应用于音位间距离测量的欧几里得度量

A. Zeldin
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引用次数: 0

摘要

口语的相似或不同通常是由直觉呈现的,这取决于听者/说话者的个人取向或个人特征。现有的语音编码方法存在着许多不足,其中最主要的是无法对口语词汇进行定量计量。此外,现有的方法可能与某种语言或语系有关。本文提出的算法对组成一个单词的不同音素的特征进行比较。本文将音位的频率和响度作为辅音和元音的共同要素,将其作为元音的特征,将其作为辅音的发音位置。所讨论的算法允许对不同长度的单词进行定量比较,无论是由开音节还是闭音节组成的。音位间距离采用欧几里得度量法计算。本文提出了该方法的应用领域:该方案可应用于比较语言学、医学、听力障碍检查以及大脑皮层制图等领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Euclidean metrics applied to the interphonemic distance measurements
The similarity or dissimilarity of the spoken words is generally rendered by intuition, depending on the personal orientation or the personal traits of a listener/speaker. The existing methods of phonetic encoding of words suffer from a number of shortcomings, the main one being the impossibility of weighing spoken words in quantitative terms. Moreover, the existing methods may be related to a certain language or language family. The algorithm advanced in the present paper compares the characteristics of different phonemes that make up a word. The paper treats phonemic frequency and sonority as elements common both for consonants and vowels, backness and openness, as features pertaining to vowels, and the place of articulation pertaining to consonants only. The algorithm in question permits to compare in quantitative terms the words of different length, whether formed by open or closed syllables. The inter-phonemic distances are calculated by employing Euclidean metrics. The paper suggests fields of application of the method treated in the paper: this scheme can be applied in the fields of comparative linguistics, in medicine, when the hearing disorders are scrutinized, as well as in the brain cortex mapping.
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