DocumentCode
3183585
Title
The chorus effect revisited-experiments in frequency-domain analysis and simulation of ensemble sounds
Author
Kahlin, Daniel ; Ternström, Sten
Author_Institution
Dept. of Speech Music & Hearing, R. Inst. of Technol., Stockholm, Sweden
Volume
2
fYear
1999
fDate
1999
Firstpage
75
Abstract
The so-called `chorus´ or `ensemble´ effect is interesting both musically and perceptually. It is usually imitated in effect devices using slowly varying time shifts, giving the impression of rotating speakers rather than of an ensemble. M. Dolson (1983) found that the quasi-random amplitude modulation of beating partials alone can cue the perception of ensemble. The small changes in frequency, he found, are less salient perceptually. This suggests an alternative simulation of the chorus effect. Attempts were made to corroborate Dolson´s finding, and to simulate ensembles in the frequency domain by modulating only partial tone amplitudes, using three approaches: filter banks, real FFTs and complex FFTs. The exact partial envelopes of a choral sound were found to be elusive, partly because the sidebands of one partial will overlap its neighbours at higher frequencies. The outcome of these trials is discussed and illustrated with sound examples
Keywords
amplitude modulation; electronic music; fast Fourier transforms; frequency-domain analysis; music; beating partials; choral sound; chorus effect; complex FFTs; effect devices; ensemble sound simulation; exact partial envelopes; filter banks; frequency-domain analysis; partial tone amplitudes; quasi-random amplitude modulation; real FFTs; rotating speakers; slowly varying time shifts; sound examples; Amplitude modulation; Analytical models; Auditory system; Filter bank; Frequency domain analysis; Frequency modulation; Instruments; Music; Speech analysis; Vocoders;
fLanguage
English
Publisher
ieee
Conference_Titel
EUROMICRO Conference, 1999. Proceedings. 25th
Conference_Location
Milan
ISSN
1089-6503
Print_ISBN
0-7695-0321-7
Type
conf
DOI
10.1109/EURMIC.1999.794765
Filename
794765
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