DocumentCode
1927863
Title
Hough transform based automatic pipe detection for array GPR: Algorithm development and on-site tests
Author
Simi, Alessandro ; Bracciali, Stefania ; Manacorda, Guido
Author_Institution
Georadar Div., IDS Ing. dei Sist. SpA, Pisa
fYear
2008
fDate
26-30 May 2008
Firstpage
1
Lastpage
6
Abstract
GPR is one of the most reliable instrument to obtain information on underground assets. Since its diffusion, many efforts have been made in order to overcome one the main limitations of this technology: the ldquohuman factorrdquo in data interpretation. Actually, operators have to look and interpret a huge number of radargrams. This requires an enormous effort, about 2 days are usually needed for analyzing radar data gathered from a 3000 m2 wide site Some useful tools like tomography has been developed, but their quality and reliability is related to the migration algorithm which is heavily depending on knowledge of the propagation velocity of EM wave in the soil. Hyperbolas automatic detection algorithm reduces human factor in radar data interpretation and aims to strongly lower the amount of time needed for data analysis. The algorithm works on each radargram, recognizes the presence of target by looking for the hyperbolic patterns and marks them. Then the operator can correlate those results from different radar maps and extract the position of the underground assets. The algorithm also gives an accurate evaluation of the propagation velocity of EM waves in the soil, so this estimate can be used by migration algorithm in order to obtain an improved tomography. Using both Hyperbolas Automatic Detection and tomography, time needed to analyze a 3000 m2 wide area can be reduced up to less than 4 hours.
Keywords
Hough transforms; ground penetrating radar; human factors; radar detection; radiowave propagation; tomography; EM waves propagation velocity; Hough transform; array GPR; automatic pipe detection; human factor; hyperbolas automatic detection algorithm; migration algorithm; radar data interpretation; radargrams; tomography; Algorithm design and analysis; Automatic testing; Data analysis; Detection algorithms; Ground penetrating radar; Human factors; Instruments; Pattern recognition; Soil; Tomography; Automatic Detection; GPR; Utilities;
fLanguage
English
Publisher
ieee
Conference_Titel
Radar Conference, 2008. RADAR '08. IEEE
Conference_Location
Rome
ISSN
1097-5659
Print_ISBN
978-1-4244-1538-0
Electronic_ISBN
1097-5659
Type
conf
DOI
10.1109/RADAR.2008.4720763
Filename
4720763
Link To Document