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基于双耳时间延迟变化和系统旋转的动态双耳声音定位

Dynamic binaural sound localization based on variations of interaural time delays and system rotations.

作者信息

Baumann Claude, Rogers Chris, Massen Francis

机构信息

Lycée Classique Diekirch, Computarium, 32 Avenue de la Gare, Diekirch 9233, Luxembourg.

Tufts University, School of Engineering, 200 College Avenue, Medford, Massachusetts 02155, USA.

出版信息

J Acoust Soc Am. 2015 Aug;138(2):635-50. doi: 10.1121/1.4923448.

Abstract

This work develops the mathematical model for a steerable binaural system that determines the instantaneous direction of a sound source in space. The model combines system angular speed and interaural time delays (ITDs) in a differential equation, which allows monitoring the change of source position in the binaural reference frame and therefore resolves the confusion about azimuth and elevation. The work includes the analysis of error propagation and presents results from a real-time application that was performed on a digital signal processing device. Theory and experiments demonstrate that the azimuthal angle to the sound source is accurately yielded in the case of horizontal rotations, whereas the elevation angle is estimated with large uncertainty. This paper also proves the equivalence of the ITD derivative and the Doppler shift appearing between the binaurally captured audio signals. The equation of this Doppler shift is applicable for any kind of motion. It shows that weak binaural pitch differences may represent an additional cue in localization of sound. Finally, the paper develops practical applications from this relationship, such as the synthesizing of binaural images of pure and complex tones emitted by a moving source, and the generation of multiple frequency images for binaural beat experiments.

摘要

这项工作开发了一种用于可操纵双耳系统的数学模型,该模型可确定空间中声源的瞬时方向。该模型在一个微分方程中结合了系统角速度和双耳时间延迟(ITD),这使得能够在双耳参考系中监测声源位置的变化,从而解决了关于方位角和仰角的混淆问题。这项工作包括对误差传播的分析,并展示了在数字信号处理设备上进行的实时应用的结果。理论和实验表明,在水平旋转的情况下,能够准确得出声源的方位角,而仰角的估计存在较大不确定性。本文还证明了ITD导数与双耳捕获的音频信号之间出现的多普勒频移的等效性。这种多普勒频移的方程适用于任何类型的运动。结果表明,微弱的双耳音调差异可能是声音定位中的一个额外线索。最后,本文从这种关系出发开发了实际应用,例如合成移动声源发出的纯音和复音的双耳图像,以及为双耳节拍实验生成多个频率图像。

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