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High speed strain measurement of active mode locking FBG laser sensor using chirped FBG cavity

机译:使用chiFBG腔进行有源锁模FBG激光传感器的高速应变测量

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We propose a high speed strain measurement method using an active mode locking (AML) fiber Bragg grating (FBG) laser sensor with a chirped FBG cavity. The mode-locked frequency of the AML laser depends on both the position and Bragg wavelength of the FBG. Thus, the mode-locked frequency of cascaded FBGs can be detected independently along the cavity length of cascaded FBGs. The strain across FBGs can be interrogated dynamically by monitoring the change in mode-locked frequency. In this respect, the chirped FBG critically improves the frequency sensitivity to Bragg wavelength shift as a function of increasing dispersion in the AML cavity. The strain measurement of the FBG sensor shows a highly linear response, with an R-squared value of 0.9997.
机译:我们提出了一种高速应变测量方法,该方法使用具有a FBG腔的有源模式锁定(AML)光纤布拉格光栅(FBG)激光传感器。 AML激光器的锁模频率取决于FBG的位置和布拉格波长。因此,可以沿着级联FBG的腔长独立检测级联FBG的锁模频率。通过监视锁模频率的变化,可以动态地查询FBG两端的应变。在这方面,as的​​FBG可以极大地提高对布拉格波长偏移的频率敏感性,这是增加AML腔中色散的函数。 FBG传感器的应变测量显示出高度线性响应,R平方值为0.9997。

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