DocumentCode :
3334038
Title :
Multipitch estimation and sound separation by the spectral smoothness principle
Author :
Klapuri, Anssi P.
Author_Institution :
Tampere Univ. of Technol., Finland
Volume :
5
fYear :
2001
fDate :
2001
Firstpage :
3381
Abstract :
A processing principle is proposed for finding the pitches and separating the spectra of concurrent musical sounds. The principle, spectral smoothness, is used in the human auditory system which separates sounds partly by assuming that the spectral envelopes of real sounds are continuous. Both theoretical and experimental evidence is presented for the vital importance of spectral smoothness in resolving sound mixtures. Three algorithms of varying complexity are described which successfully implement the new principle. In validation experiments, random pitch and sound source combinations were analyzed in a single time frame. The number of simultaneous sounds ranged from one to six, the database comprising sung vowels and 26 musical instruments. Usage of a specific yet straightforward smoothing operation corrected approximately half of the pitch errors that occurred in a system which was otherwise identical but did not use the smoothness principle. In random four-voice mixtures, pitch error rate reduced from 18 % to 8.1 %
Keywords :
acoustic signal processing; hearing; music; parameter estimation; smoothing methods; spectral analysis; database; human auditory system; multipitch estimation; musical instruments; musical sounds; pitch error rate reduction; random pitch; random sound source; simultaneous sounds; sound mixture resolution; sound separation; spectral envelopes; spectral smoothness; sung vowels; Auditory system; Computational modeling; Databases; Error analysis; Error correction; Frequency; Humans; Instruments; Psychoacoustic models; Smoothing methods;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Acoustics, Speech, and Signal Processing, 2001. Proceedings. (ICASSP '01). 2001 IEEE International Conference on
Conference_Location :
Salt Lake City, UT
ISSN :
1520-6149
Print_ISBN :
0-7803-7041-4
Type :
conf
DOI :
10.1109/ICASSP.2001.940384
Filename :
940384
Link To Document :
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