Open Access
| Issue |
Acta Acust.
Volume 10, 2026
|
|
|---|---|---|
| Article Number | 69 | |
| Number of page(s) | 10 | |
| Section | Hearing, Audiology and Psychoacoustics | |
| DOI | https://doi.org/10.1051/aacus/2026072 | |
| Published online | 24 July 2026 | |
- ISO 4869-3:2007-09, Acoustics – Hearing protectors – Part 3: Measurement of insertion loss of ear-muff type protectors using an acoustic test fixture. Berlin, 2007-09. DOI: https://doi.org/10.31030/9845849. [Google Scholar]
- EN 13819-3:2024-06, Hearing protectors – Testing – Part 3: Supplementary acoustic test methods; German version EN 13819-3:2019+A1:2024. Berlin. DOI: https://doi.org/10.31030/3531897. [Google Scholar]
- IEC 60318-1:2009-08, Electroacoustics – Simulators of human head and ear – Part 1: Ear simulator for the measurement of supra-aural and circumaural earphones. Geneva. [Google Scholar]
- IEC 60318-4:2010-01, Electroacoustics: simulators of human head and ear. Part 4, Occluded-ear simulator for the measurement of earphones coupled to the ear by means of ear inserts. Geneva. [Google Scholar]
- IEC 60318-7:2023-08, Electroacoustics – Simulators of human head and ear – Part 7: Head and torso simulator for the measurement of sound sources close to the ear (IEC 60318-7:2022); German version EN IEC 60318-7:2022. Berlin. DOI: https://doi.org/10.31030/3428822. [Google Scholar]
- K. Genuit: Strukturbestimmende merkmale von aussenohrübertragungseigenschaften, in: Deutsche Gesellschaft für Akustik e.V., Ed. Fortschritte der Akustik – FASE/DAGA 82: Jahrestagung für Akustik in Göttingen, Berlin, 1982, pp. 1195–1198. [Google Scholar]
- K. Genuit: Bestimmung strukturgemittelter aussenohrübertragungsfunktionen, in: Deutsche Gesellschaft für Akustik e.V., Ed. Fortschritte der Akustik – DAGA 84: Jahrestagung für Akustik in Darmstadt. Berlin, 1984, pp. 667–670. [Google Scholar]
- G.F. Kuhn: Physical acoustics and measurements pertaining to directional hearing, in: W.A. Yost, G. Gourevitch, Eds. Directional Hearing, Proceedings in Life Sciences. Springer New York, New York, NY, 1987, pp. 3–25. [Google Scholar]
- D. Lee, T.-S. Ahn: Development of experimental dummy and measurements of head-related transfer functions (HRTF) for averaged Korean head shape. Transactions of the Korean Society for Noise and Vibration Engineering 18, 8 (2008) 841–848. [Google Scholar]
- T. Fedtke: Zur messung von kunstköpfen im freien schallfeld, in: Deutsche Gesellschaft für Akustik e.V., Ed. Fortschritte der Akustik – DAGA 98: Jahrestagung für Akustik in Zürich. Berlin, 1998, pp. 146–147. [Google Scholar]
- S. Bögelein, F. Brinkmann, D. Ackermann, S. Weinzierl: Localization cues of a spherical head model, in: Deutsche Gesellschaft für Akustik e.V., Ed. Fortschritte der Akustik – DAGA 2018: 44. Jahrestagung für Akustik in München. Berlin, 2018, pp. 347–350. [Google Scholar]
- R. Bomhardt: Anthropometric individualization of head-related transfer functions – analysis and modeling. Ph.D. thesis, RWTH Aachen University, Aachen, 2022. [Google Scholar]
- T. Hirahara, Y. Sawada, D. Morikawa: Sound localization of dynamic binaural signals provided using a pinna-less dummy head or a stereo microphone. Interdisciplinary Information Sciences 21, 2 (2015) 159–166. [Google Scholar]
- H. Møller, D. Hammershøi, C.B. Jensen, M.F. Sørensen: Evaluation of artificial heads in listening tests. Journal of the Audio Engineering Society 47, 3 (1999) 83–100. [Google Scholar]
- P. Minnaar, S.K. Olesen, F. Christensen, H. Møller: Localization with binaural recordings from artificial and human heads. Journal of the Audio Engineering Society 49, 5 (2001) 323–336. [Google Scholar]
- V. Zimpfer, D. Sarafian: Impact of hearing protection devices on sound localization performance. Frontiers in Neuroscience 8 (2014) 135. [CrossRef] [PubMed] [Google Scholar]
- K. Howell, A.M. Martin: An investigation of the effects of hearing protectors on vocal communication in noise. Journal of Sound and Vibration 41, 2 (1975) 181–196. [Google Scholar]
- A.D. Brown, B.T. Beemer, N.T. Greene, T. Argo, G. Douglas Meegan, D.J. Tollin: Effects of active and passive hearing protection devices on sound source localization, speech recognition, and tone detection. PloS One 10, 8 (2015) e0136568. [Google Scholar]
- ANSI/ASA S12.42: Methods for the measurement of insertion loss of hearing protection devices in continuous or impulsive noise using microphone-in-real-ear or acoustic test fixture procedures, 2020-01. [Google Scholar]
- H.S. Braren, J. Fels: A high-resolution head-related transfer function data set and 3D-scan of KEMAR. RWTH Aachen University, 2020. DOI: https://doi.org/10.18154/RWTH-2020-11307. [Google Scholar]
- S. Buchholz, S. Vogl, J. Rennies: STL files for 3D-printing a head shell for acoustic test fixture GRAS 45CA. Zenodo, 2025. DOI: https://doi.org/10.5281/zenodo.15781671. [Google Scholar]
- ITU-T P.57 Artificial ears: Series P: Telephone transmission quality, telephone installations, local line networks; Objective measuring apparatus, 2021-06. [Google Scholar]
- G.F. Kuhn: Model for the interaural time differences in the azimuthal plane. The Journal of the Acoustical Society of America 62, 1 (1977) 157–167. [Google Scholar]
- T. Cai, B. Rakerd, W.M. Hartmann: Computing interaural differences through finite element modeling of idealized human heads. The Journal of the Acoustical Society of America 138, 3 (2015) 1549–1560. [Google Scholar]
- J. Blauert: Spatial Hearing: The Psychophysics of Human Sound Localization. The MIT Press, 1996. [Google Scholar]
- E.A. Shaw, M.M. Vaillancourt: Transformation of sound-pressure level from the free field to the eardrum presented in numerical form. The Journal of the Acoustical Society of America 78, 3 (1985) 1120–1123. [Google Scholar]
- M.D. Burkhard, R.M. Sachs: Anthropometric manikin for acoustic research. The Journal of the Acoustical Society of America 58, 1 (1975) 214–222. [Google Scholar]
- S. Buchholz, J. Rennies, S. van de Par: Level-dependent hearing protectors can switch the perception of sound direction. Acta Acustica 10 (2026) 9. [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.
