首页> 外文期刊>The Journal of the Acoustical Society of America >Spatial perception of sound fields recorded by spherical microphone arrays with varying spatial resolution
【24h】

Spatial perception of sound fields recorded by spherical microphone arrays with varying spatial resolution

机译:球形麦克风阵列记录的具有不同空间分辨率的声场的空间感知

获取原文
获取原文并翻译 | 示例
           

摘要

The area of sound field synthesis has significantly advanced in the past decade, facilitated by the development of high-quality sound-field capturing and re-synthesis systems. Spherical microphone arrays are among the most recently developed systems for sound field capturing, enabling processing and analysis of three-dimensional sound fields in the spherical harmonics domain. In spite of these developments, a clear relation between sound fields recorded by spherical microphone arrays and their perception with a re-synthesis system has not yet been established, although some relation to scalar measures of spatial perception was recently presented. This paper presents an experimental study of spatial sound perception with the use of a spherical microphone array for sound recording and headphone-based binaural sound synthesis. Sound field analysis and processing is performed in the spherical harmonics domain with the use of head-related transfer functions and simulated enclosed sound fields. The effect of several factors, such as spherical harmonics order, frequency bandwidth, and spatial sampling, are investigated by applying the repertory grid technique to the results of the experiment, forming a clearer relation between sound-field capture with a spherical microphone array and its perception using binaural synthesis regarding space, frequency, and additional artifacts. The experimental study clearly shows that a source will be perceived more spatially sharp and more externalized when represented by a binaural stimuli reconstructed with a higher spherical harmonics order. This effect is apparent from low spherical harmonics orders. Spatial aliasing, as a result of sound field capturing with a finite number of microphones, introduces unpleasant artifacts which increased with the degree of aliasing error.
机译:在过去的十年中,由于高质量声场捕获和再合成系统的发展,声场合成领域有了显着发展。球形麦克风阵列是用于声场捕获的最新开发的系统之一,能够在球形谐波域中处理和分析三维声场。尽管有这些发展,但是尽管最近提出了一些与空间感知的标量度量之间的关系,但仍未建立球形麦克风阵列记录的声场与它们与再合成系统的感知之间的明确关系。本文介绍了使用球形麦克风阵列进行声音记录和基于耳机的双耳声音合成的空间声音感知的实验研究。使用与头部有关的传递函数和模拟的封闭声场,在球谐域内进行声场分析和处理。通过将储备网格技术应用于实验结果,研究了球形谐波阶次,频率带宽和空间采样等几个因素的影响,从而在球形麦克风阵列的声场捕获与其声场捕获之间形成了更清晰的关系。使用关于空间,频率和其他伪影的双耳合成进行感知。实验研究清楚地表明,当以更高的球谐阶数重构的双耳刺激代表声源时,将在空间上感知更锐利和更外部化。从低球谐次数来看,这种效果是显而易见的。由于使用有限数量的麦克风捕获声场,空间混叠会引入令人不愉快的伪影,伪影会随着混叠误差的程度而增加。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号