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首页> 外文期刊>The Journal of the Acoustical Society of America >Auralization study of optimum reverberation times for speech intelligibility for normal and hearing-impaired listeners in classrooms with diffuse sound fields
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Auralization study of optimum reverberation times for speech intelligibility for normal and hearing-impaired listeners in classrooms with diffuse sound fields

机译:带有混响声场的普通和听力受损听众语音清晰度的最佳混响时间的听觉化研究

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摘要

Speech-intelligibility tests auralized in a virtual classroom were used to investigate the optimal reverberation times for verbal communication for normal-hearing and hearing-impaired adults. The idealized classroom had simple geometry, uniform surface absorption, and an approximately diffuse sound field. It contained a speech source, a listener at a receiver position, and a noise source located at one of two positions. The relative output levels of the speech and noise sources were varied, along with the surface absorption and the corresponding reverberation time. The binaural impulse responses of the speech and noise sources in each classroom configuration were convolved with Modified Rhyme Test (MRT).and babble-noise signals. The resulting signals were presented to normal-hearing and hearing-impaired adult subjects to identify the configurations that gave the highest speech intelligibilities for the two groups. For both subject groups, when the speech source was closer to the listener than the noise source, the optimal reverberation time was zero. When the noise source was closer to the listener than the speech source, the optimal reverberation time included both zero and nonzero values. The results generally support'previous theoretical results. (c) 2006 Acoustical Society of America.
机译:在虚拟教室中进行听觉化的语音可理解度测试用于调查正常听觉和听力受损的成年人进行言语交流的最佳混响时间。理想的教室具有简单的几何形状,均匀的表面吸收和近似扩散的声场。它包含一个语音源,一个位于接收者位置的听众以及一个位于两个位置之一的噪声源。语音和噪声源的相对输出水平以及表面吸收和相应的混响时间都不同。在每个教室配置中,语音和噪声源的双耳冲激响应都与改进的韵律测试(MRT)和ba啪声信号进行卷积。产生的信号被呈现给听力正常和听力受损的成人受试者,以识别为两组提供最高语音清晰度的配置。对于两个主题组,当语音源比噪声源更靠近听众时,最佳混响时间为零。当噪声源比语音源更靠近听众时,最佳混响时间包括零值和非零值。结果通常支持“先前的理论结果”。 (c)2006年美国声学学会。

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