Acoustics Research Institute, Austrian Academy of Sciences, Wohllebengasse 12-14, A-1040 Vienna, Austria.
J Acoust Soc Am. 2014 Mar;135(3):1278-93. doi: 10.1121/1.4863196.
Head-related transfer functions (HRTFs) describe the filtering of the incoming sound by the torso, head, and pinna. As a consequence of the propagation path from the source to the ear, each HRTF contains a direction-dependent, broadband time-of-arrival (TOA). TOAs are usually estimated independently for each direction from HRTFs, a method prone to artifacts and limited by the spatial sampling. In this study, a continuous-direction TOA model combined with an outlier-removal algorithm is proposed. The model is based on a simplified geometric representation of the listener, and his/her arbitrary position within the HRTF measurement. The outlier-removal procedure uses the extreme studentized deviation test to remove implausible TOAs. The model was evaluated for numerically calculated HRTFs of sphere, torso, and pinna under various conditions. The accuracy of estimated parameters was within the resolution given by the sampling rate. Applied to acoustically measured HRTFs of 172 listeners, the estimated parameters were consistent with realistic listener geometry. The outlier removal further improved the goodness-of-fit, particularly for some problematic fits. The comparison with a simpler model that fixed the listener position to the center of the measurement geometry showed a clear advantage of listener position as an additional free model parameter.
头相关传递函数 (HRTF) 描述了躯干、头部和耳廓对传入声音的滤波。由于声源到耳朵的传播路径,每个 HRTF 都包含一个与方向相关的、宽带的到达时间 (TOA)。通常,每个方向的 TOA 都是从 HRTF 中独立估计的,这种方法容易出现伪影,并且受到空间采样的限制。在这项研究中,提出了一种结合异常值去除算法的连续方向 TOA 模型。该模型基于听众的简化几何表示及其在 HRTF 测量中的任意位置。异常值去除过程使用极端学生化偏差检验来去除不合理的 TOA。该模型针对各种条件下球体、躯干和耳廓的数值计算 HRTF 进行了评估。估计参数的准确性在采样率给定的分辨率范围内。应用于 172 名听众的声学测量 HRTF,估计参数与实际听众几何形状一致。异常值去除进一步提高了拟合优度,特别是对于一些有问题的拟合。与将听众位置固定到测量几何中心的更简单模型的比较表明,将听众位置作为附加的自由模型参数具有明显的优势。