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MEMS Biomimetic Acoustic Pressure Gradient Sensitive Structure for Sound Source Localization

机译:用于声源定位的MEMS仿生声压梯度敏感结构

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The parasitoid fly Ormia ochracea shows an astonishing localization ability with its tiny hearing organ. A novel MEMS biomimetic acoustic pressure gradient sensitive structure was designed and fabricated by mimicking the mechanically coupled tympana of the fly. Firstly, the analytic representation formulas of the resultant force and resultant moment of the incoming plane wave acting on the structure were derived. After that, structure modal analysis was performed and the results show that the structure has out-of-phase and in-phase vibration modes, and the corresponding eigenfrequency is decided by the stiffness of vertical torsional beam and horizontal beam respectively. Acoustic-structural coupled analysis was performed and the results show that phase difference and amplitude difference between the responses of the two square diaphragms of the sensitive structure are effectively enlarged through mechanical coupling beam. The phase difference and amplitude difference increase with increasing incident angle and can be used to distinguish the direction of sound arrival. At last, the fabrication process and results of the device is also presented.
机译:寄生寄生的苍蝇Ormia ochracea的微小听觉器官具有惊人的定位能力。通过模仿苍蝇的机械耦合鼓膜,设计和制造了一种新颖的MEMS仿生声压梯度敏感结构。首先,推导了作用在结构上的入射平面波的合力和合力矩的解析表示公式。之后,进行了结构模态分析,结果表明该结构具有异相和同相振动模式,相应的本征频率分别由垂直扭转梁和水平梁的刚度决定。进行了声-结构耦合分析,结果表明,通过机械耦合光束可以有效地放大敏感结构的两个方形膜片的响应之间的相位差和幅度差。相位差和幅度差随入射角的增加而增加,可用于区分声音到达的方向。最后,介绍了该器件的制造工艺和结果。

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