Xia Ji, Xiong Shuidong, Wang Fuyin, Luo Hong
Opt Lett. 2016 Jul 1;41(13):3082-5. doi: 10.1364/OL.41.003082.
We report on phase interrogation of extrinsic Fabry-Perot interferometric (EFPI) sensors through a wavelength-switched unit with a polarization-maintaining fiber Bragg grating (PMFBG). The measurements at two wavelengths are first achieved in one total-optical path. The reflected peaks of the PMFBG with two natural wavelengths are in mutually perpendicular polarization detection, and they are switched through an electro-optic modulator at a high switching speed of 10 kHz. An ellipse fitting differential cross multiplication (EF-DCM) algorithm is proposed for interrogating the variation of the gap length of the EFPI sensors. The phase demodulation system has been demonstrated to recover a minimum phase of 0.42 μrad/Hz at the test frequency of 100 Hz with a stable intensity fluctuation level of ±0.8 dB. Three EFPI sensors with different cavity lengths are tested at the test frequency of 200 Hz, and the results indicate that the system can achieve the demodulation of EFPI sensors with different cavity lengths stably.
我们报道了通过带有保偏光纤布拉格光栅(PMFBG)的波长切换单元对外腔法布里 - 珀罗干涉(EFPI)传感器进行相位询问。首先在一个全光路径中实现两个波长的测量。具有两个固有波长的PMFBG的反射峰处于相互垂直的偏振检测中,并通过电光调制器以10 kHz的高切换速度进行切换。提出了一种椭圆拟合差分交叉乘法(EF - DCM)算法来询问EFPI传感器间隙长度的变化。已证明该相位解调系统在100 Hz的测试频率下能够恢复0.42 μrad/Hz的最小相位,强度波动水平稳定在±0.8 dB。在200 Hz的测试频率下对三个具有不同腔长的EFPI传感器进行了测试,结果表明该系统能够稳定地实现对不同腔长的EFPI传感器的解调。