A Magnitude-Based Parametric Model Predicting the Audibility of HRTF Variation

IF 1.1 4区 工程技术 Q3 ACOUSTICS Journal of the Audio Engineering Society Pub Date : 2023-04-18 DOI:10.17743/jaes.2022.0080
S. Doma, Cosima A. Ermert, J. Fels
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Abstract

This work proposes a parametric model for just noticeable differences of unilateral differences in head-related transfer functions (HRTFs). For seven generic magnitude-based distance metrics, common trends in their response to inter-individual and intra-individual HRTF differences are analyzed, identifying metric subgroups with pseudo-orthogonal behavior. On the basis of three representative metrics, a three-alternative forced-choice experiment is conducted, and the acquired discrimination probabilities are set in relation with distance metrics via different modeling approaches. A linear model, with coefficients based on principal component analysis and three distance metrics as input, yields the best performance, compared to a simple multi-linear regression approach or to principal component analysis–based models of higher complexity.
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基于幅值的HRTF变化听觉预测参数模型
这项工作提出了一个参数模型,仅用于头部相关传递函数(HRTF)中单侧差异的显著差异。对于七个通用的基于幅度的距离度量,分析了它们对个体间和个体内HRTF差异的响应的共同趋势,确定了具有伪正交行为的度量子群。在三个具有代表性的度量的基础上,进行了三种替代强迫选择实验,并通过不同的建模方法将获得的判别概率设置为与距离度量相关。与简单的多元线性回归方法或更复杂的基于主成分分析的模型相比,以基于主成分的系数和三个距离度量作为输入的线性模型产生了最佳性能。
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来源期刊
Journal of the Audio Engineering Society
Journal of the Audio Engineering Society 工程技术-工程:综合
CiteScore
3.50
自引率
14.30%
发文量
53
审稿时长
1 months
期刊介绍: The Journal of the Audio Engineering Society — the official publication of the AES — is the only peer-reviewed journal devoted exclusively to audio technology. Published 10 times each year, it is available to all AES members and subscribers. The Journal contains state-of-the-art technical papers and engineering reports; feature articles covering timely topics; pre and post reports of AES conventions and other society activities; news from AES sections around the world; Standards and Education Committee work; membership news, patents, new products, and newsworthy developments in the field of audio.
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