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首页> 外文期刊>The Journal of the Acoustical Society of America >Louder sounds can produce less forward masking: Effects of component phase in complex tones
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Louder sounds can produce less forward masking: Effects of component phase in complex tones

机译:大声的声音会产生较少的前向掩盖:复杂音调中的分量相位影响

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摘要

The influence of the degree of envelope modulation and periodicity on the loudness and effectiveness of sounds as forward maskers was investigated. In the first experiment, listeners matched the loudness of complex tones and noise. The tones had a fundamental frequency (F0) of 62.5 or 250 Hz and were filtered into a frequency range from the 10th harmonic to 5000 Hz. The Gaussian noise was filtered in the same way. The components of the complex tones were added either in cosine phase (CPH), giving a large crest factor, or in random phase (RPH), giving a smaller crest factor. For each F0, subjects matched the loudness between all possible stimulus pairs. Six different levels of the fixed stimulus were sued, ranging from about 30 dB SPL to about 80 dB SPL in 10-dB steps. Results showed that, at a given overall level, the CPH and the RPH tones were louder than the noise, and that the CPH tone was louder than the RPH tone. The difference in loudness was larger at medium that at low levels and was only slightly reduced by the addition of a noise intended to mask combination tones. The differences in loudness was slightly smaller for the higher than for the lower F0. In the second experiment, the stimuli with the lower F0s were used as froward maskers of a 20-ms sinusoid, presented at various frequencies within the spectral range of the maskers. Results showed that the CPH tone was the least effective forward masker, even though it was the loudest. The differences in effectiveness as forward maskers depended on masker level and signal frequency; in order to produce equal masking, the level of the CPH tone had to be up to 35 dB above that of the RPH tone and the noise. The implications of these results for models of loudness are discussed and a model is presented based on neural activity patterns in the auditory nerve; this predicts the general pattern of loudness matches. It is suggested that the effects observed in the experiments may have been influenced by two factors: cochlear compression and suppression.
机译:研究了包络调制程度和周期性对声音的响度和有效性的影响,作为前向掩蔽器。在第一个实验中,听众将复杂音调和噪音的响度进行了匹配。这些音调的基本频率(F0)为62.5或250 Hz,并被过滤到从10次谐波到5000 Hz的频率范围。高斯噪声以相同的方式过滤。复杂音调的成分可以在余弦相位(CPH)中添加,以产生较大的波峰因数;在随机相位(RPH)中添加,以提供较小的波峰因数。对于每个F0,受试者在所有可能的刺激对之间匹配响度。使用了六个不同级别的固定刺激,范围从30 dB SPL到80 dB SPL(以10 dB为步长)。结果表明,在给定的总体水平下,CPH和RPH音调比噪声大,并且CPH音调比RPH音大。中度时的响度差异较大,中度时的响度差异较大,并且通过添加旨在掩盖组合音调的噪声而仅略有减小。较高的F0的响度差异略小于较低的F0。在第二个实验中,具有较低F0的刺激被用作20毫秒正弦波的正向掩蔽器,在掩蔽器的频谱范围内以各种频率呈现。结果显示,尽管CPH音调最大,但CPH音调是效果最差的前掩蔽器。前向掩蔽器的有效性差异取决于掩蔽器的电平和信号频率。为了产生相等的掩蔽,CPH音调的电平必须比RPH音调和噪声高35 dB。讨论了这些结果对响度模型的影响,并基于听神经的神经活动模式提出了一个模型。这可以预测响度匹配的一般模式。建议实验中观察到的效果可能受到两个因素的影响:耳蜗压缩和抑制。

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