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首页> 外文期刊>The Journal of the Acoustical Society of America >Effects of simultaneous perturbations of voice pitch and loudness feedback on voice F-0 and amplitude control
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Effects of simultaneous perturbations of voice pitch and loudness feedback on voice F-0 and amplitude control

机译:语音音高和响度反馈的同时摄动对语音F-0和幅度控制的影响

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摘要

Perturbations in either voice pitch or loudness feedback lead to changes in a speaker's voice fundamental frequency (F-0) or amplitude. Voice pitch or loudness perturbations were presented individually (either pitch or loudness shift stimuli) or simultaneously (pitch combined with loudness shift stimuli) to subjects sustaining a vowel to test the hypothesis that the mechanisms for these two response types are independent. For simultaneous perturbations, pitch and loudness both changed in the same direction or in opposite directions. Results showed that subjects responded with voice F-0 or amplitude responses that opposed the direction of the respective pitch- or loudness shift stimuli. Thus, depending on the stimulus direction, both responses could either change in the same direction or in the opposite direction to each other. F-0 response magnitudes were greatest with pitch-shift only stimuli (18 cents), smallest for loudness shift stimuli (10 cents) and intermediate with pitch combined with loudness shift stimuli (13 and 16 cents). Amplitude responses were largest with +3 dB stimuli (0.96 dB) and smallest with -3 dB stimuli (0.49 dB). but were not affected by the addition of pitch-shift stimuli. Results suggest the F-0 and amplitude response mechanisms may be independent but interact in some conditions. (C) 2007 Acoustical Society of America.
机译:语音音调或响度反馈中的干扰都会导致扬声器的语音基本频率(F-0)或幅度发生变化。语音音高或响度摄动被单独(音高或响度变化刺激)或同时(音高与响度变化刺激相结合)呈现给维持元音的对象,以测试这两种响应类型的机制是独立的假设。对于同时发生扰动,音高和响度都沿相同方向或相反方向变化。结果表明,受试者的声音F-0或幅度响应与各自的音高或响度变化刺激的方向相反。因此,取决于刺激方向,两个响应可以在彼此相同的方向或相反的方向上变化。 F-0响应幅度在仅音高偏移刺激下最大(18美分),在响度偏移刺激下最小(10美分),在音高与响度偏移刺激结合时中等(13和16美分)。幅度响应在+3 dB刺激(0.96 dB)时最大,而在-3 dB刺激(0.49 dB)时最小。但不受音高变化刺激的影响。结果表明,F-0和振幅响应机制可能是独立的,但在某些条件下会相互作用。 (C)2007美国声学学会。

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