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Fiber grating sensor array interrogation with direct-wavelength readout of a wavelength-scanned fiber laser

机译:光纤光栅传感器阵列询问,具有波长扫描光纤激光器的直接波长读数

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We present a novel interrogation method to measure wavelength shifts in fiber Bragg grating sensor array. A fiber laser tuned by an intracavity FP (Fabry-Perot) filter was used to interrogate Bragg wavelength variations. To solve the linearity, stability, and accuracy problems caused by the nonlinear response of FP filter, we calculated the wavelength variation of the fiber laser using quadrature signal processing with an unbalanced M/Z (Mach-Zehnder) interferometer and time-delayed sampling technique. The phase modulated interferometric signal is sampled with time delay, generating quadrature phase-delayed signals. By applying arctangent demodulation and phase unwrapping algorithm to the signals, accurate wavelength readout is performed. The calculated wavelengths are mapped to corresponding temporal reflection peaks from the sensor array, which enables more accurate fiber grating interrogation without the problems from the FP filter抯 nonlinear response. The wavelength resolution of ~ 20 pm was obtained in our experimental setup, which could have been greatly enhanced with faster phase modulation.
机译:我们提出了一种新的询问方法来测量光纤布拉格光栅传感器阵列中的波长偏移。由腔内FP(法布里 - 珀罗)滤波器调节的光纤激光器用于询问布拉格波长变化。为了解决FP滤波器的非线性响应引起的线性,稳定性和准确性问题,我们计算了使用不平衡M / Z(Mach-Zehnder)干涉仪和时间延迟采样技术的正交信号处理的光纤激光器的波长变化。相位调制的干涉式信号用时间延迟采样,产生正交相位延迟信号。通过向信号应用Atctantent解调和相位展开算法,执行精确的波长读数。计算出的波长被映射到来自传感器阵列的对应的时间反射峰,这使得能够更精确的光纤光栅询问,而不从FP滤波器抯非线性响应的问题。在我们的实验设置中获得了〜20μm的波长分辨率,这可以大大提高相位调制。

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