In this paper, the reflective spectra of a refraction index sensor were analyzed based on fiber grating F-P cavity. The sensor was constituted by two identical fiber gratings. Compared with the refraction index sensor...In this paper, the reflective spectra of a refraction index sensor were analyzed based on fiber grating F-P cavity. The sensor was constituted by two identical fiber gratings. Compared with the refraction index sensor using one fiber grating, the fiber grating F-P cavity sensor has narrower resonant peak and it can be used for more accurate measurement. The resonant peaks in the reflective spectra of the sensor are changed with small changes of the refraction index of the measured chemical liquids or cell samples. So it has potential applications in biology and chemistry.展开更多
<div style="text-align:justify;"> The basic principle of sensing is the combination of F-P cavity interference and fiber grating reflection. A hybrid structure sensor probe has been designed based on t...<div style="text-align:justify;"> The basic principle of sensing is the combination of F-P cavity interference and fiber grating reflection. A hybrid structure sensor probe has been designed based on the combination of an F-P cavity of liquid-filled thermometer structure, and a fiber grating with an elastic diaphragm, herein F-P cavity is used for temperature sensing, and the fiber grating is used for pressure sensing. By adopting the dual optical path structure, the dual-parameter detection of temperature and depth is realized, which solves the problem of low accuracy caused by the cross response of temperature and pressure of a single sensor device and the calculation of the depth information of the ocean with empirical formulas. Compared with traditional sensors, the sensitivity is effectively improved. Theoretical analysis shows that the sensitivity of the F-P cavity with a thermometer structure filled with kerosene reaches 1.334 nm/?C, and the depth sensitivity of the fiber grating is 284.6 pm/Mpa within the ocean depth range of 0 - 400 m. </div>展开更多
变压器能否稳定工作直接关系到变电站是否安全运行,其工作重心是检测出变压器局部放电产生的超声波信号。介绍了一种光纤F-P腔传感器,并在此基础上搭建了调制解调系统,分别通过对无超声波源、有超声波源和浸入变压器油中3种情况进行了...变压器能否稳定工作直接关系到变电站是否安全运行,其工作重心是检测出变压器局部放电产生的超声波信号。介绍了一种光纤F-P腔传感器,并在此基础上搭建了调制解调系统,分别通过对无超声波源、有超声波源和浸入变压器油中3种情况进行了实验测试,并在距离超声波源20,40,60,80,90,100 cm处进行了损耗特性测试,测试结果表明:此传感器受外界噪声干扰较小,且在变压器油中能实时地检测出超声波信号,精度高,损耗度为25.8 m V/cm,符合传感器在油浸式变压器中持续稳定工作的条件。当变压器出现故障时,能够及时发现问题,保证变压器安全运行。展开更多
基金National Natural Science Foundation of China(10774058)
文摘In this paper, the reflective spectra of a refraction index sensor were analyzed based on fiber grating F-P cavity. The sensor was constituted by two identical fiber gratings. Compared with the refraction index sensor using one fiber grating, the fiber grating F-P cavity sensor has narrower resonant peak and it can be used for more accurate measurement. The resonant peaks in the reflective spectra of the sensor are changed with small changes of the refraction index of the measured chemical liquids or cell samples. So it has potential applications in biology and chemistry.
文摘<div style="text-align:justify;"> The basic principle of sensing is the combination of F-P cavity interference and fiber grating reflection. A hybrid structure sensor probe has been designed based on the combination of an F-P cavity of liquid-filled thermometer structure, and a fiber grating with an elastic diaphragm, herein F-P cavity is used for temperature sensing, and the fiber grating is used for pressure sensing. By adopting the dual optical path structure, the dual-parameter detection of temperature and depth is realized, which solves the problem of low accuracy caused by the cross response of temperature and pressure of a single sensor device and the calculation of the depth information of the ocean with empirical formulas. Compared with traditional sensors, the sensitivity is effectively improved. Theoretical analysis shows that the sensitivity of the F-P cavity with a thermometer structure filled with kerosene reaches 1.334 nm/?C, and the depth sensitivity of the fiber grating is 284.6 pm/Mpa within the ocean depth range of 0 - 400 m. </div>
文摘变压器能否稳定工作直接关系到变电站是否安全运行,其工作重心是检测出变压器局部放电产生的超声波信号。介绍了一种光纤F-P腔传感器,并在此基础上搭建了调制解调系统,分别通过对无超声波源、有超声波源和浸入变压器油中3种情况进行了实验测试,并在距离超声波源20,40,60,80,90,100 cm处进行了损耗特性测试,测试结果表明:此传感器受外界噪声干扰较小,且在变压器油中能实时地检测出超声波信号,精度高,损耗度为25.8 m V/cm,符合传感器在油浸式变压器中持续稳定工作的条件。当变压器出现故障时,能够及时发现问题,保证变压器安全运行。