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Detrimental Effect Elimination of Laser Frequency Instability in Brillouin Optical Time Domain Reflectometer by Using Self-Heterodyne Detection

机译:利用自外差检测消除布里渊光学时域反射仪中激光频率不稳定性的有害影响

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摘要

A useful method for eliminating the detrimental effect of laser frequency instability on Brillouin signals by employing the self-heterodyne detection of Rayleigh and Brillouin scattering is presented. From the analysis of Brillouin scattering spectra from fibers with different lengths measured by heterodyne detection, the maximum usable pulse width immune to laser frequency instability is obtained to be about 4 µs in a self-heterodyne detection Brillouin optical time domain reflectometer (BOTDR) system using a broad-band laser with low frequency stability. Applying the self-heterodyne detection of Rayleigh and Brillouin scattering in BOTDR system, we successfully demonstrate that the detrimental effect of laser frequency instability on Brillouin signals can be eliminated effectively. Employing the broad-band laser modulated by a 130-ns wide pulse driven electro-optic modulator, the observed maximum errors in temperatures measured by the local heterodyne and self-heterodyne detection BOTDR systems are 7.9 °C and 1.2 °C, respectively.
机译:提出了一种有用的方法,该方法通过采用瑞利和布里渊散射的自外差检测来消除激光频率不稳定性对布里渊信号的有害影响。通过外差检测对具有不同长度的光纤的布里渊散射光谱进行分析,在使用外差自检测布里渊光学时域反射仪(BOTDR)系统中,不受激光频率不稳定性影响的最大可用脉冲宽度约为4 µs。具有低频稳定性的宽带激光器。应用BOTDR系统中瑞利和布里渊散射的自外差检测,我们成功地证明了可以有效消除激光频率不稳定性对布里渊信号的不利影响。使用由130 ns宽脉冲驱动的电光调制器调制的宽带激光,观察到的由本地外差和自外差检测BOTDR系统测得的温度最大误差分别为7.9°C和1.2°C。

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