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Error compensation in Brillouin optical correlation-domain reflectometry by combining bidirectionally measured frequency shift distributions

机译:Brillouin光学相关域反射仪结合双向测量频移分布的误差补偿

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In standard single-end-access Brillouin optical correlation-domain reflectometry (BOCDR), the systematic error caused by the phase difference between amplitude modulation (AM) and frequency modulation (FM) in the light source can be up to tens of megahertz, causing considerable errors in strain and temperature measurement. In this letter, we develop a new concept of two-end-access BOCDR, in which light is injected into each end of a sensing fiber in turn and the measured results of the Brillouin frequency shift distributions are combined. We numerically show that this configuration can suppress the systematic error caused by the AM-FM phase difference by approximately 90%.
机译:在标准的单端访问布里渊光学相关域反射区(BOCDR)中,光源中幅度调制(AM)和频率调制(FM)之间的相位差引起的系统误差可以高达数十名Megahertz,导致 应变和温度测量的相当大的误差。 在这封信中,我们开发了一种新的两端访问Bocdr的概念,其中依次将光注入传感光纤的每一端,并且组合了布里渊频移分布的测量结果。 我们在数值上表明这种配置可以抑制由AM-FM相位差引起的系统误差大约90%。

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