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针对前向和后向方向声音的正交非个性化头部相关传递函数:聚类分析和实验研究。

Toward orthogonal non-individualised head-related transfer functions for forward and backward directional sound: cluster analysis and an experimental study.

机构信息

Department of Industrial Engineering and Logistics Management, Hong Kong University of Science and Technology, Hong Kong, PRC.

出版信息

Ergonomics. 2010 Jun;53(6):767-81. doi: 10.1080/00140131003675117.

Abstract

Individualised head-related transfer functions (HRTFs) have been shown to accurately simulate forward and backward directional sounds. This study explores directional simulation for non-individualised HRTFs by determining orthogonal HRTFs for listeners to choose between. Using spectral features previously shown to aid forward-backward differentiation, 196 non-individualised HRTFs were clustered into six orthogonal groups and the centre HRTF of each group was selected as representative. An experiment with 15 listeners was conducted to evaluate the benefits of choosing between six centre-front and six centre-back directional sounds rather than the single front/back sounds produced by MIT-KEMAR HRTFs. Sound localisation error was significantly reduced by 22% and 65% of listeners reduced their front-back confusion rates. The significant reduction was maintained when the number of HRTFs was reduced from six to five. This represents a preliminary success in bridging the gap between individual and non-individual HRTFs for applications such as spatial surround sound systems. STATEMENT OF RELEVANCE: Due to different pinna shapes, directional sound stimuli generated by non-individualised HRTFs suffer from serious front-back confusion. The reported work demonstrates a way to reduce front-back confusion for centre-back sounds generated from non-individualised HRTFs.

摘要

个性化头部相关传递函数 (HRTF) 已被证明可准确模拟前向和后向定向声音。本研究通过确定听众可以选择的正交 HRTF 来探索非个性化 HRTF 的定向模拟。使用先前证明有助于区分前后的频谱特征,将 196 个非个性化 HRTF 聚类为六个正交组,并选择每组的中心 HRTF 作为代表。对 15 位听众进行了实验,以评估在选择六组中心前向和六组中心后向定向声音而不是 MIT-KEMAR HRTF 产生的单个前向/后向声音之间的优势。22%和 65%的听众的声音定位误差显著降低,并且当 HRTF 的数量从六个减少到五个时,这种显著降低仍然得以维持。这代表了在个体和非个体 HRTF 之间架起桥梁的初步成功,可应用于空间环绕声系统等领域。相关声明:由于耳甲形状不同,非个性化 HRTF 生成的定向声音刺激会严重混淆前后。所报道的工作展示了一种减少非个性化 HRTF 生成的后向中心声音的前后混淆的方法。

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