Reconsidering the method of finding phonemic category boundary in speech production

IF 0.6 Q4 ACOUSTICS Acoustical Science and Technology Pub Date : 2022-11-01 DOI:10.1250/ast.43.322
S. Amano, Yukari Hirata, K. Yamakawa
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Abstract

: Several previous studies in speech production obtained a boundary of two phoneme categories by an exhaustive search for the ‘‘optimal boundary’’ that provides the best phoneme classification on an acoustic dimension such as voice onset time. However, they used this method without confirming its accuracy in estimating the true boundary. The present study examined this accuracy by conducting a Monte Carlo simulation under several conditions of the means and variances of two phoneme categories. The results revealed that, compared with the statistically estimated boundary, the ‘‘optimal boundary’’ tended to have bigger root mean square errors from the true category boundary. This finding indicates that the ‘‘optimal boundary’’ is less accurate than the statistically estimated boundary for estimating the true boundary. Our study considers the limitations of the previous method and recommends a statistically estimated boundary in future investigations.
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语音生成中寻找音位范畴边界方法的再思考
先前的一些语音产生研究通过穷尽搜索“最佳边界”获得了两个音素类别的边界,该边界在声学维度(如语音开始时间)上提供了最佳音素分类。然而,他们使用这种方法时,并没有确认其在估计真实边界时的准确性。本研究通过在两个音素类别的均值和方差的几种条件下进行蒙特卡罗模拟来检验这种准确性。结果表明,与统计估计的边界相比,“最优边界”与真实类别边界的均方根误差更大。这一发现表明,在估计真实边界时,“最优边界”不如统计估计的边界准确。我们的研究考虑了以前方法的局限性,并建议在未来的研究中采用统计估计的边界。
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来源期刊
CiteScore
1.60
自引率
14.30%
发文量
52
期刊介绍: Acoustical Science and Technology(AST) is a bimonthly open-access journal edited by the Acoustical Society of Japan and was established in 1980 as the Journal of Acoustical Society of Japan (E). The title of the journal was changed to the current title in 2001. AST publishes about 100 high-quality articles (including papers, technical reports, and acoustical letters) each year. The scope of the journal covers all fields of acoustics, both scientific and technological, including (but not limited to) the following research areas. Psychological and Physiological Acoustics Speech Ultrasonics Underwater Acoustics Noise and Vibration Electroacoustics Musical Acoustics Architectural Acoustics Sonochemistry Acoustic Imaging.
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