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Temporal weights in loudness: Investigation of the effects of background noise and sound level

机译:响度的时间重量:调查背景噪声和声级的影响

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Previous research has consistently shown that for sounds varying in intensity over time, the beginning of the sound is of higher importance for the perception of loudness than later parts (primacy effect). However, in all previous studies, the target sounds were presented in quiet, and at a fixed average sound level. In the present study, temporal loudness weights for a time-varying narrowband noise were investigated in the presence of a continuous bandpass-filtered background noise and the average sound levels of the target stimuli were varied across a range of 60 dB. Pronounced primacy effects were observed in all conditions and there were no significant differences between the temporal weights observed in the conditions in quiet and in background noise. Within the conditions in background noise, there was a significant effect of the sound level on the pattern of weights, which was mainly caused by a slight trend for increased weights at the end of the sounds (“recency effect”) in the condition with lower average level. No such effect was observed for the in-quiet conditions. Taken together, the observed primacy effect is largely independent of masking as well as of sound level. Compatible with this conclusion, the observed primacy effects in quiet and in background noise can be well described by an exponential decay function using parameters based on previous studies. Simulations using a model for the partial loudness of time-varying sounds in background noise showed that the model does not predict the observed temporal loudness weights.
机译:以前的研究一直表明,对于随着时间的推移而变化的声音,声音的开始具有比后来的响度的感知更高的重要性(Primacy效应)。然而,在以前的所有研究中,目标声音在安静地呈现,并且处于固定的平均声级。在本研究中,在存在连续带通滤波的背景噪声的情况下研究了时变窄噪声的时间响度权重,并且目标刺激的平均声级在60dB的范围内变化。在所有条件下观察到明显的灵平效果,并且在安静和背景噪声的条件下观察到的时间重量之间没有显着差异。在背景噪声的条件下,声级对重量模式有显着影响,这主要是由于较低的状态下的声音末端的重量增加的轻微趋势(“新近效应”)。平均水平。没有观察到在安静的条件下的这种效果。占据,观察到的最初效应在很大程度上与掩蔽以及声级无关。与此结论兼容,通过基于先前研究的参数,通过指数衰减功能可以很好地描述在安静和背景噪声中的观察到的最高效应。使用模型用于背景噪声中的时变声的部分响度模拟显示该模型不会预测观察到的时间响度权重。

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