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Study on demodulated signal distribution and acoustic pressure phase sensitivity of a self-interfered distributed acoustic sensing system

机译:自干扰分布式声学传感系统的解调信号分布和声压相位灵敏度研究

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摘要

We propose a demodulated signal distribution theory for a self-interfered distributed acoustic sensing system. The distribution region of Rayleigh backscattering including the acoustic sensing signal in the sensing fiber is investigated theoretically under different combinations of both the path difference and pulse width Additionally we determine the optimal solution between the path difference and pulse width to obtain the maximum phase change per unit length. We experimentally test this theory and realize a good acoustic pressure phase sensitivity of - 150 dB re rad/(mu Pa center dot m) of fiber in the frequency range from 200 Hz to 1 kHz.
机译:我们提出了一种自干扰分布式声学传感系统的解调信号分配理论。在路径差和脉冲宽度的不同组合下,理论上研究了包括声感测信号在内的传感光纤中瑞利反向散射的分布区域。此外,我们确定了路径差和脉冲宽度之间的最佳解,以获得最大的单位相位变化长度。我们通过实验测试了该理论,并在200 Hz至1 kHz的频率范围内实现了-150 dB re rad /(mu Pa中心点m)的良好声压相位灵敏度。

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