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用于更精确的室内声学听觉化的边缘衍射计算。

Computation of edge diffraction for more accurate room acoustics auralization.

作者信息

Torres R R, Svensson U P, Kleiner M

机构信息

Department of Applied Acoustics, Chalmers University of Technology, Göteborg, Sweden.

出版信息

J Acoust Soc Am. 2001 Feb;109(2):600-10. doi: 10.1121/1.1340647.

Abstract

Inaccuracies in computation and auralization of room impulse responses are related in part to inadequate modeling of edge diffraction, i.e., the scattering from edges of finite surfaces. A validated time-domain model (based on analytical extensions to the Biot-Tolstoy-Medwin technique) is thus employed here to compute early room impulse responses with edge diffraction. Furthermore, the computations are extended to include combinations of specular and diffracted paths in the example problem of a stage-house. These combinations constitute a significant component of the total nonspecular scattering and also help to identify edge diffraction in measured impulse responses. The computed impulse responses are then convolved with anechoic signals with a variety of time-frequency characteristics. Initial listening tests with varying orders and combinations of diffraction suggest that (1) depending on the input signal, the diffraction contributions can be clearly audible even in nonshadow zones for this conservative open geometry and (2) second-order diffraction to nonshadowed receivers can often be neglected. Finally, a practical implementation for binaural simulation is proposed, based on the singular behavior of edge diffraction along the least-time path for a given source-edge-receiver orientation. This study thus provides a first major step toward computing edge diffraction for more accurate room acoustics auralization.

摘要

房间脉冲响应计算与听觉化中的不准确部分与边缘衍射建模不足有关,即有限表面边缘的散射。因此,这里采用了一个经过验证的时域模型(基于对Biot-Tolstoy-Medwin技术的解析扩展)来计算包含边缘衍射的早期房间脉冲响应。此外,在一个舞台房屋的示例问题中,计算扩展到包括镜面反射路径和衍射路径的组合。这些组合构成了总非镜面散射的重要组成部分,也有助于在测量的脉冲响应中识别边缘衍射。然后将计算得到的脉冲响应与具有各种时频特性的消声信号进行卷积。对不同阶次和衍射组合的初步听觉测试表明:(1)对于这种保守的开放几何结构,根据输入信号,即使在非阴影区域,衍射贡献也可能清晰可闻;(2)对于非阴影接收者,二阶衍射通常可以忽略。最后,基于给定源 - 边缘 - 接收者方向沿最短时间路径的边缘衍射奇异行为,提出了一种双耳模拟的实际实现方法。因此,这项研究朝着计算边缘衍射以实现更精确的房间声学听觉化迈出了重要的第一步。

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