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Audibility threshold of auditory-adapted exponential transfer-function smoothing (AAS) applied to loudspeaker impulse responses

机译:听觉适应的指数转移功能平滑(AAS)的可听性阈值适用于扬声器脉冲响应

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A reverberant acoustical system's transfer function may show deep notches or pronounced peaks, requiring large linear amplification in the play-back system when used, for example in auralization or for convolution reverb. It is common practice to apply spectral smoothing, with the aim of reducing spectral fluctuation without degrading auditory-relevant information. A procedure referred to as auditory-adapted exponential smoothing (AAS) was proposed earlier, adapted to the spectral properties of the hearing system by implementing frequency-dependent smoothing bandwidths. This contribution presents listening experiments aimed at determining the audibility threshold of auditory-adapted exponential smoothing, which is the maximum amount of spectral smoothing allowed without being audible. As the results depend on the specific acoustic system, parametrization guidelines are proposed.
机译:混响的声学系统的传递函数可以显示深度凹口或发音峰,当使用时,在播放系统中需要大的线性放大,例如在Auratization或卷积混响中。常见的做法是应用光谱平滑,目的是降低光谱波动而不会降低听觉相关信息。提前提出了一种称为听觉适应指数平滑(AAS)的过程,通过实现频率相关的平滑带宽来适应听力系统的光谱特性。该贡献提供了旨在确定听觉适应的指数平滑的可听性阈值的聆听实验,这是允许的最大光谱平滑量而不进行听见。结果取决于特定声学系统,提出了参数化指导。

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