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包络频率域中的频谱-时间处理。

Spectro-temporal processing in the envelope-frequency domain.

作者信息

Ewert Stephan D, Verhey Jesko L, Dau Torsten

机构信息

Carl von Ossietzky Universität Oldenburg, Medizinische Physik, D-26111 Oldenburg, Germany.

出版信息

J Acoust Soc Am. 2002 Dec;112(6):2921-31. doi: 10.1121/1.1515735.

Abstract

The frequency selectivity for amplitude modulation applied to tonal carriers and the role of beats between modulators in modulation masking were studied. Beats between the masker and signal modulation as well as intrinsic envelope fluctuations of narrow-band-noise modulators are characterized by fluctuations in the "second-order" envelope (referred to as the "venelope" in the following). In experiment 1, masked threshold patterns (MTPs), representing signal modulation threshold as a function of masker-modulation frequency, were obtained for signal-modulation frequencies of 4, 16, and 64 Hz in the presence of a narrow-band-noise masker modulation, both applied to the same sinusoidal carrier. Carrier frequencies of 1.4, 2.8, and 5.5 kHz were used. The shape and relative bandwidth of the MTPs were found to be independent of the signal-modulation frequency and the carrier frequency. Experiment 2 investigated the extent to which the detection of beats between signal and masker modulation is involved in tone-in-noise (TN), noise-in-tone (NT), and tone-in-tone (TT) modulation masking, whereby the TN condition was similar to the one used in the first experiment. A signal-modulation frequency of 64 Hz, applied to a 2.8-kHz carrier, was tested. Thresholds in the NT condition were always lower than in the TN condition, analogous to the masking effects known from corresponding experiments in the audio-frequency domain. TT masking conditions generally produced the lowest thresholds and were strongly influenced by the detection of beats between the signal and the masker modulation. In experiment 3, TT masked-threshold patterns were obtained in the presence of an additional sinusoidal masker at the beat frequency. Signal-modulation frequencies of 32, 64, and 128 Hz, applied to a 2.8-kHz carrier, were used. It was found that the presence of an additional modulation at the beat frequency hampered the subject's ability to detect the envelope beats and raised thresholds up to a level comparable to that found in the TN condition. The results of the current study suggest that (i) venelope fluctuations play a similar role in modulation masking as envelope fluctuations do in spectral masking, and (ii) envelope and venelope fluctuations are processed by a common mechanism. To interpret the empirical findings, a general model structure for the processing of envelope and venelope fluctuations is proposed.

摘要

研究了应用于纯音载波的调幅频率选择性以及调制器之间的拍频在调制掩蔽中的作用。掩蔽器与信号调制之间的拍频以及窄带噪声调制器的固有包络波动,其特征在于“二阶”包络(以下称为“venelope”)中的波动。在实验1中,在存在窄带噪声掩蔽器调制的情况下,针对4、16和64Hz的信号调制频率,获得了表示信号调制阈值作为掩蔽器调制频率函数的掩蔽阈值模式(MTP),二者均应用于相同的正弦载波。使用了1.4、2.8和5.5kHz的载波频率。发现MTP的形状和相对带宽与信号调制频率和载波频率无关。实验2研究了信号与掩蔽器调制之间拍频的检测在纯音加噪声(TN)、噪声加纯音(NT)和纯音加纯音(TT)调制掩蔽中所涉及的程度,其中TN条件与第一个实验中使用的条件相似。测试了应用于2.8kHz载波的64Hz信号调制频率。NT条件下的阈值始终低于TN条件下的阈值,这与音频域中相应实验已知的掩蔽效应类似。TT掩蔽条件通常产生最低的阈值,并且受到信号与掩蔽器调制之间拍频检测的强烈影响。在实验3中,在存在拍频处的额外正弦掩蔽器的情况下获得了TT掩蔽阈值模式。使用了应用于2.8kHz载波的32、64和128Hz的信号调制频率。发现拍频处额外调制的存在阻碍了受试者检测包络拍频的能力,并将阈值提高到与TN条件下相当的水平。当前研究的结果表明:(i)venelope波动在调制掩蔽中所起的作用与包络波动在频谱掩蔽中所起的作用相似;(ii)包络和venelope波动由共同的机制处理。为了解释实证结果,提出了一种用于处理包络和venelope波动的通用模型结构。

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