Feasibility study of automated detection of tunnel excavation by Brillouin optical time domain reflectometry

被引:79
作者
Klar, Assaf [1 ]
Linker, Raphael [2 ]
机构
[1] Technion Israel Inst Technol, Dept Struct Engn & Construct Management, Fac Civil & Environm Engn, IL-32000 Haifa, Israel
[2] Technion Israel Inst Technol, Dept Environm Water & Agr Engn, Fac Civil & Environm Engn, IL-32000 Haifa, Israel
关键词
Smuggling tunnels; Borders; Security fences; Optical fibers; Sensing devices; BOTDR; DISTRIBUTED STRAIN; WAVELET TRANSFORM; REGRESSION; COMPRESSION;
D O I
10.1016/j.tust.2010.04.003
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Cross-borders smuggling tunnels enable unmonitored movement of people, drugs and weapons and pose a very serious threat to homeland security. Recent advances in strain measurements using optical fibers allow the development of smart underground security fences that could detect the excavation of smuggling tunnels. This paper presents the first stages in the development of such a fence using Brillouin optical time domain reflectometry (BOTDR). Two fiber optic layouts are considered and evaluated in a feasibility study that includes evaluation of false detection and sensitivity: (1) horizontally laid fiber buried at a shallow depth, and (2) fibers embedded in vertical mini-piles. In the simulation study, two different ground displacement models are used in order to evaluate the robustness of the system against imperfect modeling. In both cases, soil-fiber and soil-structure interactions are considered. Measurement errors, and surface disturbances (obtained from a field test) are also included in the calibration and validation stages of the system. The proposed detection system is based on wavelet decomposition of the BOTDR signal, followed by a neural network that is trained to recognize the tunnel signature in the wavelet coefficients. The results indicate that the proposed system is capable of detecting even small tunnel (0.5 m diameter) as deep as 20 m (under the horizontal fiber) or as far as 10 m aside from the mini-pile (vertical fiber), if the volume loss is greater than 0.5%. (C) 2010 Elsevier Ltd. All rights reserved.
引用
收藏
页码:575 / 586
页数:12
相关论文
共 33 条
[1]   Variable selection in wavelet regression models [J].
Alsberg, BK ;
Woodward, AM ;
Winson, MK ;
Rowland, JJ ;
Kell, DB .
ANALYTICA CHIMICA ACTA, 1998, 368 (1-2) :29-44
[2]  
[Anonymous], ASCE GEOTECHNICAL SP
[3]  
[Anonymous], ASTM STP
[4]  
[Anonymous], 2006, GEOCONGRESS 2006, DOI DOI 10.1061/40803(187)33
[5]  
Attewell P.B., 1986, SOIL MOVEMENTS INDUC
[6]   Subsurface discrimination using electromagnetic induction sensors [J].
Bell, TH ;
Barrow, BJ ;
Miller, JT .
IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING, 2001, 39 (06) :1286-1293
[7]   Application of drillhole vector magnetic measurements to resolve the position of existing underground structures [J].
Collar, F ;
Fenning, P ;
Mora, C .
NDT & E INTERNATIONAL, 2005, 38 (03) :231-236
[8]  
Debnath L., 2002, Wavelet transforms and their application, Vsecond, DOI DOI 10.1007/978-1-4612-0097-0
[9]   Quantitative analysis of near infrared spectra by wavelet coefficient regression using a genetic algorithm [J].
Depczynski, U ;
Jetter, K ;
Molt, K ;
Niemöller, A .
CHEMOMETRICS AND INTELLIGENT LABORATORY SYSTEMS, 1999, 47 (02) :179-187
[10]   Wavelet transform applications in analytical chemistry [J].
Ehrentreich, F .
ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2002, 372 (01) :115-121