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Abstrakty
Automation of acoustic measurements constitutes a considerable challenge to designers. On one hand, the special character of acoustic measurements in an anechoic room requires designs that minimize disturbances to the acoustic field; on the other hand, automation always involves the introduction of additional mechanical elements, which disturb this field. The authors of this paper attempt to reconcile these conflicting demands by designing a mechatronic measurement system. On the basis of known solutions and current measurement needs, a number of concepts has been proposed, and a design has been identified that can be implemented in the room under study.
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Tom
Strony
201--207
Opis fizyczny
Bibliogr. 6 poz., rys.
Twórcy
autor
autor
autor
autor
autor
autor
- AGH University of Science and Technology, Al. Mickiewicza 30, 30-059 Kraków, Poland, batko@agh.edu.pl
Bibliografia
- [1] BATKO W., D ˛ ABROWSKI Z., ENGEL Z., KICI´NSKI J., WEYNA S., Nowoczesne metody badania procesów wibroakustycznych. Instytut Technologii Eksploatacji – Państwowy Instytut Badawczy w Radomiu, 2005.
- [2] COX T. J. and D’ANTONIO P., Acoustic absorbers and diffusers: Theory, design and application, Spon Press, 2004.
- [3] FELIS J., JAWOROWSKI H., CIEŚLIK J., Teoria mechanizmów i maszyn. Część 1. Analiza mechanizmów, Wyd. KMRiDM AGH, Kraków 2001.
- [4] KAMISI´N SKI T., FLACH A., A uniplanar manipulator for precision acoustic studies. Archives of Acoustics, 31, 4, 235–238 (2006).
- [5] PN-EN ISO 3745:2005: Determination of sound power levels of noise sources using sound pressure – Precision methods for anechoic and hemi-anechoic room.
- [6] PN-EN 60268-5:2005: Sound system equipment Part 5: Loudspeakers.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BATA-0002-0021