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Recording and analysis of head movements interaural level and time differences in rooms and real-world listening scenarios

机译:记录和分析头部运动听觉水平和房间中的时差以及真实世界中的聆听场景

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摘要

The science of how we use interaural differences to localise sounds has been studied for over a century and in many ways is well understood. But in many of these psychophysical experiments listeners are required to keep their head still, as head movements cause changes in interaural level and time differences (ILD and ITD respectively). But a fixed head is unrealistic. Here we report an analysis of the actual ILDs and ITDs that occur as people naturally move and relate them to gyroscope measurements of the actual motion.We used recordings of binaural signals in a number of rooms and listening scenarios (home, office, busy street etc). The listener’s head movements were also recorded in synchrony with the audio, using a micro-electromechanical gyroscope. We calculated the instantaneous ILD and ITDs and analysed them over time and frequency, comparing them with measurements of head movements.The results showed that instantaneous ITDs were widely distributed across time and frequency in some multi-source environments while ILDs were less widely distributed. The type of listening environment affected head motion. These findings suggest a complex interaction between interaural cues, egocentric head movement and the identification of sound sources in real-world listening situations.
机译:过去一个多世纪以来,我们一直在研究如何使用耳间差异来定位声音的科学,并且在许多方面都已广为人知。但是在许多这些心理物理实验中,由于头部的运动会引起听觉水平和时差的改变(分别为ILD和ITD),要求听众保持头部静止。但是固定的头脑是不现实的。在这里,我们报告了对人们自然移动时出现的实际ILD和ITD的分析,并将其与陀螺仪对实际运动的测量相关联。我们在许多房间和聆听场景(家庭,办公室,繁忙的街道等)中使用了双耳信号的记录)。还使用微机电陀螺仪记录了听众的头部运动并与音频同步。我们计算了瞬时ILD和ITD并在时间和频率上对其进行了分析,并将其与头部运动的测量结果进行了比较,结果表明,在某些多源环境中,瞬时ITD在时间和频率上广泛分布,而ILD分布较不广泛。听力环境的类型会影响头部的动作。这些发现表明,在现实世界中,听觉提示,以自我为中心的头部运动和声源识别之间存在复杂的相互作用。

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