Liu Yunqi, Chiang Kin Seng, Chu Pak Lim
Optoelectronics Research Centre and Department of Electronic Engineering, City University of Hong Kong, 83 Tat Chee Avenue, Kowloon, Hong Kong, China.
Appl Opt. 2005 Aug 10;44(23):4822-9. doi: 10.1364/ao.44.004822.
A fiber-Bragg-grating (FBG) transverse-force sensor based on a wavelength-switching actively mode-locked erbium-doped fiber laser is proposed, in which a FBG is used as both the sensing element and the wavelength-selection element of the laser. When a force is applied to the FBG, the induced birefringence in the FBG causes the laser to emit pulses at two close wavelengths, whose separation is proportional to the applied force. To suppress the interference between the two wavelengths, the laser is made to emit at the two wavelengths alternately by use of a polarization-switching technique. The wavelength separation is converted into a time difference by transmission of the laser pulses through a dispersive single-mode fiber, so the wavelength measurement is replaced by the less-expensive time measurement. The output of the sensor is insensitive to temperature and axial strain changes along the FBG. To interrogate similar FBG sensing elements connected in series it is necessary only to change the modulating frequency of an electro-optic modulator to select the corresponding laser cavity. The practicability of this approach was demonstrated experimentally with two multiplexed sensing elements.
提出了一种基于波长切换主动锁模掺铒光纤激光器的光纤布拉格光栅(FBG)横向力传感器,其中FBG既用作传感元件,又用作激光器的波长选择元件。当对FBG施加力时,FBG中感应的双折射会使激光器在两个相近波长处发射脉冲,其波长间隔与施加的力成正比。为了抑制两个波长之间的干扰,利用偏振切换技术使激光器在这两个波长处交替发射。通过色散单模光纤传输激光脉冲,将波长间隔转换为时间差,从而将波长测量替换为成本较低的时间测量。该传感器的输出对沿FBG的温度和轴向应变变化不敏感。为了询问串联连接的类似FBG传感元件,只需改变电光调制器的调制频率以选择相应的激光腔。通过两个复用传感元件的实验证明了该方法的实用性。