Course Visual and Auditive Perception


Responsible: Prof. Dr. rer. nat. Dietmar Kunz

Course

Meets requirements of following modules(MID)

Course Organization

Version
created 2012-05-02
VID 1
valid from WS 2012/13
valid to
Course identifiers
Long name Visual and Auditive Perception
CID F07_AVW
CEID (exam identifier)

Contact hours per week (SWS)
Lecture 3
Exercise (unsplit)
Exercise (split)
Lab
Project
Seminar
Tutorial(voluntary)
Total contact hours
Lecture 45
Exercise (unsplit)
Exercise (split)
Lab
Project
Seminar
Tutorial (voluntary)
Max. capacity
Exercise (unsplit)
Exercise (split) 40
Lab 18
Project 18
Seminar 40

Total effort (hours): 90

Instruction language

  • German

Study Level

  • Undergraduate

Prerequisites

  • none

Textbooks, Recommended Reading

  • Christoph von Campenhausen: „Die Sinne des Menschen“
  • David H. Hubel: „Auge und Gehirn – Neurophysiologie des Sehens“
  • Zwicker, E., Feldtkeller, R. (1967). „Das Ohr als Nachrichtenempfänger,“ S. Hirzel Verlag, Stuttgart.
  • Blauert, J. (1999), „Spatial Hearing,” MIT Press, Cambridge, Mass.
  • Blauert, J., Xiang, N. (2008).“Acoustic for Engineers – Troy Lectures,“ Springer Verlag, Heidelberg.
  • Weinzierl, Stefan (2008). „Handbuch der Audiotechnik,“ Springer Verlag, Berlin.

Instructors

  • Prof. Dr. rer. nat. Dietmar Kunz
  • Prof. Dr.-Ing. Christoph Pörschmann

Supporting Scientific Staff

  • tba

Transcipt Entry

Visual and Auditive Perception

Assessment

Type
fAP answer written questions (5 min) during each lecture

Total effort [hours]
fAP 3

Frequency: 1/year


Course components

Lecture/Exercise

Objectives

Contents
  • visual perception
    • structure of the visual system
    • perception of brightness
    • perception of contrast
    • spatial resolution
    • temporal resolution
    • colour perception
    • perception of spatial depth
  • auditory perception
    • human auditory system
    • loudness perception
    • pitch perception
    • spatial hearing
      • mechanisms of localisation
      • distance perception
      • cocktail-party effect
      • precedence effect / sum localisation
    • spectral and temporal masking
  • audiovisual interaction
    • audivisual precedence effect
    • Mc Gurk effect

Operational Competences
  • specify requirements for audiovisual media systems
  • assess performance of audiovisual systems with respect to human perception

Additional Component Assessment

Type
fAP answer written questions (5 min) during each lecture

Contribution to course grade
fAP 100 %

Frequency: 1/Jahr

Topic-Revision: r2 - 11 Jan 2016, GeneratedContent
 
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