DocumentCode
2863311
Title
A Cognitive Model to Mimic an Aspect of Low Level Perception of Sound: Modelling Reverberation Perception by Statistical Signal Analysis
Author
Li, Francis F.
Author_Institution
Acoust. Res. Centre, Univ. of Salford, Salford, UK
fYear
2011
fDate
16-18 Dec. 2011
Firstpage
348
Lastpage
351
Abstract
Sound reproduced and perceived in different environments, or transmitted via diverse transmission channels shows distinctive acoustic characteristics, sometimes quoted simply as acoustics. Acoustics of an auditorium can be described by the transfer function from the source to the receiver, or the impulse response in the time domain, which can be measured by instrumentation using a number of methods. On the other hand human listeners, especially trained musicians, sound engineers and acousticians can accurately differentiate acoustics of auditoria by listening to the sound effects, indicating acoustics can be viewed as a lowlevel human perception of sounds. This paper presents a computing model and algorithms to mimic human perception of reverberation, arguably a most significant aspect of acoustic perception. This is done by statistical signal analysis using maximum likelihood estimation with a purposely chosen energy decay model.
Keywords
acoustic signal processing; cognition; human factors; maximum likelihood estimation; reverberation; sound reproduction; transfer functions; acoustic perception; acousticians; auditoria acoustics; auditorium; cognitive model; computing model; distinctive acoustic characteristics; diverse transmission channels; energy decay model; human listeners; human perception; impulse response; low level sound perception; maximum likelihood estimation; modelling reverberation perception; sound effects; sound engineers; sound reproduction; statistical signal analysis; time domain; trained musicians; transfer function; Computational modeling; Humans; Mathematical model; Psychoacoustic models; Reverberation; Speech; Acsoutics; human; prception; reverberation;
fLanguage
English
Publisher
ieee
Conference_Titel
Innovations in Bio-inspired Computing and Applications (IBICA), 2011 Second International Conference on
Conference_Location
Shenzhan
Print_ISBN
978-1-4577-1219-7
Type
conf
DOI
10.1109/IBICA.2011.92
Filename
6118774
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