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Key anthropometric parameters of pinna correlate with individualized head-related transfer functions

机译:PINNA的关键人体测量参数与个性化头相关传递函数相关

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Anthropometric parameters based individualized head-related transfer functions (HRTFs) are essential to improving virtual auditory display performance. However, the interaction between anthropometric structure and sound wave is very complex, much of which is still unknown on how to measure and select proper anthropometry parameters. In the present work, a set of anthropometric parameters was measured on the 3D-scanned head models. The corresponding HRTFs were calculated using boundary element method. The correlation between anthropometric parameters and HRTFs was analyzed to select the key parameters. Result indicates that the cavum conchae depth and pinna area has strong correlation with the HRTF spectrum. A review of literature indicates that the cavum conchae depth and pinna have seldom been considered and used in previous studies on individualized HRTFs because it is difficult to be measured accurately. With our proposed methods, the new set of anthropometric parameters including cavum conchae depth and pinna area can be used to improve the recovery or customization of the individualized HRTFs.
机译:基于人体化的参数的个性化头相关传递函数(HRTF)对于提高虚拟听觉显示性能至关重要。然而,人类测量结构和声波之间的相互作用非常复杂,其中许多仍然是如何测量和选择适当的人类测量参数的仍然未知。在本作工作中,在3D扫描的头部模型上测量了一组人体测量参数。使用边界元方法计算相应的HRTF。分析人类测量参数和HRTF之间的相关性以选择密钥参数。结果表明,Cavum Conchae深度和PinNA区域与HRTF光谱具有很强的相关性。文献综述表明,在以前的研究中,牢的CANCHAE深度和PINNA很少被考虑并用于个体化HRTF的研究,因为难以准确测量。利用我们所提出的方法,可以使用包括捕获Cavum Conchae深度和脊地区域的新的人类测量参数集来改善个体化HRTF的恢复或定制。

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