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载波电平与频率对正弦载波调制及拍频检测阈值的影响。

The influence of carrier level and frequency on modulation and beat-detection thresholds for sinusoidal carriers.

作者信息

Kohlrausch A, Fassel R, Dau T

机构信息

IPO-Center for User-System Interaction, MB Eindhoven and Philips Research Laboratories Eindhoven, The Netherlands.

出版信息

J Acoust Soc Am. 2000 Aug;108(2):723-34. doi: 10.1121/1.429605.

Abstract

This paper is concerned with modulation and beat detection for sinusoidal carriers. In the first experiment, temporal modulation transfer functions (TMTFs) were measured for carrier frequencies between 1 and 10 kHz. Modulation rates covered the range from 10 Hz to about the rate equaling the critical bandwidth at the carrier frequency. In experiment 2, TMTFs for three carrier frequencies were obtained as a function of the carrier level. In the final experiment, thresholds for the detection of either the lower or the upper modulation sideband (beat detection) were measured for "carrier" frequencies of 5 and 10 kHz, using the same range of modulation rates as in experiment 1. The TMTFs for carrier frequencies of 2 kHz and higher remained flat up to a modulation rate of about 100-130 Hz and had similar values across carrier frequencies. For higher rates, modulation thresholds initially increased and then decreased rapidly, reflecting the subjects' ability to resolve the sidebands spectrally. Detection thresholds generally improved with increasing carrier level, but large variations in the exact level dependence were observed, across subjects as well as across carrier frequencies. For beat rates up to about 70 Hz (at 5 kHz) and 100 Hz (at 10 kHz), beat detection thresholds were the same for the upper and the lower sidebands and were about 6 dB higher than the level per sideband at the modulation-detection threshold. At higher rates the threshold for both sidebands increased, but the increase was larger for the lower sideband. This reflects an asymmetry in masking with more masking towards lower frequencies. Only at rates well beyond the maximum of the TMTF did detection for the lower sideband start to be better than that for the upper sideband. The asymmetry at intermediate frequency separations can be explained by assuming that detection always takes place in filters centered above the stimulus spectrum. The shape of the TMTF and the beat-detection data reflects a limitation in resolving fast amplitude variations, which must occur central to the inner-ear filtering. Its characteristic resembles that of a first-order low-pass filter with a cutoff frequency of about 150 Hz.

摘要

本文关注正弦载波的调制与拍频检测。在第一个实验中,测量了载波频率在1至10千赫兹之间的时间调制传递函数(TMTF)。调制速率涵盖了从10赫兹到大约等于载波频率临界带宽的速率范围。在实验2中,获得了三个载波频率的TMTF作为载波电平的函数。在最后一个实验中,使用与实验1相同的调制速率范围,测量了5千赫兹和10千赫兹“载波”频率下检测较低或较高调制边带(拍频检测)的阈值。2千赫兹及以上载波频率的TMTF在调制速率约为100 - 130赫兹之前保持平坦,并且在不同载波频率下具有相似的值。对于更高的速率,调制阈值最初增加,然后迅速下降,反映了受试者在频谱上分辨边带的能力。检测阈值通常随着载波电平的增加而提高,但观察到确切的电平依赖性存在很大差异,包括不同受试者以及不同载波频率之间。对于高达约70赫兹(在5千赫兹时)和100赫兹(在10千赫兹时)的拍频速率,上下边带的拍频检测阈值相同,并且比调制检测阈值下每个边带的电平高约6分贝。在更高的速率下,两个边带的阈值都增加,但下边带的增加更大。这反映了掩蔽中的不对称性,对较低频率的掩蔽更多。只有在远远超过TMTF最大值的速率下,下边带的检测才开始优于上边带。中频间隔处的不对称性可以通过假设检测总是在以刺激频谱上方为中心的滤波器中进行来解释。TMTF的形状和拍频检测数据反映了分辨快速幅度变化的局限性,这种变化必须发生在内耳滤波的中心位置。其特性类似于截止频率约为150赫兹的一阶低通滤波器。

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