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Low-Frequency Fiber Optic Hydrophone Based on Ultra-Weak Fiber Bragg Grating

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A winding low-frequency hydrophone based on ultra-weak fiber Bragg grating (UWFBG) was studied. Through analyzing the hydrophone principle and sensitivity factors, such as the material, radius, and thickness of the… Click to show full abstract

A winding low-frequency hydrophone based on ultra-weak fiber Bragg grating (UWFBG) was studied. Through analyzing the hydrophone principle and sensitivity factors, such as the material, radius, and thickness of the elastic cylindrical shell, the probe structure was optimized. In addition, an adaptive filtering technique based on the least mean square (LMS) algorithm was introduced to improve the signal-to-noise ratio (SNR) of the system. A low-frequency hydrophone with a working depth of 100 m and a diameter of 15 mm was developed and validated using the moving-water-column method. Results showed that the average acoustic pressure sensitivity of the hydrophone in the range of 1–100 Hz was −144.836 dB (re rad/ $\boldsymbol { \mu }$ Pa), and the acoustic pressure sensitivity at 1 Hz was up to −130.85 (dB re rad/ $\boldsymbol {\mu }$ Pa). After using the LMS filtering algorithm, the maximum SNR of hydrophone can be increased by 4.62 dB, and the minimum detection pressure is ${1}.{69}\times {10} ^{-{4}}$ Pa/Hz $^{ ({1}/{2})}$ . This hydrophone with high sensitivity and SNR provides a reference for low-frequency underwater detection.

Keywords: inline formula; hydrophone; fiber; tex math

Journal Title: IEEE Sensors Journal
Year Published: 2023

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