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High-Sensitivity Cuboid Interferometric Fiber-Optic Hydrophone Based on Planar Rectangular Film Sensing

机译:基于平面矩形薄膜感测的高灵敏度立方体干涉纤维 - 光学液体

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摘要

Interferometric fiber-optic hydrophones are an important means in the field of underwater acoustic detection. The design of the hydrophone sensor head is the key technology related to its detection sensitivity. In this paper, a high-sensitivity cuboid interferometric fiber-optic hydrophone based on planar rectangular film sensing is proposed, and the sensitivity of the sensor is compared with that of the widely used air-backed mandrel hydrophone under the same conditions. The acoustic characteristic models of the two types of sensors were established by theoretical calculation and simulation analysis to obtain the theoretical pressure sensitivity. Some experiments were performed to examine the theory and design. According to the experiment results, the mean phase sensitivity of the mandrel type was −112.85 dB re 1 rad/μPa in the operating frequency range of 10–300 Hz, and that of the cuboid type was −84.50 dB re 1 rad/μPa. The latter was 28.35 dB higher than the former was. These results are useful for improving hydrophone sensitivity.
机译:干涉纤维光学器官是水下声学检测领域的重要手段。水听器传感器头的设计是与其检测灵敏度有关的关键技术。本文提出了一种基于平面矩形薄膜感测的高灵敏度立方体干涉光纤纤维 - 光学液和在相同条件下广泛使用的空气背芯螺纹室水听器的灵敏度。通过理论计算和仿真分析建立了两种传感器的声学特性模型,以获得理论压力敏感性。进行了一些实验以检查理论和设计。根据实验结果,心轴型的平均相敏感性为-112.85dB的工作频率范围为10-300Hz,长方体型为-84.50dB Re 1 rad /μPa。后者比前者高28.35 dB。这些结果对于提高水听器敏感性有用。

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