Lv Lingya, Wang Sumei, Jiang Lan, Zhang Fei, Cao Zhitao, Wang Peng, Jiang Yi, Lu Yongfeng
Appl Opt. 2015 Dec 20;54(36):10678-83. doi: 10.1364/AO.54.010678.
A compact optical fiber sensor for simultaneous measurement of strain and temperature is designed and experimentally investigated. The proposed sensor consists of a two-peanut-taper Mach-Zehnder interferometer (MZI) and in-line embedded fiber Bragg grating (FBG). The sensor at a length of 35 mm presents strain sensitivities 1.07 pm/με and 0.891 pm/με, the temperature sensitivities are 55.35 pm/°C and 10.85 pm/°C, for MZI and FBG, respectively. Through tapering the center of the sensor by a fusion splicer, the strain sensitivity of the MZI is improved to 1.93 pm/με. The resolutions for strain and temperature measurement are ±3.104 με and ±0.194°C with the wavelength resolution of 5 pm. The experimental results show that the sensor is able to simultaneously measure strain and temperature by sensitivity matrix with advantages such as simple structure, compact size, ease of fabrication, low cost, etc.
设计并实验研究了一种用于同时测量应变和温度的紧凑型光纤传感器。所提出的传感器由双花生锥形马赫-曾德尔干涉仪(MZI)和在线嵌入式光纤布拉格光栅(FBG)组成。长度为35毫米的该传感器,对于MZI和FBG,应变灵敏度分别为1.07皮米/微应变和0.891皮米/微应变,温度灵敏度分别为55.35皮米/°C和10.85皮米/°C。通过用熔接机对传感器中心进行锥形处理,MZI的应变灵敏度提高到1.93皮米/微应变。在波长分辨率为5皮米时,应变和温度测量的分辨率分别为±3.104微应变和±0.194°C。实验结果表明,该传感器能够通过灵敏度矩阵同时测量应变和温度,具有结构简单、尺寸紧凑、易于制造、成本低等优点。