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Simulation and Testing of a Noise-limited Demodulation System for a Fiber-optic Hydrophone System Based on a Michelson Interferometer

机译:基于Michelson干涉仪的光纤水流系统噪声限制解调系统的仿真与测试

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In order to demodulate an underwater acoustic signal detected by a fiber-optic hydrophone system, some different demodulation principles are proposed for study. Of all the principles, PGC (phase generated carrier) technology is more and more commonly used in a fiber-optic Michelson hydrophone system at present. In this paper, through SIMULINK and LABVIEW simulation, a mono-frequency signal, a double-frequency signal and a nine-frequency signal are all successfully demodulated with no distortion by using the PGC principle. Meanwhile, PGC demodulation technology can effectively suppress system noise and environment noise. Finally, in the fiber-optic Michelson hydrophone system experiment, acoustic signals can successfully be detected and demodulated. It is of important significance for the study and application of a fiber-optic hydrophone system based on a Michelson interferometer.
机译:为了解调由光纤流水声系统检测到的水下声学信号,提出了一些不同的解调原理进行研究。在所有原理中,PGC(相产生的载体)技术越来越常用于目前光纤迈克尔逊水电器系统中。在本文中,通过Simulink和LabVIEW仿真,单频信号,双频信号和九个频率信号全部成功解调,通过使用PGC原理而没有失真。同时,PGC解调技术可以有效地抑制系统噪声和环境噪声。最后,在光纤Michelson Hydrophy System实验中,可以成功地检测和解调声信号。基于迈克尔逊干涉仪的光纤水力系统的研究和应用是重要的重要意义。

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