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Fabrication of MEMS Directional Acoustic Sensors for Underwater Operation

机译:MEMS定向声学传感器的制造用于水下操作

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摘要

In this work, microelectromechanical systems (MEMS)-based directional acoustic sensors operating in an underwater environment are explored. The studied sensors consist of a free-standing single wing or two wings pivoted to a substrate. The sensors operate in a narrow frequency band determined by the resonant frequency of the mechanical structure. The electronic readout of the mechanical response is obtained using interdigitated comb finger capacitors attached to the wings. The characteristics of MEMS sensors immersed in silicone oil are simulated using finite element modeling. The performance of the sensors is evaluated both in air and underwater. For underwater testing and operation, the sensors are packaged in a housing containing silicone oil, which was specially developed to present near unity acoustic transmission. The measurements show that the resonant frequency of the sensors obtained in air shifts to a lower frequency when immersed in silicone oil, which is primarily due to the mass loading of the liquid. The peak sensitivity of the MEMS sensors is approximately 6 mV/Pa or −165 dB re 1 V/μPa, and the directional response shows a dipole pattern. The signal-to-noise ratio was found to be about 200 or 23 dB at 1 Pa incident sound pressure. The results show the potential of MEMS sensors to be used in underwater applications for sound source localization.
机译:在这项工作中,探讨了在水下环境中操作的基于微机电系统(MEMS)的基于方向声学传感器。所研究的传感器包括独立的单翼或两个枢转到基板的翼组成。传感器在由机械结构的谐振频率确定的窄频带中操作。使用连接到翼的互连的梳状电容器获得机械响应的电子读数。使用有限元模拟模拟浸没在硅油中的MEMS传感器的特性。传感器的性能在空气和水下进行评估。对于水下测试和操作,传感器封装在包含硅油的壳体中,该硅油是特别开发的,以在统一声传输附近出现。测量结果表明,当浸入硅油中时,在空气中的传感器的谐振频率转移到较低频率,这主要是由于液体的质量负荷。 MEMS传感器的峰值灵敏度约为6mV / pa或-165dB Re1v /μpa,方向响应显示偶极图案。在1Pa入射声压力下,发现信噪比为约200或23dB。结果表明MEMS传感器的潜力用于声源定位的水下应用。

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