DocumentCode
2664789
Title
Overlap and Add Sinusoidal Synthesis Method of Speech Signal Using Amplitude-Weighted Phase Error Function and Damping Harmonic Amplitude Parameter
Author
Park, Jong-Bae ; Lee, In-Sung
Author_Institution
Dept. of Radio Eng., Chungbuk Nat. Univ., Cheongju, South Korea
fYear
2008
fDate
10-12 Dec. 2008
Firstpage
844
Lastpage
848
Abstract
In this paper, we propose new methods with the improved continuity performance of over and add speech signal synthesis method using amplitude-weighted phase error function and damping harmonic amplitude parameter. The general overlap and add sinusoidal synthesis method minimizes the phase discontinuity of the boundaries of the sinusoidal synthesis signal to estimate a mid-point phase value. But, one of the proposed methods minimizes the wave discontinuity of the synthesis signal to estimate the mid-point phase. The proposed method uses the average value of past and current parameters for the sinusoidal amplitude used as the weight of phase error function. But, another proposed method extracts the more accurate sinusoidal amplitude by using a correlation between the original signals and the synthesized signals for the sinusoidal amplitude used as the weights. To verify the performance of the proposed methods, we observed the average differential error value between the synthesized signals.
Keywords
harmonics; speech synthesis; amplitude-weighted phase error function; average differential error value; damping harmonic amplitude parameter; mid-point phase value; sinusoidal synthesis method; speech signal synthesis method; wave discontinuity; Damping; Frequency estimation; Interpolation; Matching pursuit algorithms; Parameter estimation; Phase estimation; Signal processing; Signal synthesis; Speech processing; Speech synthesis; Match Pursit; Overlap and Add; Sinuslidal signal;
fLanguage
English
Publisher
ieee
Conference_Titel
Computational Intelligence for Modelling Control & Automation, 2008 International Conference on
Conference_Location
Vienna
Print_ISBN
978-0-7695-3514-2
Type
conf
DOI
10.1109/CIMCA.2008.121
Filename
5172735
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