DocumentCode :
18109
Title :
Quasi Closed Phase Glottal Inverse Filtering Analysis With Weighted Linear Prediction
Author :
Airaksinen, Manu ; Raitio, Tuomo ; Story, Brad ; Alku, Paavo
Author_Institution :
Dept. of Signal Process. & Acoust., Aalto Univ., Espoo, Finland
Volume :
22
Issue :
3
fYear :
2014
fDate :
Mar-14
Firstpage :
596
Lastpage :
607
Abstract :
This study presents a new glottal inverse filtering (GIF) technique based on closed phase analysis over multiple fundamental periods. The proposed quasi closed phase (QCP) analysis method utilizes weighted linear prediction (WLP) with a specific attenuated main excitation (AME) weight function that attenuates the contribution of the glottal source in the linear prediction model optimization. This enables the use of the autocorrelation criterion in linear prediction in contrast to the covariance criterion used in conventional closed phase analysis. The QCP method was compared to previously developed methods by using synthetic vowels produced with the conventional source-filter model as well as with a physical modeling approach. The obtained objective measures show that the QCP method improves the GIF performance in terms of errors in typical glottal source parametrizations for both low- and high-pitched vowels. Additionally, QCP was tested in a physiologically oriented vocoder, where the analysis/synthesis quality was evaluated with a subjective listening test indicating improved perceived quality for normal speaking style.
Keywords :
filtering theory; speech codecs; speech processing; speech synthesis; AME weight function; GIF technique; QCP analysis method; attenuated main excitation weight function; autocorrelation criterion; closed phase analysis; conventional source-filter model; covariance criterion; glottal inverse filtering analysis; glottal source parametrization; high pitched vowel; linear prediction model optimization; low pitched vowel; normal speaking style; physical modeling approach; physiologically oriented vocoder; speech analysis quality; speech synthesis quality; subjective listening test; synthetic vowel; weighted linear prediction; Accuracy; Correlation; IEEE transactions; Production; Speech; Speech processing; Transfer functions; Closed phase analysis; GIF; glottal inverse filtering; speech analysis; weighted linear prediction;
fLanguage :
English
Journal_Title :
Audio, Speech, and Language Processing, IEEE/ACM Transactions on
Publisher :
ieee
ISSN :
2329-9290
Type :
jour
DOI :
10.1109/TASLP.2013.2294585
Filename :
6680604
Link To Document :
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