Concept of an Advanced Hyperspectral Remote Sensing System for Pipeline Monitoring

被引:1
作者
Keskin, Goeksu [1 ]
Teutsch, Caroline D. [1 ]
Lenz, Andreas [1 ]
Middelmann, Wolfgang [1 ]
机构
[1] Fraunhofer Inst Optron Syst Technol & Image Explo, D-76275 Ettlingen, Germany
来源
EARTH RESOURCES AND ENVIRONMENTAL REMOTE SENSING/GIS APPLICATIONS VI | 2015年 / 9644卷
关键词
Oil detection; pipeline monitoring; hyperspectral; disaster management;
D O I
10.1117/12.2194973
中图分类号
TP7 [遥感技术];
学科分类号
081102 ; 0816 ; 081602 ; 083002 ; 1404 ;
摘要
Areas occupied by oil pipelines and storage facilities are prone to severe contamination due to leaks caused by natural forces, poor maintenance or third parties. These threats have to be detected as quickly as possible in order to prevent serious environmental damage. Periodical and emergency monitoring activities need to be carried out for successful disaster management and pollution minimization. Airborne remote sensing stands out as an appropriate choice to operate either in an emergency or periodically. Hydrocarbon Index (HI) and Hydrocarbon Detection Index (HDI) utilize the unique absorption features of hydrocarbon based materials at SWIR spectral region. These band ratio based methods require no a priori knowledge of the reference spectrum and can be calculated in real time. This work introduces a flexible airborne pipeline monitoring system based on the online quasi-operational hyperspectral remote sensing system developed at Fraunhofer IOSB, utilizing HI and HDI for oil leak detection on the data acquired by an SWIR imaging sensor. Robustness of HI and HDI compared to state of the art detection algorithms is evaluated in an experimental setup using a synthetic dataset, which was prepared in a systematic way to simulate linear mixtures of selected background and oil spectra consisting of gradually decreasing percentages of oil content. Real airborne measurements in Ettlingen, Germany are used to gather background data while the crude oil spectrum was measured with a field spectrometer. The results indicate that the system can be utilized for online and offline monitoring activities.
引用
收藏
页数:9
相关论文
共 21 条
[1]  
ADEC, 1999, TECHN REV LEAK DET T
[2]  
ASD, 2012, FIELDSPEC 4 US MAN
[3]   Using Imaging Spectroscopy to study soil properties [J].
Ben-Dor, E. ;
Chabrillat, S. ;
Dematte, J. A. M. ;
Taylor, G. R. ;
Hill, J. ;
Whiting, M. L. ;
Sommer, S. .
REMOTE SENSING OF ENVIRONMENT, 2009, 113 :S38-S55
[4]  
Chein-I Chang, 1999, IEEE 1999 International Geoscience and Remote Sensing Symposium. IGARSS'99 (Cat. No.99CH36293), P509, DOI 10.1109/IGARSS.1999.773549
[5]  
Correa Pabon R. E., 2014, P GEOSC REM SENS S I
[6]  
Fix A, 2004, ESA SP PUBL, V561, P45
[7]  
Giunta G., 2011, P 10 OMC C
[8]  
Gross W., 2013, P OCM 2013 OPT CHAR, V1, P169
[9]   Monitoring of gas pipelines - a civil UAV application [J].
Hausamann, D ;
Zirnig, W ;
Schreier, G ;
Strobl, P .
AIRCRAFT ENGINEERING AND AEROSPACE TECHNOLOGY, 2005, 77 (05) :352-360
[10]  
Kaufmann H. J., 2010, P ASD IEEE GRS ART S