多声道环绕声系统的环境自适应声音定位

Yoon Bae Lee, V. Mariappan, Juphil Cho, S. Lee
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引用次数: 0

摘要

多声道环绕的最新发展正在以各种格式出现,以便在最近的广播中为消费者提供更好的立体感和声音效果。在人类听觉感知模型的多声道环绕系统中,声音对空间声源的定位能力是最重要的设计因素。然而,本文提出了根据扬声器间距改变声音定位的方法,这在现有的音响系统设计研究中并没有涉及到。目前,音响系统使用扬声器的位置和数量来定位声音。在多声道环绕环境下,所提出的设计利用的声音定位是由扬声器的方向性特性引起的,扬声器之间的距离以及听者与扬声器之间的距离根据方向性是需要的。利用MATLAB仿真环境对所提出的设计进行了虚拟测量仿真,并对其性能进行了测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Environment Adaptive Sound Localization for Multi-Channel Surround Sound System
Recent development in multi-channel surround is emerging in various formats to provide better stereoscopic and sound effects to consumers in recent broadcasting. The ability sound localize the sound sources in space is most considerable design factor on multi-channel surround system for human earing perception model. However, this paper propose the change of the sound localization according to the spacing of the speakers, which is not covered in the existing research focus on sound system design. Presently the sound system uses the position and number of the speakers to localize the sound. In the multi-channel surround environment, the proposed design uses the sound localization is caused by the directional characteristics of the speaker, the distance between the speakers and the distance between the listener and the speaker according to the directivity is required. The proposed design is simulated using virtual measurement with MATLAB simulation environment and performances are measured.
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