Accuracy analysis in determining the location of underground objects using GPR involving lidar data

Author:

Lejzerowicz Anna1ORCID,Czernic Paweł2ORCID,Pilarska-Mazurek Magdalena3ORCID,Załęgowski Kamil4ORCID,Górka Jakub3ORCID,Bakuła Krzysztof3ORCID

Affiliation:

1. Warsaw University of Technology, Faculty of Civil Engineering, Al. Armii Ludowej 16, 00-637 Warsaw,Poland

2. Warsaw University of Technology, Faculty of Geodesy and Cartography, Pl. Politechniki 1, 00-661,Warsaw,Poland

3. Warsaw University of Technology, Faculty of Geodesy and Cartography, Pl. Politechniki 1, 00-661,Warsaw, Poland

4. Warsaw University of Technology, Faculty of Civil Engineering, Al. Armii Ludowej 16, 00-637Warsaw, Poland

Abstract

Ground penetrating radar (GPR) is one of the most useful non-destructive techniques for locating underground objects. Advancements in this technology have facilitated the development of new sensors over the past decade. In this paper, an accuracy assessment of the location of underground objects using various GPR antennas is presented. To achieve the stated goals, measurements of 5 concrete slabs, reinforced with steel bars of various diameters and located at variable depths were taken. The experiment includes the usage of three GPR antennas to assess the format, characteristics, and differences of extracted data. This set of antennas from different manufacturers varied in terms of operating frequency. Additional lidar data from TLS (terrestrial laser scanning) was utilized in the methodology to provide precise surface measurements and therefore, external orientation of the surveyed data. The experiment allowed for the determination of vertical and horizontal accuracy for three tested antennas and the assessment of increasing errors value with greater depth of the measured items, which is important for surveying accuracy forecasting.

Publisher

Polish Academy of Sciences Chancellery

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