DocumentCode :
144056
Title :
Automatic linear disturbance footprint mapping in Alberta, Canada based on dense time-series Landsat imagery
Author :
Zhaohua Chen ; Jefferies, Bill ; Adlakha, Paul ; Salehi, Bahram ; Power, Des
Author_Institution :
C-CORE, St. John´s, NL, Canada
fYear :
2014
fDate :
13-18 July 2014
Firstpage :
4196
Lastpage :
4199
Abstract :
Mapping linear disturbances from oil and gas extraction and mining in Western Canada traditionally relies on manual digitizing from very high resolution remote sensing data, which usually limits results to small operational area. In this paper, we present an approach of mapping linear disturbances based on time series data analysis of regularly acquired, and low cost satellite data of moderate resolution. This approach involves three steps: line detection based on a multi-scale directional template, line updating based on reappearance frequency and line connection using Hough Transform. This automatic method has been tested over three sites in Alberta, Canada by detecting linear disturbances occurring over the period of 1984-2013 using Landsat imagery. The results show that the method can extract very narrow linear features, including seismic lines, roads and pipelines with a good performance.
Keywords :
Hough transforms; data analysis; geophysical prospecting; hydrocarbon reservoirs; pipelines; remote sensing; roads; seismology; time series; AD 1984 to 2013; Alberta; Hough transform line connection; automatic linear disturbance footprint mapping; automatic method; dense time-series LANDSAT imagery; gas extraction linear disturbance mapping; line detection; line updating; linear disturbance detection; linear disturbance mapping approach; manual digitization; moderate resolution low cost satellite data; multiscale directional template; oil extraction linear disturbance mapping; pipeline; reappearance frequency; road; seismic line; small operational area; time series data analysis; very high resolution remote sensing data; very narrow linear feature extraction; western Canada; Earth; Feature extraction; Image resolution; Lakes; Remote sensing; Roads; Satellites; Landsat; feature extraction; linear disturbance; seismic lines; time series;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Geoscience and Remote Sensing Symposium (IGARSS), 2014 IEEE International
Conference_Location :
Quebec City, QC
Type :
conf
DOI :
10.1109/IGARSS.2014.6947413
Filename :
6947413
Link To Document :
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