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The Acoustical Effect of Musicians' Movements During Musical Performances

机译:音乐表演期间音乐家动作的声学效应

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摘要

Acoustic musical instruments act as dynamic sound sources communicating the expressive intentions of a performer to the audience in a dedicated spatial environment. From an acoustical point of view, the directivity of musical instruments is relevant both for the loudness and timbre of an instrument at a certain position in the audience, as well as for the spatial characteristics of the generated sound field. Musical instruments, however, are dynamic sound sources always moved by musicians as an element of their performance on stage. This work aims at assessing the acoustical effect and the perceptual relevance of these movements. For this purpose, we have recorded solo musical performances with all standard orchestral instruments with an optical motion tracking system, as well as the corresponding audio signals. The effect of the movements was evaluated by analysing the spectral fluctuation and the time-dependence of room acoustical parameters in a virtual acoustic environment in anechoic and reverberant conditions. In a subsequent listening test, an auralization of the static and dynamic musical performance was presented to listeners by binaural synthesis, showing that the signal-related fluctuations are clearly audible both in anechoic and reverberant situations. We discuss different approaches how to consider these effects for the simulation of natural acoustic sources in virtual acoustic reality.
机译:声学乐器作为动态声音来源,使表演者的表达意图传达到专用空间环境中的观众。从声学的角度来看,乐器的方向性对于在观众中某个位置的乐器和仪器的响度和时间表以及所产生的声场的空间特征是相关的。然而,乐器是动态声音源总是被音乐家搬到舞台上表现的元素。这项工作旨在评估这些运动的声学效果和感性相关性。为此目的,我们用光学运动跟踪系统以及相应的音频信号录制了独奏音乐表演,以及光学运动跟踪系统,以及相应的音频信号。通过分析化学声学环境中的虚拟声环境中的房间声学参数的光谱波动和时间依赖性来评估运动的效果。在随后的聆听测试中,通过双耳合成向听众呈现静态和动态音乐表现的特征化,表明信号相关波动在化学和混响的情况下都清楚地听。我们讨论了不同的方法如何考虑在虚拟声学现实中的自然声学来源模拟这些效果。

著录项

  • 来源
    《Acta acustica united with acustica》 |2019年第2期|共12页
  • 作者单位

    TU Berlin Audio Commun Grp Einsteinufer 17c D-10587 Berlin Germany;

    TU Berlin Audio Commun Grp Einsteinufer 17c D-10587 Berlin Germany;

    TU Berlin Audio Commun Grp Einsteinufer 17c D-10587 Berlin Germany;

    TU Berlin Audio Commun Grp Einsteinufer 17c D-10587 Berlin Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 声学;
  • 关键词

  • 入库时间 2022-08-20 00:47:02

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