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Reduction Method of Sinusoidal Noise due to Phase Drift of Interferometric Optical Fiber Hydrophone

机译:减少干涉式光纤水听器相位漂移引起的正弦噪声的方法

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This paper describes a method of reducing sinusoidal noise due to a phase drift of an interferometric optical fiber hydrophone based on the fiber Bragg grating (FBG). An FBG-based interferometric optical fiber hydrophone is based on path-matched differential interferometry conducted with a compensating interferometer. Then, if the ambient temperature of the hydrophone is not equal to that of the compensating interferometer, a sinusoidal noise due to a demodulated phase drift of the interferometer occurs. To reduce this sinusoidal noise, it is proposed that the compensating interferometer be controlled by a supplementary Peltier device. The feedback-controlled compensating interferometer cancels the influence due to the difference between the ambient temperature of the hydrophone and that of the compensating interferometer. The effectiveness of the feedback-controlled compensating interferometer combined with the Peltier device is verified through waterpool experiments.
机译:本文介绍了一种减少基于光纤布拉格光栅(FBG)的干涉式光纤水听器的相位漂移引起的正弦噪声的方法。基于FBG的干涉式光纤水听器基于使用补偿干涉仪进行的路径匹配差分干涉测量。然后,如果水听器的环境温度不等于补偿干涉仪的环境温度,则由于干涉仪的相位偏移被解调而产生正弦噪声。为了减少这种正弦波噪声,建议由辅助珀耳帖装置控制补偿干涉仪。反馈控制的补偿干涉仪消除了由于水听器的环境温度与补偿干涉仪的环境温度之间的差异引起的影响。反馈控制的补偿干涉仪与Peltier装置结合使用的有效性已通过水浴实验验证。

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