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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Interrogation of FBG-based strain sensors by means of laser radio-frequency modulation techniques
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Interrogation of FBG-based strain sensors by means of laser radio-frequency modulation techniques

机译:通过激光射频调制技术对基于FBG的应变传感器进行询问

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We report on novel, highly-sensitive methods for interrogation of fibre Bragg gratings (FBGs) as well as high-finesse fibre resonators. Basically, the strain detection technique relies on radio-frequency modulation of a telecom distributed-feedback diode laser with phase-sensitive detection of the sensor-reflected signals. In a first set-up, the optical power from a fibre grating is demodulated at multiples of the sideband frequency and a dispersive signal, which monitors thermal and mechanical stress on the FBG, is generated. A fast Fourier transform analysis of this signal revealed the possibility of detecting dynamic strains up to 20 kHz, this limit being set only by the bandwidth of the test device. Minimum detectable strain levels below 200 ne Hz(-1/2), in the quasi-static domain (0.5-2 Hz), and between 1 and 4 n epsilon Hz(-1/2) in the 0.4-1 kHz range, were achieved. A different approach is based on an in-fibre Fabry-Perot cavity, made of an FBG pair with very high peak reflectivity (>99%). In this scheme, the diode laser was actively frequency-locked to the FBG cavity, using the Pound-Drever-Hall technique. The resulting error signal was used as a monitor of the strain suffered by the intra-cavity fibre. We demonstrated that a sensitivity gain of at least one order of magnitude could be obtained by this system in a very compact design. Analysis and quantification of the main limiting factors were also carried out in both cases.
机译:我们报告了一种新颖,高度灵敏的光纤布拉格光栅(FBGs)以及高级光纤谐振器的询问方法。基本上,应变检测技术依赖于电信分布式反馈二极管激光器的射频调制,并具有对传感器反射信号的相位敏感检测。在第一个设置中,来自光纤光栅的光功率在边带频率的倍数处被解调,并产生色散信号,该信号监视FBG上的热应力和机械应力。快速对该信号进行傅立叶变换分析,发现可以检测到高达20 kHz的动态应变,该限制仅由测试设备的带宽来设置。在准静态域(0.5-2 Hz)中低于200 ne Hz(-1/2)的最小可检测应变水平,在0.4-1 kHz范围内介于1-4 nεHz(-1/2)之间的最小可检测应变,实现了。一种不同的方法是基于光纤内Fabry-Perot腔,该腔由具有极高峰值反射率(> 99%)的FBG对制成。在该方案中,使用Pound-Drever-Hall技术将二极管激光器主动锁频到FBG腔。所得的误差信号用作腔内光纤所承受应变的监测器。我们证明了该系统在非常紧凑的设计中可以获得至少一个数量级的灵敏度增益。在这两种情况下,还对主要限制因素进行了分析和量化。

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