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Assessment of sound source localization of an intra-aural audio wearable device for audio augmented reality applications

机译:评估用于音频增强现实应用的耳内音频可穿戴设备的声源定位

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This paper presents a study on the effect of an intra-aural Audio Wearable Device (AWD) on sound source localization. The AWD used in this study is equipped with a miniature outer-ear microphone, a miniature digital signal processor and a miniature internal loudspeaker in addition to other electronics. It is aimed for audio augmented reality applications, for example to play 3D audio sounds and stimuli while keeping the wearer protected from loud or unwanted ambient noise. This AWD is evaluated in terms of ambient source localization using three localization cues computed using signals played from different positions in the horizontal and sagittal planes and recorded in the ear canals of an artificial head with and without a pair of AWDs. The localization cues are: the inter-aural time difference, the inter-aural level difference, and the head related transfer functions. Results showed that the used AWD does barely affect the localization of low frequency sounds with localization error around 2°, and only affects the localization of higher frequency sound depending on their position and frequency range.
机译:本文介绍了一种耳内音频可穿戴设备(AWD)对声源定位的影响的研究。本研究中使用的AWD除了其他电子设备外,还配备了微型外耳麦克风,微型数字信号处理器和微型内部扬声器。它旨在用于音频增强现实应用,例如播放3D音频和刺激声,同时使佩戴者免受大声或有害的环境噪声的影响。使用从在水平面和矢状面上的不同位置播放的信号计算的三个定位提示,根据环境源定位来评估此AWD,并在有和没有一对AWD的情况下,将其记录在人造头的耳道中。定位提示是:听觉间的时间差,听觉间的水平差以及与头部相关的传递函数。结果表明,所用的AWD几乎不会影响低频声音的定位,而定位误差大约为2°,而仅取决于高频声音的位置和频率范围而影响其定位。

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