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Adaptive two-wave mixing wavelength demodulation of fiber bragg grating sensor for monitoring dynamic strains

机译:用于监测动态应变的光纤布拉格光栅传感器的自适应两波混频波长解调

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摘要

A two-wave mixing (TWM) wavelength demodulator using InP:Fe photorefractive crystal (PRC) in the C-band (1530-1570nm) is demonstrated. The system can be used as a wavelength demodulator for use with Fiber Bragg Grating (FBG) sensors to monitor dynamic strains. In this configuration, the FBG is illuminated with a broadband source, and any strain in the FBG is encoded as a wavelength shift of the light reflected by the FBG. The reflected light from the FBG is spilt into two unbalanced paths and both beams (pump and signal) mix in the PRC. Any wavelength shift of the reflected light results in an equivalent phase shift between the pump and signal beams as they travel unbalanced path lengths. Since TWM is an adaptive process, the two interfering beams are naturally in quadrature and remain in quadrature even in the presence of large quasi-static strains. We demonstrate that FBG demodulation using TWM has the ability to selectively monitor dynamic strains without the need for active compensation of large quasi-static strains that otherwise would cause the FBG sensor to drift. As TWM interferometers can be readily multiplexed at relatively low cost; the proposed technique can be used to demodulate signals from a network of FBG sensors for use in structural health monitoring.
机译:演示了在C波段(1530-1570nm)中使用InP:Fe光折射晶体(PRC)的两波混合(TWM)波长解调器。该系统可用作与光纤布拉格光栅(FBG)传感器一起使用的波长解调器,以监控动态应变。在这种配置中,FBG用宽带光源照明,并且FBG中的任何应变都被编码为FBG反射的光的波长偏移。来自FBG的反射光会泄漏到两条不平衡的路径中,并且两个光束(泵浦和信号)在中国混合。反射光的任何波长偏移都会导致泵浦光束和信号光束在不平衡的路径长度中传播时产生相等的相移。由于TWM是自适应过程,因此两个干涉光束自然是正交的,即使在存在较大的准静态应变的情况下也保持正交。我们证明,使用TWM进行的FBG解调具有选择性监视动态应变的能力,而无需主动补偿大的准静态应变,否则将导致FBG传感器漂移。由于TWM干涉仪可以很容易地以相对较低的成本进行复用;所提出的技术可用于解调来自FBG传感器网络的信号,以用于结构健康监测。

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