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首页> 外文期刊>Audio, Speech, and Language Processing, IEEE/ACM Transactions on >Binaural Reproduction of Finite Difference Simulations Using Spherical Array Processing
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Binaural Reproduction of Finite Difference Simulations Using Spherical Array Processing

机译:使用球面阵列处理的有限差分模拟的双耳再现

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摘要

Due to its efficiency and simplicity, the finite-difference time-domain method is becoming a popular choice for solving wideband, transient problems in various fields of acoustics. So far, the issue of extracting a binaural response from finite difference simulations has only been discussed in the context of embedding a listener geometry in the grid. In this paper, we propose and study a method for binaural response rendering based on a spatial decomposition of the sound field. The finite difference grid is locally sampled using a volumetric array of receivers, from which a plane wave density function is computed and integrated with free-field head related transfer functions, in the spherical harmonics domain. The volumetric array is studied in terms of numerical robustness and spatial aliasing. Analytic formulas that predict the performance of the array are developed, facilitating spatial resolution analysis and numerical binaural response analysis for a number of finite difference schemes. Particular emphasis is placed on the effects of numerical dispersion on array processing and on the resulting binaural responses. Our method is compared to a binaural simulation based on the image method. Results indicate good spatial and temporal agreement between the two methods.
机译:由于其效率和简便性,有限差分时域方法正成为解决各种声学领域中宽带瞬态问题的流行选择。到目前为止,仅在将收听者几何体嵌入网格中的情况下讨论了从有限差分模拟中提取双耳响应的问题。在本文中,我们提出并研究了一种基于声场空间分解的双耳响应渲染方法。使用接收器的体积阵列对有限差分网格进行局部采样,在球形谐波域中,从接收器的体积阵列中计算出平面波密度函数,并将其与与自由场磁头相关的传递函数进行积分。根据数值鲁棒性和空间混叠来研究体积阵列。开发了可预测阵列性能的解析公式,从而为许多有限差分方案提供了空间分辨率分析和数值双耳响应分析。特别强调数值分散对阵列处理和所产生的双耳响应的影响。我们的方法与基于图像方法的双耳模拟进行了比较。结果表明两种方法之间良好的时空一致性。

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