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Comparisons of spectral characteristics of wind noise between omnidirectional and directional microphones

机译:全向和定向麦克风之间的风噪声频谱特性比较

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摘要

Wind noise reduction is a topic of ongoing research and development for hearing aids and cochlear implants. The purposes of this study were to examine spectral characteristics of wind noise generated by directional (DIR) and omnidirectional (OMNI) microphones on different styles of hearing aids and to derive wind noise reduction strategies. Three digital hearing aids (BTE, ITE, and ITC) were fitted to Knowles Electronic Manikin for Acoustic Research. They were programmed to have linear amplification and matching frequency responses between the DIR and OMNI modes. Flow noise recordings were made from 0° to 360° azimuths at flow velocities of 4.5, 9.0, and 13.5 m/s in a quiet wind tunnel. Noise levels were analyzed in one-third octave bands from 100 to 8000?Hz. Comparison of wind noise revealed that DIR generally produced higher noise levels than OMNI for all hearing aids, but it could result in lower levels than OMNI at some frequencies and head angles. Wind noise reduction algorithms can be designed to detect noise levels of DIR and OMNI outputs in each frequency channel, remove the constraint to switch to OMNI in low-frequency channel(s) only, and adopt the microphone mode with lower noise levels to take advantage of the microphone differences.
机译:降低风噪声是助听器和耳蜗植入物正在进行研究和开发的主题。这项研究的目的是检查在不同样式的助听器上由定向(DIR)和全向(OMNI)麦克风产生的风噪声的频谱特性,并推导减少风噪声的策略。将三种数字助听器(BTE,ITE和ITC)安装到Knowles电子人体模型中进行声学研究。它们被编程为在DIR和OMNI模式之间具有线性放大和匹配的频率响应。在安静的风洞中,以4.5、9.0和13.5 m / s的流速从0°到360°方位角进行流噪声记录。在100至8000?Hz的三分之一倍频程中分析了噪声水平。风噪声的比较表明,对于所有助听器,DIR通常会产生比OMNI更高的噪声水平,但是在某些频率和头部角度下,DIR可能会比OMNI产生更低的噪声水平。可以设计风噪声降低算法,以检测每个频道中D​​IR和OMNI输出的噪声水平,消除仅在低频信道中切换到OMNI的限制,并采用噪声水平较低的麦克风模式来利用麦克风的差异。

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