Perceptual audio quality assessment for coder evaluation

Julio C. Garcia-Alvarez, Santiago E. Aguirre, Paulo C. Diaz-Solarte

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

1 Scopus citations

Abstract

The sound is part of the human stimuli, whose information is given by pressure fluctuations into the ear. The perceived sound quality has recently evaluated the performance of audio coders. Newer evaluation methodologies involve psychological and physiological responses of human listeners. However, there is no available methodology providing any relationship between the perceptual assessment and the audio coder performance evaluation. The present work illustrates the Perceptual Audio Quality Assessment (PQA), which analyzes the sound quality perceived by a listener, using a database composed of distorted audio recordings. The distorted records also pass through channels commonly used for audio signal transmission. This experiment allows us to determine a methodology that gives the first step to select an adequate audio compression format and the appropriate modulation/coding scheme for transmitting an audio signal format without a perceived loss.

Original languageEnglish
Title of host publicationProceedings 2014 IEEE 4th International Conference on Consumer Electronics - Berlin, ICCE-Berlin
EditorsFrancisco J. Bellido, Dietmar Hepper, Hans L. Cycon, Alexander Huhn
PublisherIEEE Computer Society
Pages408-410
Number of pages3
EditionFebruary
ISBN (Electronic)9781479961658
DOIs
StatePublished - 05 Feb 2015
Externally publishedYes
Event2014 4th IEEE International Conference on Consumer Electronics - Berlin, ICCE-Berlin - Berlin, Germany
Duration: 07 Sep 201410 Sep 2014

Publication series

NameIEEE International Conference on Consumer Electronics - Berlin, ICCE-Berlin
NumberFebruary
Volume2015-February
ISSN (Print)2166-6814
ISSN (Electronic)2166-6822

Conference

Conference2014 4th IEEE International Conference on Consumer Electronics - Berlin, ICCE-Berlin
Country/TerritoryGermany
CityBerlin
Period07/09/1410/09/14

Keywords

  • Digital transmission channel
  • audio codecs
  • psychoacoustic
  • quantification noise
  • sound assessment

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