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使用直接声音驱动的动态范围压缩来保留房间内的空间感知。

Preserving spatial perception in rooms using direct-sound driven dynamic range compression.

作者信息

Hassager Henrik Gert, May Tobias, Wiinberg Alan, Dau Torsten

机构信息

Hearing Systems Group, Department of Electrical Engineering, Technical University of Denmark, DK-2800 Kongens Lyngby, Denmark.

出版信息

J Acoust Soc Am. 2017 Jun;141(6):4556. doi: 10.1121/1.4984040.

Abstract

Fast-acting hearing-aid compression systems typically distort the auditory cues involved in the spatial perception of sounds in rooms by enhancing low-level reverberant energy portions of the sound relative to the direct sound. The present study investigated the benefit of a direct-sound driven compression system that adaptively selects appropriate time constants to preserve the listener's spatial impression. Specifically, fast-acting compression was maintained for time-frequency units dominated by the direct sound while the processing of the compressor was linearized for time-frequency units dominated by reverberation. This compression scheme was evaluated with normal-hearing listeners who indicated their perceived location and distribution of sound images in the horizontal plane for virtualized speech. The experimental results confirmed that both independent compression at each ear and linked compression across ears resulted in broader, sometimes internalized, sound images as well as image splits. In contrast, the linked direct-sound driven compression system provided the listeners with a spatial perception similar to that obtained with linear processing that served as the reference condition. The independent direct-sound driven compressor created a sense of movement of the sound between the two ears, suggesting that preserving the interaural level differences via linked compression is advantageous with the proposed direct-sound driven compression scheme.

摘要

快速作用的助听器压缩系统通常会通过增强声音中相对于直达声的低电平混响能量部分,来扭曲与房间内声音空间感知相关的听觉线索。本研究调查了一种直接声驱动的压缩系统的益处,该系统能自适应地选择合适的时间常数以保留聆听者的空间印象。具体而言,对于以直达声为主的时频单元保持快速作用的压缩,而对于以混响为主的时频单元将压缩器的处理线性化。用听力正常的聆听者对这种压缩方案进行了评估,他们指出了在水平面上虚拟语音的声音图像的感知位置和分布。实验结果证实,每只耳朵独立压缩以及双耳联动压缩都会导致声音图像更宽,有时会向内收缩,以及图像分裂。相比之下,联动的直接声驱动压缩系统为聆听者提供了一种类似于在用作参考条件的线性处理中获得的空间感知。独立的直接声驱动压缩器在两只耳朵之间营造出一种声音移动的感觉,这表明通过联动压缩来保留双耳声级差对于所提出的直接声驱动压缩方案是有利的。

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