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A Dual Golay Complementary Pair of Sequences for Improving the Performance of Phase-Shift Pulse BOTDA Fiber Sensor

机译:用于改善相移脉冲BOTDA光纤传感器性能的双重Golay互补序列对

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摘要

We propose in this paper to configure a dual Golay complementary pair of sequences (DGCP) by nesting one Golay complementary pair of sequences (GCP) into the other GCP. We show that the DGCP also has the unique property that the side lobes of the correlation functions are cancelled exactly as the conventional GCP. The DGCP allows the simultaneous use of coded RZ-pulses and coded NRZ-pulses in the pump light of the Brillouin optical time-domain analysis (BOTDA). We call them in this paper coded discrete pulses and coded continuous pulses, respectively. The simultaneous use of both types of coded pulses for the BOTDA makes it possible to employ virtually longer code than the use of only one kind of coded pulses. We theoretically show the dependence of signal-to-noise ratio enhancement (SNRE) on the code length of the DGCP as well as on the code lengths of the GCPs used for the discrete and continuous pulses. Examination of the spatial resolution is also given. Experimental results illustrate the theoretical considerations; about 7 dB of SNRE and 10-cm of spatial resolution are achieved by using DGCP, being in accordance with the theory.
机译:我们在本文中提出通过将一个Golay互补序列对(GCP)嵌套到另一个GCP中来配置双重Golay互补序列对(DGCP)。我们表明,DGCP还具有独特的属性,即与常规GCP完全抵消了相关函数的旁瓣。 DGCP允许在布里渊光学时域分析(BOTDA)的泵浦光中同时使用已编码的RZ脉冲和已编码的NRZ脉冲。在本文中,我们分别称其为编码离散脉冲和编码连续脉冲。与仅使用一种编码脉冲相比,同时将两种类型的编码脉冲用于BOTDA使得采用更长的编码成为可能。从理论上讲,我们显示了信噪比增强(SNRE)对DGCP的代码长度以及离散和连续脉冲所使用的GCP的代码长度的依赖性。还给出了空间分辨率的检查。实验结果说明了理论上的考虑;根据理论,使用DGCP可以达到大约7 dB的SNRE和10 cm的空间分辨率。

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