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Near-Field Variation of Loudness with Distance

机译:近距离响度的近场变化

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The boundary element method was used to calculate the sound pressure levels at the two ears of an artificial head when a sound source was located in different directions and distances in the near field (within 1 m). Total loudness was then calculated by using a binaural loudness model. Results showed that, in the near field, total loudness does not always increase monotonically as the source distance decreases. As distance decreased (for bands with center frequencies above 2 kHz), generally loudness first decreased and then increased (creating a local minimum); and when the distance became very small, the loudness generally began to decrease again (loudness had a local maximum). The external surface model of the artificial head was explored computationally. Calculations confirmed that the local minimum and maximum were caused by scattering from the shoulders. The effect of the width of the shoulders on near-field loudness was also determined. Finally, psychoacoustic experiments were conducted on four subjects. Results confirmed the presence of a local minimum and maximum and supported the idea that scattering from the shoulders was the main cause.
机译:当声源位于近场的不同方向和距离(在1米内时,边界元件方法用于计算人造头部的两个耳朵处的声压水平。然后通过使用双耳响度模型计算总响度。结果表明,在近场中,随着源距离降低,总响度并不总是单调地增加。随着距离减少(对于高于2 kHz的中心频率的频带),通常响度首先减少,然后增加(创建局部最小值);当距离变得非常小时,响度一般开始再次减少(响度具有局部最大值)。计算地探讨了人造头的外表面模型。计算证实,通过从肩部散射引起的局部最小和最大值。还确定了肩部宽度对近场响度的影响。最后,在四个受试者中进行了心理声学实验。结果证实存在局部最小和最大值,并支持从肩部散射的想法是主要原因。

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