DocumentCode :
21059
Title :
Separation and Determination of the Disturbing Signals in Phase-Sensitive Optical Time Domain Reflectometry (Φ-OTDR)
Author :
Huijuan Wu ; Shunkun Xiao ; Xiaoyu Li ; Zinan Wang ; Jiwei Xu ; Yunjiang Rao
Author_Institution :
Key Lab. of Opt. Fiber Sensing & Commun. (Minist. of Educ.), Univ. of Electron. Sci. & Technol. of China, Chengdu, China
Volume :
33
Issue :
15
fYear :
2015
fDate :
Aug.1, 1 2015
Firstpage :
3156
Lastpage :
3162
Abstract :
Phase-sensitive optical time domain reflectometry (Φ-OTDR) is easy to be interfered by ambient noises, and the nonlinear coherent addition of different interferences always makes it difficult to detect real human intrusions and causes high nuisance alarm rates (NARs) in practical applications. In this paper, an effective temporal signal separation and determination method is proposed to improve its detection performance in complicated noisy environments. Unlike the conventional analysis of transverse spatial signals, the time-evolving sensing signal of Φ-OTDR system is at first obtained for each spatial point by accumulating the changing OTDR traces at different moments. Then, its longitudinal temporal signal is decomposed and analyzed by a multi-scale wavelet decomposition method. By selectively recombining the corresponding scale components, it can effectively extract human intrusion signals, and separate the influences of slow change of the system and other environmental interferences. Compared with the conventional differentiation way and fast Fourier transformation denoising method, the SNRs of the detecting signals for the proposed method is always the best, which can be raised by up to ~35 dB for the best case. Moreover, from the decomposed components, different event signals can be effectively determined by their energy distribution features, and the NAR can be controlled to be less than 2% in the test.
Keywords :
distributed sensors; feature extraction; fibre optic sensors; optical information processing; optical time-domain reflectometry; signal denoising; source separation; Φ-OTDR; NAR; ambient noises; complicated noisy environments; disturbing signals; energy distribution; environmental interferences; fast Fourier transformation denoising method; high nuisance alarm rates; human intrusion signal extraction; longitudinal temporal signal decomposition; multiscale wavelet decomposition method; nonlinear coherent addition; phase-sensitive optical time domain reflectometry; scale components recombination; signal determination method; temporal signal separation; time-evolving sensing signal; Filter banks; Noise measurement; Optical fibers; Sensors; Signal to noise ratio; Testing; Φ-OTDR; ??-OTDR; Detection; Signal separation; detection; distributed optical fiber sensing; extraction; signal separation;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2015.2421953
Filename :
7084092
Link To Document :
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