ( Istex/Checkpoint ); précédent : 001A43; suivant : 001A45Frequency and Wavelet Filtering for Robust Speech Recognition
Auteurs : Murat Deviren [France] ; Khalid Daoudi [France]Source :
- Lecture Notes in Computer Science [ 0302-9743 ]
Abstract
Abstract: Mel-frequency cepstral coefficients (MFCC) are the most widely used features in current speech recognition systems. However, they have a poor physical interpretation and they do not lie in the frequency domain. Frequency filtering (FF) is a technique that has been recently developed to design frequency-localized speech features that perform similar to MFCC in terms of recognition performances. Motivated by our desire to build time-frequency speech models, we wanted to use the FF technique as front-end. However, when evaluating FF on the Aurora-3 database we found some discrepancies in the highly mismatch case. This led us to put FF in another perspective: the wavelet transform. By doing so, we were able to explain the discrepancies and to achieve significant improvements in recognition in the highly mismatch case.
Url:
DOI: 10.1007/3-540-44989-2_54
Affiliations:
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<front><div type="abstract" xml:lang="en">Abstract: Mel-frequency cepstral coefficients (MFCC) are the most widely used features in current speech recognition systems. However, they have a poor physical interpretation and they do not lie in the frequency domain. Frequency filtering (FF) is a technique that has been recently developed to design frequency-localized speech features that perform similar to MFCC in terms of recognition performances. Motivated by our desire to build time-frequency speech models, we wanted to use the FF technique as front-end. However, when evaluating FF on the Aurora-3 database we found some discrepancies in the highly mismatch case. This led us to put FF in another perspective: the wavelet transform. By doing so, we were able to explain the discrepancies and to achieve significant improvements in recognition in the highly mismatch case.</div>
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