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首页> 外文期刊>The Journal of the Acoustical Society of America >Perceptual weighting of the envelope and fine structure across frequency bands for sentence intelligibility: Effect of interruption at the syllabic-rate and periodic-rate of speech
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Perceptual weighting of the envelope and fine structure across frequency bands for sentence intelligibility: Effect of interruption at the syllabic-rate and periodic-rate of speech

机译:整个句子的包络和精细结构的感知权重,以提高句子的清晰度:语音的音节速率和周期性速率时中断的影响

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摘要

Listeners often only have fragments of speech available to understand the intended message due to competing background noise. In order to maximize successful speech recognition, listeners must allocate their perceptual resources to the most informative acoustic properties. The speech signal contains temporally-varying acoustics in the envelope and fine structure that are present across the frequency spectrum. Understanding how listeners perceptually weigh these acoustic properties in different frequency regions during interrupted speech is essential for the design of assistive listening devices. This study measured the perceptual weighting of young normal-hearing listeners for the envelope and fine structure in each of three frequency bands for interrupted sentence materials. Perceptual weights were obtained during interruption at the syllabic rate (i.e., 4 Hz) and the periodic rate (i.e., 128 Hz) of speech. Potential interruption interactions with fundamental frequency information were investigated by shifting the natural pitch contour higher relative to the interruption rate. The availability of each acoustic property was varied independently by adding noise at different levels. Perceptual weights were determined by correlating a listener's performance with the availability of each acoustic property on a trial-by-trial basis. Results demonstrated similar relative weights across the interruption conditions, with emphasis on the envelope in high-frequencies.
机译:由于竞争的背景噪音,听众通常只有语音片段可用于理解预期的消息。为了最大程度地实现成功的语音识别,听众必须将他们的感知资源分配给最有用的声学属性。语音信号包含在整个频谱中存在的随时间变化的声学包络和精细结构。了解语音在中断的语音中如何感知听众在不同频率范围内的声学特性,这对于设计辅助聆听设备至关重要。这项研究测量了听力正常的年轻听众在被中断句子材料的三个频段中每个包络和精细结构的感知权重。在中断期间以语音的音节速率(即4Hz)和周期性速率(即128Hz)获得感知权重。通过将自然音高轮廓相对于中断速率移得更高,研究了具有基本频率信息的潜在中断相互作用。通过添加不同级别的噪声,可以独立改变每个声学属性的可用性。通过在逐步试验的基础上,将听众的表现与每个声学属性的可用性相关联,来确定感知权重。结果表明,在整个中断条件下,相对权重相似,重点是高频包络。

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