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Design and analysis of miniature and three tiered B-format microphones manufactured using 3D printing

机译:使用3D打印制造的微型和三层B格式麦克风的设计和分析

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This paper describes miniature and three-tiered B-format microphone array designs for accurate sound source localisation that are manufactured using 3D printing and MEMs devices. The implications of pressure gradient resolution reduction in spatial-temporal sampling on the accuracy of Direction of Arrival (DOA) estimation is analysed through simulated room impulse response measurements and characterized by the directional signal to noise ratio. It is shown how the capsule spacing can be optimally chosen based on microphone capsule sensitivity and the required DOA accuracy. Through this method a new three tiered B-format microphone array is proposed, where each tier optimally records 3D sound for a given frequency sub-band to achieve highly accurate DOA estimation for the full audible frequency range of 50 Hz to 20 kHz.
机译:本文介绍了使用3D打印和MEMs设备制造的用于精确声源定位的微型三层B格式麦克风阵列设计。通过模拟房间脉冲响应测量分析了时空采样中压力梯度分辨率降低对到达方向(DOA)估计精度的影响,并通过方向信噪比进行了表征。它显示了如何根据麦克风的胶囊灵敏度和所需的DOA精度来最佳选择胶囊间距。通过这种方法,提出了一种新的三层B格式麦克风阵列,其中每一层可以最佳地记录给定频段的3D声音,以在50 Hz至20 kHz的整个可听频率范围内实现高精度的DOA估计。

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