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位于有限语音空间内元音之间的感知差异。

Perceptual differences between vowels located in a limited phonetic space.

作者信息

Kewley-Port D, Atal B S

机构信息

AT&T Bell Laboratories, Murray Hill, New Jersey 07974.

出版信息

J Acoust Soc Am. 1989 Apr;85(4):1726-40. doi: 10.1121/1.397962.

Abstract

The perception of subphonemic differences between vowels was investigated using multidimensional scaling techniques. Three experiments were conducted with natural-sounding synthetic stimuli generated by linear predictive coding (LPC) formant synthesizers. In the first experiment, vowel sets near the pairs (i-I), (epsilon-ae), or (u-U) were synthesized containing 11 vowels each. Listeners judged the dissimilarities between all pairs of vowels within a set several times. These perceptual differences were mapped into distances between the vowels in an n-dimensional space using two-way multidimensional scaling. Results for each vowel set showed that the physical stimulus space, which was specified by the two parameters F1 and F2, was always mapped into a two-dimensional perceptual space. The best metric for modeling the perceptual distances was the Euclidean distance between F1 and F2 in barks. The second experiment investigated the perception of the same vowels from the first experiment, but embedded in a consonantal context. Following the same procedures as experiment 1, listeners' perception of the (bv) dissimilarities was not different from their perception of the isolated vowel dissimilarities. The third experiment investigated dissimilarity judgments for the three vowels (ae-alpha-lambda) located symmetrically in the F1 X F2 vowel space. While the perceptual space was again two dimensional, the influence of phonetic identity on vowel difference judgments was observed. Implications for determining metrics for subphonemic vowel differences using multidimensional scaling are discussed.

摘要

使用多维缩放技术研究了元音之间次音位差异的感知。利用线性预测编码(LPC)共振峰合成器生成的自然语音合成刺激进行了三个实验。在第一个实验中,合成了靠近(i-I)、(epsilon-ae)或(u-U)对的元音集,每个元音集包含11个元音。听众多次判断一个元音集中所有元音对之间的差异程度。这些感知差异通过双向多维缩放被映射到n维空间中元音之间的距离上。每个元音集的结果表明,由两个参数F1和F2指定的物理刺激空间总是被映射到二维感知空间中。用于模拟感知距离的最佳度量是在巴克标度下F1和F2之间的欧几里得距离。第二个实验研究了第一个实验中相同元音的感知,但将其嵌入到辅音语境中。按照与实验1相同的程序,听众对(bv)差异的感知与他们对孤立元音差异的感知没有不同。第三个实验研究了在F1×F2元音空间中对称分布的三个元音(ae-alpha-lambda)的差异判断。虽然感知空间再次是二维的,但观察到了语音身份对元音差异判断的影响。讨论了使用多维缩放确定次音位元音差异度量的意义。

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