Ciocca V
Department of Speech and Hearing Sciences, University of Hong Kong, Hong Kong.
J Acoust Soc Am. 1999 Nov;106(5):2746-51. doi: 10.1121/1.428102.
Two experiments investigated the role of the regularity of the frequency spacing of harmonics, as a separate factor from harmonicity, on the perception of the virtual pitch of a harmonic series. The first experiment compared the shifts produced by mistuning the 3rd, 4th, and 5th harmonics in the pitch of two harmonic series: the odd-H and the all-H tones. The odd-H tone contained odd harmonics 1 to 11, plus the 4th harmonic; the all-H tone contained harmonics 1 to 12. Both tones had a fundamental frequency of 155 Hz. Pitch shifts produced by mistuning the 3rd harmonic, but not the 4th and 5th harmonics, were found to be significantly larger for the odd-H tone than for the all-H tone. This finding was consistent with the idea that grouping by spectral regularity affects pitch perception since an odd harmonic made a larger contribution than an adjacent even harmonic to the pitch of the odd-H tone. However, an alternative explanation was that the 3rd mistuned harmonic produced larger pitch shifts within the odd-H tone than the 4th mistuned harmonic because of differences in the partial masking of these harmonics by adjacent harmonics. The second experiment tested these explanations by measuring pitch shifts for a modified all-H tone in which each mistuned odd harmonic was tested in the presence of the 4th harmonic, but in the absence of its other even-numbered neighbor. The results showed that, for all mistuned harmonics, pitch shifts for the modified all-H tone were not significantly different from those for the odd-H tone. These findings suggest that the harmonic relations among frequency components, rather than the regularity of their frequency spacing, is the primary factor for the perception of the virtual pitch of complex sounds.
两项实验研究了谐波频率间隔的规律性作为与谐波性不同的一个单独因素,对谐波序列虚拟音高感知的作用。第一个实验比较了在两个谐波序列(奇谐波序列和全谐波序列)音高中,对第3、4和5谐波进行失谐所产生的音高变化。奇谐波序列包含从1到11的奇谐波,再加上第4谐波;全谐波序列包含从1到12的谐波。两个序列的基频均为155赫兹。结果发现,对第3谐波进行失谐所产生的音高变化,而非第4和5谐波,对于奇谐波序列而言显著大于全谐波序列。这一发现与以下观点一致,即通过频谱规律性进行分组会影响音高感知,因为奇谐波对奇谐波序列的音高贡献比相邻的偶谐波更大。然而,另一种解释是,由于相邻谐波对这些谐波的部分掩蔽存在差异,第3个失谐谐波在奇谐波序列中产生的音高变化比第4个失谐谐波更大。第二个实验通过测量一个修改后的全谐波序列的音高变化来检验这些解释,在这个修改后的序列中,每个失谐的奇谐波在第4谐波存在但其他偶数相邻谐波不存在的情况下进行测试。结果表明,对于所有失谐谐波,修改后的全谐波序列的音高变化与奇谐波序列的音高变化没有显著差异。这些发现表明,频率成分之间的谐波关系而非其频率间隔的规律性,是复杂声音虚拟音高感知的主要因素。