共查询到20条相似文献,搜索用时 60 毫秒
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裸光纤光栅压力灵敏度只有 -2. 05×10-6 /MPa,这样并不能将其用于低压力范围内的测量 本文改进了封装结构,利用金属管结构对光纤光栅部分封装,制作成双波长高灵敏度光纤光栅压力传感器 其压力灵敏度在 0~0. 44MPa的范围内可达-2. 44×10-3 /MPa,是裸光栅的 1200倍,大大提高了光纤光栅压力传感的灵敏度 采用自行研制的Bragg光纤光栅,其反射波长为 1558. 00 nm,峰值反射率为 99% 封装后的Bragg光纤光栅位于铜管的轴心,将其一部分 (约光纤光栅的二分之一 )封装到长 25mm,外径 10mm厚为 0. 8mm的铜管内 室温为 18℃时将封装好的光… 相似文献
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为了拓宽光纤耦合器的使用范围,开发光纤耦合器的新功能,采用熔锥技术制作波长敏感耦合器,该耦合器在分光的同时对波长敏感。通过耦合理论验证实验结果,实验数据与理论值相符合。实验中得到波长灵敏度最大值为17.86%/nm的耦合器。采用拉锥工艺制作波长敏感耦合器工艺简单,耦合比峰值对应波长控制易于实现。该耦合器可用于光纤光栅布拉格波长漂移解调。令待解调光纤光栅布拉格波长与耦合器波长灵敏度最大值对应的波长一致,当波长发生漂移时,耦合器输出耦合比发生变化。自制的波长敏感耦合器实现了对布拉格波长为1566.71 nm光纤光栅波长漂移的解调,波长漂移1.80 nm,耦合比变化20.34%。此种解调方式具有光路简单,易于与光纤匹配的优点,可以应用在大型建筑中光纤光栅的健康监测。 相似文献
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A practical demodulation of multiplexed wavelength FBGs is proposed. The detection wavelength of adjacent FBGs and the wavelength resolution are discussed. Experimental results show the wavelength resolution is 0.01nm and strain resolution is 8.27 ×10-6 . 相似文献
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Underwater Acoustic Sensor with Fiber Bragg Grating 总被引:1,自引:0,他引:1
A new type of underwater acoustic sensor is proposed with an optical fiber Bragg grating (FBG). Because of the photoelasticity with respect to the refractive index and the elasticity of the fiber, the sound pressure in water modulates the Bragg reflection wavelength and, in turn, the intensity of the laser light transmitted through the FBG fiber. Good linearity between the detected signal and the sound pressure is obtained in the range from 81 dB to 140 dB re 1 μPa. Since the upper and lower limits of the acoustic signal level for operation of the sensor are limited by the driving circuit and the transduction of the sound in water, the sensor is expected to operate with much larger dynamic range both at higher and lower pressure levels. Operation of the sensor is very stable with the insertion of optical isolators into the system, although without the isolators the output signal fluctuates at low frequency due to the Fabry-Perot interference effect between the FBG and the various facets. 相似文献
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有限包层半径光纤Bragg光栅的理论研究 总被引:2,自引:4,他引:2
采用光纤波导三层模型,对有限包层半径光纤Bragg光栅导模有效折射率的改变进行了理论分析,结果表明:当包层直径小于16μm时,单模光纤Bragg光栅(纤芯直径为8.3μm)的导模有效折射率才开始发生明显变化.在包层外添加外包层,通过改变外包层的折射率可以实现对光栅Bragg反射波长的调谐,同时对不同芯子直径的光栅Bragg波长移动进行了数值计算.在保证光纤归一化频率不变的前提下,芯径越小Bragg波长调谐范围越大,当包层厚度为1μm时,芯径为a=2.2μm的光栅Bragg波长调谐范围约为3.9μm. 相似文献
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