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基于脉冲转换算法的相干Φ-OTDR中的分布式动态应变传感

Distributed dynamic strain sensing in coherent Φ-OTDR with a pulse conversion algorithm.

作者信息

Qian Heng, Luo Bin, He Haijun, Zhou Yin, Zou Xihua, Pan Wei, Yan Lianshan

出版信息

Opt Lett. 2021 Apr 1;46(7):1668-1671. doi: 10.1364/OL.420047.

Abstract

In this Letter, a chirped-pulse conversion algorithm (CPCA) is proposed to convert a normal probe pulse into an equivalent chirped probe pulse by convolving a chirp factor on the received signal in coherent phase-sensitive optical time-domain reflectometry (-OTDR). With this algorithm, the Rayleigh interference pattern (RIP) demodulation once applied to chirped-pulse -OTDR can be adopted to quantify the dynamic strain in the traditional coherent -OTDR. Since the equivalent chirped pulse is generated by digital processing, complex and costly chirp modulation is not required. The proposed scheme is capable of fully quantifying perturbations with spatial resolution of 4 m, a sensing range of 8 km, frequency response of 5 kHz, and strain resolution of 56ε/√.

摘要

在本信函中,提出了一种啁啾脉冲转换算法(CPCA),通过在相干相敏光时域反射仪(-OTDR)中对接收到的信号卷积一个啁啾因子,将普通探测脉冲转换为等效啁啾探测脉冲。利用该算法,可采用曾应用于啁啾脉冲-OTDR的瑞利干涉图案(RIP)解调来量化传统相干-OTDR中的动态应变。由于等效啁啾脉冲是通过数字处理生成的,因此不需要复杂且昂贵的啁啾调制。所提出的方案能够以4 m的空间分辨率、8 km的传感范围、5 kHz的频率响应和56ε/√的应变分辨率对扰动进行全面量化。

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