Shabtai Noam R, Behler Gottfried, Vorländer Michael, Weinzierl Stefan
Institute of Technical Acoustics, RWTH Aachen University, Kopernikusstr. 5, 52074 Aachen, Germany.
Audio Communication Group, Technical University Berlin, Einsteinufer 17, 10587 Berlin, Germany.
J Acoust Soc Am. 2017 Feb;141(2):1246. doi: 10.1121/1.4976071.
A database of acoustic radiation patterns was recorded, modeled, and analyzed for 41 modern or authentic orchestral musical instruments. The generation of this database included recordings of each instrument over the entire chromatic tone range in an anechoic chamber using a surrounding spherical microphone array. Acoustic source centering was applied in order to align the acoustic center of the sound source to the physical center of the microphone array. The acoustic radiation pattern is generated in the spherical harmonics domain at each harmonic partial of each played tone. An analysis of the acoustic radiation pattern complexity has been performed in terms of the number of excitation points using the centering algorithm. The database can be used both for studying the radiation of musical instruments itself, as well as for the implementation of radiation patterns in room acoustical simulations and auralization in order to obtain a spatial excitation of the room closer to reality.
记录、建模并分析了41种现代或正宗管弦乐器的声辐射模式数据库。该数据库的生成包括在消声室内使用环绕球形麦克风阵列对每种乐器在整个半音音域内进行录音。应用了声源定心技术,以便将声源的声学中心与麦克风阵列的物理中心对齐。在每个弹奏音符的每个谐波分量处,在球谐域中生成声辐射模式。使用定心算法,根据激励点的数量对声辐射模式的复杂性进行了分析。该数据库既可以用于研究乐器本身的辐射,也可以用于在室内声学模拟和听觉化中实现辐射模式,以便获得更接近现实的房间空间激励。