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High-performance Multiplexed Vibration Sensor System based on Fiber Lasers

机译:基于光纤激光器的高性能多路复用振动传感器系统

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This paper describes a high-performance multiplexed vibration sensor system using fiber lasers. A serial vibration sensor array consists of four short cavity fiber lasers. The system employs a single, polarization-insensitive, unbalanced Michelson interferometer to translate individual laser wavelength shifts induced by vibration signals into interferometer phase shifts. A dense wavelength division demultiplexer (DWDM) with high channel isolation is inserted to demultiplex each laser signal as a wavelength filter. Finally, a digital phase demodulator based on the phase generated carrier technique is used to achieve high-resolution interrogation. Experimental results show that no observable crosstalk is measured on the output channels, and the minimal detectable acceleration of this system is ~200ng/VHz at 250Hz, which is fundamentally limited by the frequency noise of the lasers.
机译:本文介绍了一种使用光纤激光器的高性能多路复用振动传感器系统。串行振动传感器阵列由四个短腔光纤激光器组成。该系统采用单个极化不敏感的不平衡的迈克尔逊干涉仪,以将通过振动信号引起的各个激光波长偏移转换为干涉仪相移。将具有高通道隔离的密集波分解复用器(DWDM)插入以将每个激光信号解复用作波长滤波器。最后,基于相位生成的载波技术的数字相位解调器用于实现高分辨率询问。实验结果表明,在输出通道上没有测量可观察的串扰,并且该系统的最小可检测加速度为200ng / vHz,在250Hz上是基本上受激光频率噪声的限制。

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