首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Fiber optic acoustic hydrophone with double Mach-Zehnder interferometers for optical path length compensation
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Fiber optic acoustic hydrophone with double Mach-Zehnder interferometers for optical path length compensation

机译:带双马赫曾德尔干涉仪的光纤声波水听器,用于光程长度补偿

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摘要

We report on the development of a fiber optic acoustic hydrophone which consists of a sensing Mach-Zehnder (MZ) interferometer and a compensating MZ interferometer for optical path length compensation. This double-interferometer configuration has the following advantages: the hydrophone is a true heterodyne device; a laser source with a short coherence length can be used; the sensing interferometer is completely passive; the compensating interferometer can be located near the signal processing electronics, far away from the sensing interferometer; a conventional modulation analyzer can be used to demodulate the optical phase shift, which greatly simplifies the demodulation electronics. The performance of the hydrophone is evaluated experimentally by immersing the sensing interferometer in a water tank to detect underwater acoustic signals generated by an acoustic wave projector. Experimental results show that over the frequency range of 5 to 20 kHz, the hydrophone has an almost flat response with an average normalized phase sensitivity of -322.3 dB re 1/μPa and an average pressure sensitivity of -153.7 dB re rad/μPa. These performance figures are better than those obtained from a commercial-piezoelectric hydrophone. Furthermore, we have also demonstrated that with improved signal processing techniques, the normalized phase sensitivity of the hydrophone increases to -313 dB re 1/μPa, and the pressure sensitivity increases to -136.9 dB re rad/μPa. These results indicate that the present design offers equal or better performance in terms of sensitivity over its counterparts employing conventional Mach-Zehner configurations.
机译:我们报告了一种由声学马赫曾德尔(MZ)干涉仪和用于光程长度补偿的补偿MZ干涉仪组成的光纤水听器的开发情况。这种双干涉仪配置具有以下优点:水听器是真正的外差设备;可以使用相干长度短的激光源;传感干涉仪是完全无源的;补偿干涉仪可以位于信号处理电子设备附近,远离感测干涉仪。可以使用传统的调制分析仪来解调光学相移,从而大大简化了解调电子设备。通过将感测干涉仪浸入水箱中以检测声波投影仪产生的水下声信号,对水听器的性能进行实验评估。实验结果表明,该水听器在5至20 kHz的频率范围内具有几乎平坦的响应,平均归一化相位灵敏度为-322.3 dB re 1 /μPa,平均压力灵敏度为-153.7 dB re rad /μPa。这些性能指标优于从商用压电水听器获得的性能指标。此外,我们还证明,通过改进的信号处理技术,水听器的标准化相位灵敏度会增加到-313 dB re 1 /μPa,而压力灵敏度会增加到-136.9 dB re rad /μPa。这些结果表明,在灵敏度方面,本设计提供了与采用传统Mach-Zehner配置的同类产品相同或更好的性能。

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