Acoustic Laboratory, Physics Department, School of Science, South China University of Technology, Guangzhou 510641, China.
J Acoust Soc Am. 2012 Jul;132(1):282-94. doi: 10.1121/1.4728168.
Head-related transfer functions (HRTFs) vary with individuals, and in practice, measuring HRTFs with high directional resolution for each individual is tiresome. Based on a basis functions representation of HRTFs, the present work proposes a method for recovering individual HRTFs from a small set of measurements. The HRTFs are represented by a combination of a small set of spatial basis functions (SBFs) with frequency- and individual-dependent weights. The SBFs are derived by applying spatial principal component analysis to a baseline HRTF dataset with high directional resolution. The individual weights for any subject outside the dataset are estimated from measurements at a few source directions, and then the HRTFs with high directional resolution are recovered by combining the SBFs and the individual weights. In an illustrative case, the SBFs derived from a baseline dataset that includes 20 subjects are used to recover the HRTF magnitudes for six subjects outside the baseline dataset. Results show that individual HRTF magnitudes can be recovered from measurements at 73 directions with a mean signal-to-distortion ratio of 19 dB. The proposed method is also applicable to recovering head-related impulse responses. The results of psychoacoustic experiments indicate that in most cases the recovered and measured HRTFs are indistinguishable.
头相关传递函数(HRTF)因人而异,在实际应用中,为每个人测量具有高方向分辨率的 HRTF 是很繁琐的。基于 HRTF 的基函数表示,本工作提出了一种从少量测量中恢复个体 HRTF 的方法。HRTF 由一组具有频率和个体依赖性权重的小空间基函数(SBF)组合表示。通过对具有高方向分辨率的基准 HRTF 数据集应用空间主成分分析,得到 SBF。对于数据集之外的任何受试者,从几个源方向的测量中估计个体权重,然后通过组合 SBF 和个体权重来恢复具有高方向分辨率的 HRTF。在一个说明性的例子中,从包括 20 个受试者的基准数据集导出的 SBF 用于恢复基准数据集之外的六个受试者的 HRTF 幅度。结果表明,个体 HRTF 幅度可以从 73 个方向的测量中恢复,平均信号失真比为 19dB。所提出的方法也适用于恢复头部相关脉冲响应。心理声学实验的结果表明,在大多数情况下,恢复和测量的 HRTF 无法区分。