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首页> 外文期刊>The Journal of the Acoustical Society of America >Characterization of gain and directivity of exponential horn receivers
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Characterization of gain and directivity of exponential horn receivers

机译:指数喇叭接收器增益与指向性的特征

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摘要

It is difficult and expensive to match the sensitivity of the most sensitive vertebrate ears with off-the-shelf microphones due to the self-noise of the sensor. The extremely small apertures of micro-electromechanical microphones create options to use horn waveguides to amplify sound prior to transduction without resulting in an unacceptably narrow directivity. Substantial gain can be achieved at wavelengths larger than the horn. An analytical model of an exponential horn embedded in a rigid spherical housing was formulated to describe the gain relative to a free-field receiver as a function of frequency and angle of arrival. For waves incident on-axis, the analytical model provided an accurate estimate of gain at high frequencies as validated by experimental measurement. Numerical models, using the equivalent source method, can account for higher order modes and comprehensively describe the acoustic scattering within and around the horn for waves arriving from any direction. Results show the directivity of horn receivers were adequately described by the analytical model up to a critical wavelength, and the mechanisms of deviation in gain at high frequencies and large angles of arrival were identified. (C) 2017 Acoustical Society of America.
机译:由于传感器的自噪声,将最敏感的脊椎动物耳朵的敏感性匹配是困难和昂贵的。微机电麦克风的极小孔径创造使用喇叭波导在转导之前放大声音的选项,而不会导致不可接受的窄方向性。在大于喇叭的波长可以实现大量增益。配制成嵌入刚性球形壳体中的指数喇叭的分析模型,以描述作为自由场接收器的增益,作为频率和到达角度。对于在轴上入射的波,分析模型提供了通过实验测量验证的高频率的准确估计。数值模型,使用等效源方法,可以考虑更高阶模式,并综合描述喇叭内部和围绕从任何方向到达的波浪的声学散射。结果表明,喇叭接收器的方向性通过临界波长的分析模型得到充分描述,并且鉴定了高频偏差和大角度的偏差机制。 (c)2017年声学社会。

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