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Enhancing binaural reconstruction from rigid circular microphone array recordings by using virtual microphones

机译:使用虚拟麦克风增强刚性圆形麦克风阵列录音的双耳重建

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摘要

Spatially accurate binaural reconstruction from rigid circular arrays requires a large number of microphones. However, physically adding microphones to available arrays is not always feasible. In environments such as conference rooms or concert halls, prior knowledge regarding source positions allows for the prediction of pressure signals at positions without microphones. Prediction is performed by relying on a physical model for the acoustically rigid sphere. Recently, we used this model to formulate a surface pressure interpolation method for virtual microphone generation. In this study, we use virtual microphones to enhance the high-frequency spatial accuracy of binaural reconstruction. Numerical experiments in anechoic and reverberant conditions demonstrate that adding virtual microphones extends the frequency range of operation and attenuates the time-domain artifacts.
机译:从刚性圆形阵列进行空间精确的双耳重建需要大量麦克风。但是,物理上将麦克风添加到可用阵列并不总是可行的。在会议室或音乐厅等环境中,有关源位置的先验知识可以预测没有麦克风的位置的压力信号。预测是通过依赖于物理模型来进行声学上刚性的球体的。最近,我们使用此模型为虚拟麦克风生成制定了表面压力插值方法。在这项研究中,我们使用虚拟麦克风来增强双耳重建的高频空间精度。在无回声和混响条件下的数值实验表明,添加虚拟麦克风可扩展操作的频率范围并减弱时域伪像。

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  • 会议地点 Redmond(US)
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    Research Institute of Electrical Communication (RIEC) and Graduate School of Information Sciences (GSIS), Tohoku University, Sendai 980-8577, Japan;

    Research Institute of Electrical Communication (RIEC) and Graduate School of Information Sciences (GSIS), Tohoku University, Sendai 980-8577, Japan;

    Research Institute of Electrical Communication (RIEC) and Graduate School of Information Sciences (GSIS), Tohoku University, Sendai 980-8577, Japan;

    Research Institute of Electrical Communication (RIEC) and Graduate School of Information Sciences (GSIS), Tohoku University, Sendai 980-8577, Japan;

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