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Efficient Real Spherical Harmonic Representation of Head-Related Transfer Functions

机译:头部相关传递函数的有效实球谐函数表示

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Several methods have recently been proposed for modeling spatially continuous head-related transfer functions (HRTFs) using techniques based on finite-order spherical harmonic expansion. These techniques inherently impart some amount of spatial smoothing to the measured HRTFs. However, the effect this spatial smoothing has on the localization accuracy has not been analyzed. Consequently, the relationship between the order of a spherical harmonic representation for HRTFs and the maximum localization ability that can be achieved with that representation remains unknown. The present study investigates the effect that spatial smoothing has on virtual sound source localization by systematically reducing the order of a spherical-harmonic-based HRTF representation. Results of virtual localization tests indicate that accurate localization performance is retained with spherical harmonic representations as low as fourth-order, and several important physical HRTF cues are shown to be present even in a first-order representation. These results suggest that listeners do not rely on the fine details in an HRTF's spatial structure and imply that some of the theoretically-derived bounds for HRTF sampling may be exceeding perceptual requirements.
机译:最近已经提出了几种使用基于有限阶球谐展开的技术对空间连续的头部相关传递函数(HRTF)进行建模的方法。这些技术固有地为测量的HRTF赋予了一定程度的空间平滑度。但是,尚未分析这种空间平滑对定位精度的影响。因此,用于HRTF的球谐表示的顺序与该表示可以实现的最大定位能力之间的关系仍然未知。本研究通过系统地减少基于球谐函数的HRTF表示的顺序,研究了空间平滑对虚拟声源定位的影响。虚拟定位测试的结果表明,使用低至四阶的球谐表示仍可保持准确的定位性能,并且即使以一阶表示也显示出一些重要的物理HRTF提示。这些结果表明,听众并不依赖于HRTF的空间结构中的精细细节,这意味着HRTF采样的某些理论上的界限可能超出了感知要求。

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