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Enhanced Vertical Perception through Head-Related Impulse Response Customization Based on Pinna Response Tuning in the Median Plane

机译:中点平面中基于Pinna响应调整的头部相关冲激响应定制增强了垂直感知

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摘要

Human's ability to perceive elevation of a sound and distinguish whether a sound is coming from the front or rear strongly depends on the monaural spectral features of the pinnae. In order to realize an effective virtual auditory display by HRTF (head-related transfer function) customization, the pinna responses were isolated from the median HRIRs (head-related impulse responses) of 45 individual HRIRs in the CIPIC HRTF database and modeled as linear combinations of 4 or 5 basic temporal shapes (basis functions) per each elevation on the median plane by PCA (principal components analysis) in the time domain. By tuning the weight of each basis function computed for a specific height to replace the pinna response in the KEMAR HRIR at the same height with the resulting customized pinna response and listening to the filtered stimuli over headphones, 4 individuals with normal hearing sensitivity were able to create a set of HRIRs that outperformed the KEMAR HRIRs in producing vertical effects with reduced front/back ambiguity in the median plane. Since the monaural spectral features of the pinnae are almost independent of az-imuthal variation of the source direction, similar vertical effects could also be generated at different azimuthal directions simply by varying the ITD (interaural time difference) according to the direction as well as the size of each individual's own head.
机译:人类感知声音高低并区分声音是来自前方还是后方的能力在很大程度上取决于耳廓的单声道频谱特征。为了通过HRTF(与头部相关的传递函数)定制实现有效的虚拟听觉显示,将耳廓响应与CIPIC HRTF数据库中的45个独立HRIR的中值HRIR(与头部相关的冲动响应)隔离,并建模为线性组合通过时域中的PCA(主要成分分析),在中值平面上的每个高程中每个4或5个基本时间形状(基本函数)。通过调整针对特定高度计算的每个基本函数的权重,以使用相同的个性化耳廓响应替换相同高度的KEMAR HRIR中的耳廓响应,并通过耳机收听过滤后的刺激,能够使4名听力正常的人能够创建一组HRIR,它们在产生垂直效果方面表现优于KEMAR HRIR,并且在中值平面中减少了前后歧义。由于耳廓的单耳频谱特征几乎与源方向的z向变化无关,因此,只要根据方向和方向改变ITD(耳间时间差),就可以在不同的方位角方向上产生相似的垂直效果。每个人自己的头的大小。

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