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Three-dimensional acoustic sound field reproduction based on hybrid combination of multiple parametric loudspeakers and electrodynamic subwoofer

机译:基于多参量扬声器与电动低音炮混合的三维声场再现

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Auditory Mixed Reality (MR) systems that reproduce Three-Dimensional (3-D) acoustic sound fields have recently become a research focus because the combination of visual and auditory MR systems can achieve a greater sense of presence than conventional visual MR systems. General auditory MR systems usually use a headphone-based system with a Head-Related Transfer Function (HRTF), which is a major system for reproducing 3-D acoustic sound fields. However, the localization accuracy of sound images with a HRTF depends on the individual. On the other hand, we have already proposed a system for reproducing a 3-D acoustic sound field with parametric loudspeakers instead of headphones. The 3-D acoustic sound field reproduced by this system has achieved a highly accurate localization of sound images. However, one problem is that it is difficult to reproduce lower frequency sounds using parametric loudspeakers, which causes a poorer sound quality. We tried to accomplish a greater sense of presence for 3-D acoustic sound fields based on a hybrid combination of an electrodynamic subwoofer and the parametric loudspeakers by improving the sound quality. Sound images were formed at the target location using the parametric loudspeakers, and a lower frequency sound was compensated for by using the electrodynamic subwoofer. Subjective evaluation experiments were conducted to verify the effectiveness of the proposed system. We confirmed the improved sound quality while maintaining a higher accuracy of sound image localization by using the proposed system. We also confirmed the optimum parameters of the proposed system to achieve a greater sense of presence.
机译:再现三维(3-D)声场的听觉混合现实(MR)系统最近成为研究重点,因为视觉和听觉MR系统的组合比常规视觉MR系统具有更好的临场感。普通听觉MR系统通常使用具有耳机相关传递函数(HRTF)的基于耳机的系统,该系统是用于再现3D声场的主要系统。但是,具有HRTF的声像的定位精度取决于个人。另一方面,我们已经提出了一种使用参量扬声器而不是耳机来再现3-D声场的系统。通过该系统再现的3D声场已实现了声像的高精度定位。然而,一个问题是使用参数扬声器难以再现低频声音,这导致较差的声音质量。我们尝试通过改善音质,将电动低音炮和参量扬声器混合使用,以增强3-D声场的存在感。使用参量扬声器在目标位置形成声像,并使用电动超低音扬声器补偿低频声音。进行主观评估实验以验证所提出系统的有效性。通过使用所提出的系统,我们确认了改进的声音质量,同时保持了更高的声像定位精度。我们还确认了所提出系统的最佳参数,以实现更好的存在感。

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