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School of Electrical Engineering and INMC, Seoul National University, Seoul, Korea

机译:韩国首尔电气工程学院,首尔国立大学

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The current work focuses on the implementation of sound-field microphone arrays for sound source localization purposes and B-format enhancement, There are many applications where spatial audio information is very important, while reverberant sound-field and ambient noise deteriorate the recording conditions. As examples we may refer to sound recordings during movie production, virtual reality environments, teleconference and distance learning applications using 3D audio capabilities. B-format components, provided from a single soundfield microphone, are adequate to estimate sound source direction of arrival, while the combination of two soundfield microphones allows estimating the exact source location In addition, the eight (or more) available signal components can be used to apply delay and sum techniques, enabling SNR improvements and virtual positioning of a signal B-format microphone to any desired place. Simplicity, reduced computational load and effectiveness are some of the advantages of the proposed methodology, which is evaluated via software simulations.
机译:目前的工作侧重于出于声源定位的声场麦克风阵列的实现和B格式增强,存在许多空间音频信息非常重要的应用,而混响的声场和环境噪声则劣化记录条件。作为示例,我们可以在电影制作期间,虚拟现实环境,电话会议和远程学习应用程序中引用声音录制,使用3D音频功能。从单个Soundfield麦克风提供的B格式组件足以估计声源方向到达方向,而两个声场麦克风的组合允许估计精确的源位置,但是可以使用八个(或更多)可用的信号组件施加延迟和和技术,使SNR改进和信号B格式麦克风的虚拟定位到任何所需的位置。简单性,降低的计算负荷和有效性是所提出的方法的一些优点,这是通过软件模拟评估的。

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