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Amplitude variation of bone-conducted speech compared with air-conducted speech

机译:与空中言论相比,骨对骨传播的幅度变化

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We explore the phenomenon of amplitude variation of bone-conducted (BC) speech compared with that of air-conducted (AC) speech. During vocalization, in addition to the AC components emitted through the mouth, vibrations travel through the vocal tract wall and the skull bone before they arrive at the cochlea. A bone-conductive microphone placed on the talker's head can partly capture these vibrations and convert them to BC speech signals. The amplitude of this BC speech is influenced by the mechanical properties of the bone-conduction pathways. This influence is related to the vocal tract shape, which determines the resonances of the vocal tract filter. Referring to these resonances as formants of AC speech, we can describe the amplitude variation of BC speech with respect to the location of the formants of AC speech. In this work, the amplitude variation of BC speech of Japanese vowels, CV (consonant–vowel) syllables, and long utterances have been investigated in terms of the locations of the first two formants of AC speech. Our observation suggests that when the first formant is very low with a higher second formant, the relative amplitude of BC speech is amplified. On the other hand, a relatively high first formant and lower second formant of AC speech cause a reduction in the relative BC amplitude.
机译:我们探讨了与空气传导(AC)语音相比的骨对(BC)语音的幅度变化的现象。在发声过程中,除了通过嘴发射的交流元件,振动还通过声乐道壁和颅骨,然后才到达耳蜗。放置在谈话者头上的骨头导电麦克风可以部分地捕获这些振动并将它们转换为BC语音信号。该BC语音的幅度受到骨传导途径的力学性质的影响。这种影响与声带形状有关,其决定了声道过滤器的共振。参考这些共振作为交流语音的素质,我们可以描述BC语音相对于AC语音中型的位置的幅度变化。在这项工作中,已经研究了日本元音,CV(辅音 - 元音)音节和长话语的BC语音的幅度变化,并在交流语音的前两种汉语的位置来研究。我们的观察表明,当第一甲醛与较高的二苯甲菌体非常低时,扩增BC语音的相对幅度。另一方面,交流语音的相对高的第一甲醛和下第二氟化体导致相对BC幅度的减小。

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