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载波调制法提高保偏光纤偏振耦合检测的信噪比
引用本文:张红霞,叶雯婷,陈信伟,温国强,贾大功,张以谟.载波调制法提高保偏光纤偏振耦合检测的信噪比[J].激光与红外,2012,42(3):301-305.
作者姓名:张红霞  叶雯婷  陈信伟  温国强  贾大功  张以谟
作者单位:天津大学精密仪器与光电子工程学院,光电信息技术教育部重点实验室(天津大学),天津300072
基金项目:国家“973”计划(No.2010CB327806);教育部新教师博士点基金项目(No.200800561022)资助
摘    要:保偏光纤偏振耦合系统能有效检测保偏光纤中偏振耦合点的空间位置及耦合强度,因而可被广泛地应用于应力、应变、温度和位置的分布式传感中。由于噪声影响,测试系统中的信噪比和耦合强度检测灵敏度会下降。为了改善系统信噪比,提高保偏光纤中弱耦合点的检测能力,将铌酸锂外调制技术应用于白光干涉保偏光纤耦合测试系统。调制后的信号经光电探测器接收,用数字解调算法进行数据处理。实验结果表明:在电机扫描速度为0.75 mm/s,调制频率为9.1 kHz,采样率为140 kHz时,载波调制时信噪比提高了8 dB,解调耗时仅1.12 s。

关 键 词:光纤光学  保偏光纤  白光干涉  载波调制  信噪比  偏振耦合

Application of carrier modulation in polarization coupling measurement to improve SNR
ZHANG Hong-xi,YE Wen-ting,CHEN Xin-wei,WEN Guo-qiang,JIA Da-gong,ZHANG Yi-mo.Application of carrier modulation in polarization coupling measurement to improve SNR[J].Laser & Infrared,2012,42(3):301-305.
Authors:ZHANG Hong-xi  YE Wen-ting  CHEN Xin-wei  WEN Guo-qiang  JIA Da-gong  ZHANG Yi-mo
Affiliation:(College of Precision Instrument and Opto-Electronics Engineering,Tianjin University, Key Lab.of Opto-Electronic Information and Technical(Tianjin University), Ministry of Education Tianjin University,Tianjin 300072,China)
Abstract:The position and intensity of polarization coupling points in polarization-maintaining fibers(PMFs) caused by stress and twist can be detected effectively by Polarization Coupling Measurement(PCM),so the distributed PMFs sensing system of stress,strain,temperature and position can be realized.However,the Signal Noise Ratio(SNR) and the detection sensitivity of Polarization Coupling Measurement will decrease due to various noise sources.In order to improve SNR of the measurement system,external carrier modulation using LiNbO3 modulator is implemented.The modulated signal is received by the photodiode and digital demodulation algorithm is used for data processing.The experimental results show that the measurement sensitivity is obviously improved when scanning speed is 0.75 mm/s,modulation frequency is 9.1 kHz and samples frequency is 140 kHz.The gain of SNR is 8 dB and the demodulation algorithm spends only 1.12 s.
Keywords:fiber optics  polarization-maintaining fiber  white light interferometry  carrier modulation  signal noise ratio  polarization coupling
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