Narrowband underwater vector sensor using michroelectromechanical systems

Fabio Alves, Justin Ivancic
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Abstract

A narrowband underwater vector sensor using microelectromechanical (MEMS) systems is demonstrated. A combination of two pressure gradient MEMS sensors and an omnidirectional hydrophone allows for determination of the direction of arrival (DOA) of income sound over 360 degrees azimuth. The MEMS sensors, inspired on the hearing system of the Ormia-ochracea fly, consist of two wings connected by a bridge and anchored to the substrate by a tortional bean. They are operated with open back to allow a cosine dependence with the angle of incidence in the predominant bending vibrational mode. In the vector sensor, two MEMS sensors are orthogonally arranged to provide a cosine and sine directional pattern. When combined with an omnidirectional hydrophone that shares the same phase center, an arctangent estimator is used for DOA determination. The MEMS sensors are operated near resonance to filter out noise coming from undesired bands and improve the signal-to-noise ratio. A correction algorithm is applied to compensate frequency response differences. Two configurations have been demonstrated with the MEMS sensors enclosed in silicone oil and in air. The standard deviation of the measured DOA error has been computed for both configurations to be less than 5 degrees for various types of sound stimuli.
使用微机电系统的窄带水下矢量传感器
展示了一种使用微机电(MEMS)系统的窄带水下矢量传感器。两个压力梯度 MEMS 传感器和一个全方向水听器相结合,可以确定 360 度方位角的声音到达方向(DOA)。MEMS 传感器受 Ormia-ochracea 苍蝇听觉系统的启发,由两翼组成,两翼之间由桥梁连接,并通过扭转豆固定在基板上。它们采用开放式背板,以便在主要的弯曲振动模式下与入射角成余弦关系。在矢量传感器中,两个 MEMS 传感器正交排列,以提供余弦和正弦方向模式。当与共享相同相位中心的全向水听器相结合时,可使用反正切估计器来确定 DOA。MEMS 传感器在接近共振时工作,以滤除来自非预期频段的噪声,提高信噪比。校正算法用于补偿频率响应差异。已演示了将 MEMS 传感器封装在硅油和空气中的两种配置。对于不同类型的声音刺激,两种配置的 DOA 测量误差标准偏差均小于 5 度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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