用发音指数波段相关性估计日语DRT可理解性

K. Kondo
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引用次数: 1

摘要

我们提出并评估了一种强制选择日语诊断韵测试(DRT)的估计方法。该方法考虑了从一对押韵词中强制选择DRT的方式。本文使用的客观距离测量是基于发音指标频带相关性(ABC),该方法在英语修饰韵测试(MRT)中显示出良好的效果。计算候选词对中两个词的测试词与模板词语音的时频相关性。相关性较高的单词被决定为可能的候选单词。计算发音指数(Articulation Index, AI)波段的时频(T-F)模式,并计算测试对应波段与候选词样本之间的相关性。最终选择具有更多AI波段且相关值较高的候选词。计算与候选单词相关度较高的频带与频带总数的比率,以量化测试单词与单词对中候选单词的匹配程度。我们使用混合了已知噪声的语音,从可理解性分数的比率估计了一个逻辑映射函数。然后利用映射函数估计含有未知噪声的语音的可理解性。该估计与我们之前评估的另一种测量方法进行了比较,即频率加权的分段信噪比,并被证明更准确,估计和估计的可理解性之间的相关性超过0.93,均方根低于0.15。因此,在许多需要测试的噪声条件下,应该有可能“筛选”可理解性,并减少所需的主观测试的规模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Estimation of Japanese DRT intelligibility using Articulation Index Band Correlations
We proposed and evaluated an estimation method for the forced selection Japanese Diagnostic Rhyme Test (DRT). The proposed measure takes into account the forced selection manner of the DRT from a pair of rhyming words. The objective distance measure used here was based on the Articulation index Band Correlation (ABC), which showed favorable results for the English Modified Rhyme Test (MRT). The correlation of time-frequency patterns between the test word and the template word speech of the two words in the candidate word pair was calculated. The word with the higher correlation was decided to be the likely candidate word. The time-frequency (T-F) pattern was calculated in the Articulation Index (AI) bands, and the correlation was calculated between the corresponding bands of the test and candidate word sample. The candidate word with more AI bands showing higher correlation values was finally chosen. The ratio of bands with higher correlation with the candidate word vs. the total number of bands is calculated to quantify how well the test word matches the candidate word in the word pair. We estimated a logistic mapping function from this ratio to intelligibility scores using speech mixed with known noise. The mapping functions were then used to estimate the intelligibility of speech mixed with unknown noise. This estimation was compared to another measure that we previously have evaluated, the frequency-weighed segmental SNR, and was proven to be more accurate, with the correlation between estimated and estimated intelligibility over 0.93, and the root mean square below 0.15. Thus, it should be possible to "screen" the intelligibility in many of the noise conditions to be tested, and cut down on the scale of the subjective test needed.
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