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首页> 外文期刊>Journal of Lightwave Technology >An ultrasonic fiber-optic hydrophone incorporating a push-pull transducer in a Sagnac interferometer
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An ultrasonic fiber-optic hydrophone incorporating a push-pull transducer in a Sagnac interferometer

机译:在Sagnac干涉仪中结合了推挽式换能器的超声波光纤水听器

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A theoretical and experimental analysis of a push-pull acoustic transducer incorporated in a Sagnac interferometer is presented. The transducer is optimized for detection of ultrasonic signals in the frequency range 0.4-1.5 MHz. Two different configurations are investigated. In one, the sensing fiber forming the transducer constitutes the total loop length, and in the second an additional delay coil is included in the middle section of the Sagnac loop. In the latter we demonstrate experimentally noise-equivalent pressures of 36-43 dB re. 1 /spl mu/Pa/Hz/sup 1/2/ in the frequency range 0.4-1.0 MHz. An approximate theoretical model is presented, and we obtain reasonable agreement between theory and experiment for both the frequency-dependent noise equivalent pressure and the directional responsivity of this push-pull acoustic fiber-optic sensor.
机译:提出了结合在Sagnac干涉仪中的推挽声换能器的理论和实验分析。该传感器经过优化,可检测0.4-1.5 MHz频率范围内的超声信号。研究了两种不同的配置。在第一个中,构成换能器的传感光纤构成总回路长度,第二个,在Sagnac回路的中间部分包括一个额外的延迟线圈。在后者中,我们证明了实验上等效于36-43 dB re的噪声等效压力。在0.4-1.0 MHz频率范围内为1 / spl mu / Pa / Hz / sup 1/2 /。提出了一个近似的理论模型,并且在这种推挽式声光纤传感器的频率相关噪声等效压力和方向响应率方面,我们在理论和实验之间取得了合理的一致性。

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