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High-Speed and High-Precision Wavelength Demodulation of Fiber Bragg Grating Sensor Network

机译:光纤布拉格光栅传感器网络的高速高精度波长解调

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Through the technologies of wavelength division multiplex and time division multiplex, fiber Bragg grating (FBG) sensor network was built. Based on System on Programmable Chip technology and fiber comb filter, a high-speed and high-precision wavelength demodulation scheme of FBG sensor network was proposed. The optical system and hardware circuit for demodulation system were designed specifically. To improve the accuracy of demodulation system of FBG, a constant temperature channel of the demodulation system connected with a fiber comb filter, which offered reference points to calibrate the Bragg grating center wavelength. Based on 32-bit soft-core processor NoisII, the embedded system collected and processed the photoelectric signal voltage transformed to rectangular voltage pulse. The upper computer displayed dynamically the FBG wavelength demodulation process and calibrated the Bragg grating center wavelength. The experiment results of wavelength demodulation and calibration show that, the wavelength demodulation system has many advantages, such as flexibility, stabilization, easy maintenance, high-speed, high-precision, and so on. The wavelength demodulation precision is ±2 pm.
机译:通过波分复用和时分复用技术,建立了光纤布拉格光栅(FBG)传感器网络。基于可编程芯片系统技术和光纤梳状滤波器,提出了一种FBG传感器网络的高速,高精度波长解调方案。专门设计了光学系统和解调系统的硬件电路。为了提高FBG解调系统的精度,在解调系统的恒温通道上连接了一个光纤梳状滤波器,该光纤通道提供了校准布拉格光栅中心波长的参考点。嵌入式系统基于32位软核处理器NoisII,收集并处理了转换为矩形电压脉冲的光电信号电压。上位机动态显示FBG波长解调过程并校准布拉格光栅中心波长。波长解调和标定的实验结果表明,该波长解调系统具有灵活性,稳定性,易于维护,高速,高精度等优点。波长解调精度为±2 pm。

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