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首页> 外文期刊>EURASIP journal on advances in signal processing >A Sparsity-Based Approach to 3D Binaural Sound Synthesis Using Time-Frequency Array Processing
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A Sparsity-Based Approach to 3D Binaural Sound Synthesis Using Time-Frequency Array Processing

机译:基于稀疏的时频阵列处理3D双声道声音合成方法

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摘要

Localization of sounds in physical space plays a very important role in multiple audio-related disciplines, such as music, telecommunications, and audiovisual productions. Binaural recording is the most commonly used method to provide an immersive sound experience by means of headphone reproduction. However, it requires a very specific recording setup using high-fidelity microphones mounted in a dummy head. In this paper, we present a novel processing framework for binaural sound recording and reproduction that avoids the use of dummy heads, which is specially suitable for immersive teleconferencing applications. The method is based on a time-frequency analysis of the spatial properties of the sound picked up by a simple tetrahedral microphone array, assuming source sparseness. The experiments carried out using simulations and a real-time prototype confirm the validity of the proposed approach.
机译:声音在物理空间中的本地化在多个与音频有关的学科中扮演着非常重要的角色,例如音乐,电信和视听产品。双耳录音是通过耳机再现提供沉浸式声音体验的最常用方法。但是,这需要使用安装在虚拟磁头中的高保真麦克风进行非常特定的录音设置。在本文中,我们提出了一种新颖的双耳声音记录和再现处理框架,该框架避免了使用虚拟磁头,特别适合沉浸式电话会议应用。该方法基于对一个简单的四面体麦克风阵列拾取的声音的空间属性进行时频分析,并假设源稀疏。使用模拟和实时原型进行的实验证实了该方法的有效性。

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