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Event

Semester: Winter term 2022

5.04.4203 Angewandte Psychophysik: Anwendungen bei Audioqualitätsbewertungen / Applied Psychophysics: Applications in audio quality -  


Event date(s) | room

  • Mittwoch, 19.10.2022 16:15 - 17:45 | W16A 010
  • Mittwoch, 26.10.2022 16:15 - 17:45 | W16A 010
  • Mittwoch, 2.11.2022 16:15 - 17:45 | W16A 010
  • Mittwoch, 9.11.2022 16:15 - 17:45 | W16A 010
  • Mittwoch, 16.11.2022 16:15 - 17:45 | W16A 010
  • Mittwoch, 23.11.2022 16:15 - 17:45 | W16A 010
  • Mittwoch, 30.11.2022 16:15 - 17:45 | W16A 010
  • Mittwoch, 7.12.2022 16:15 - 17:45 | W16A 010
  • Mittwoch, 14.12.2022 16:15 - 17:45 | W16A 010
  • Mittwoch, 21.12.2022 16:15 - 17:45 | W16A 010
  • Mittwoch, 11.1.2023 16:15 - 17:45 | W16A 010
  • Mittwoch, 18.1.2023 16:15 - 17:45 | W16A 010
  • Mittwoch, 25.1.2023 16:15 - 17:45 | W16A 010
  • Mittwoch, 1.2.2023 16:15 - 17:45 | W16A 010
  • Mittwoch, 8.2.2023 14:00 - 15:00 | W01 1-117

Description

Detailed knowledge of the theoretical concepts underlying listening tests and of modern designs of listening tests. Knowledge about human auditory perception and its application in e.g. audio quality and digital signal processing.
Subjective listening experiment design and models of human auditory perception will be treated with a focus on application in audio quality assessments (e.g. for sound reproduction) and in digital signal processing algorithm development (e.g. for low bit-rate audio coding and headphone virtualizers).

Lecturers

Study fields

  • Studium generale / Gasthörstudium

SWS
2

Lehrsprache
englisch

Für Gasthörende / Studium generale geöffnet:
Ja

Hinweise zum Inhalt der Veranstaltung für Gasthörende
Detailed knowledge of the theoretical concepts underlying listening tests and of modern designs of listening tests. Knowledge about human auditory perception and its application in e.g. audio quality and digital signal processing. Subjective listening experiment design and models of human auditory perception will be treated with a focus on application in audio quality assessments (e.g. for sound reproduction) and in digital signal processing algorithm development (e.g. for low bit-rate audio coding and headphone virtualizers).

Info-Link
http://www.uni-oldenburg.de/fileadmin/user_upload/physik/PDF/Modulhandbuecher/Modulhandbuch_Fach-Master_Physik_2015_WS.pdf#page=37

(Changed: 19 Jan 2024)  | 
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