Title :
A Source Separation Technique for Processing of Thermometric Data From Fiber-Optic DTS Measurements for Water Leakage Identification in Dikes
Author :
Khan, Amir A. ; Vrabie, Valeriu ; Mars, Jérome I. ; Girard, Alexandre ; D´Urso, Guy
Author_Institution :
Dept. of Image & Signal Process. (DIS), GIPSA-Lab., Grenoble
fDate :
7/1/2008 12:00:00 AM
Abstract :
Distributed temperature sensors (DTSs) show real advantages over conventional temperature sensing technology such as low cost for long-range measurement, durability, stability, insensitivity to external perturbations, etc. They are particularly interesting for long-term health assessment of civil engineering structures such as dikes. In this paper, we address the problem of identification of leakage in dikes based on real thermometric data recorded by DTS. Formulating this task as a source separation problem, we propose a methodology based on Principal Component Analysis (PCA) and Independent Component Analysis (ICA). As the first PCA estimated source extracts an energetic subspace, other PCA sources allow to access the leakages. The energy of a leakage being very low compared to the entire data, a temporal windowing approach guarantees the presence of the leakages on these other PCA sources. However, on these sources, the leakages are not well separated from other factors like drains. An ICA processing, providing independent sources, is thus proposed to achieve better identification of the leakages. The study of different preprocessing steps such as normalization, spatial gradient, and transposition allows to propose a final scheme that represents a first step towards the automation of the leakage identification problem.
Keywords :
condition monitoring; distributed sensors; fibre optic sensors; independent component analysis; principal component analysis; structural engineering; temperature sensors; ICA; PCA; civil engineering structure; dikes; distributed temperature sensor; fiber-optic DTS measurement; independent component analysis; long-term health assessment; principal component analysis; source separation technique; thermometric data processing; water leakage identification; Civil engineering; Costs; Independent component analysis; Levee; Optical fiber sensors; Principal component analysis; Source separation; Stability; Temperature sensors; Water resources; Dikes; distributed temperature sensors (DTSs); independent component analysis (ICA); leakage identification; principal component analysis (PCA); source separation; thermometric data;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2008.926109