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Audibility of Differences in Adjacent Head-Related Transfer Functions

机译:听觉相关的头部相关传递函数中的差异

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The smallest directional change that can reliably be perceived provides a useful measure to assess the required spatial resolution for virtual spatial sound. Here, the ability of naive listeners to discriminate changes in the characteristics of HRTFs was measured. In one experiment the smallest angular separation needed to discriminate between the magnitude spectrum of HRTFs was determined. In a second experiment the smallest change in interaural time difference (ITD) that could just be audible was determined. Generic HRTFs were used for both experiments. Results showed a large inter-subject variability, which was particularly pronounced for discrimination of changes in ITD. Mean thresholds for changes in ITD ranged from 87.8 to 163 mu s. Mean thresholds for discrimination of spectral differences ranged from 2.4 to 11 degrees, and significant differences were found depending on the direction of change. Results suggest that ITDs do not seem to require very high resolutions, and that spatial resolution for spectral characteristics is not uniform meaning that different resolutions are needed depending on sound direction.
机译:可以可靠地感知到的最小方向变化为评估虚拟空间声音所需的空间分辨率提供了一种有用的措施。在这里,测量了天真听众辨别HRTF特征变化的能力。在一项实验中,确定了区分HRTF幅度谱所需的最小角度间隔。在第二个实验中,确定了可以听见的最小听觉间时差(ITD)变化。两种实验均使用通用的HRTF。结果显示,受试者之间存在较大差异,这对于区分ITD的变化尤为明显。 ITD变化的平均阈值为87.8到163μs。辨别光谱差异的平均阈值范围为2.4至11度,并且根据变化方向发现了显着差异。结果表明,ITD似乎并不需要很高的分辨率,并且频谱特征的空间分辨率也不统一,这意味着根据声音方向需要不同的分辨率。

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