TY - CONF
T1 - Transport infrastructure monitoring by data fusion of GPR and SAR imagery information
A2 - Tosti, Fabio
A2 - Gagliardi, Valerio
A2 - D'Amico, Fabrizio
A2 - Alani, Amir M
N1 - Note: Published in: Ignaccolo, Matteo and Tiboni, Michela, (eds.) (2020) Transport infrastructure and systems in a changing world. Towards a more sustainable, reliable and smarter mobility. TIS Roma 2019 Conference Proceedings. Amsterdam, Netherlands : Elsevier. pp. 77-778. (Transportation Research Procedia vol. 45) ISSN (online) 2352-1465)
Organising Body: AIIT Italian Association for Traffic and Transport Engineering
PY - 2019/9/23
Y1 - 2019/9/23
N2 - In order to maintain the highest operational safety standards, it is crucial that surface and structural deformation caused by geophysical natural hazards and human-related activities in linear transport networks (such as highways and railways) are monitored and evaluated. Today, Ground Penetrating Radar (GPR) is a well-established technology among the available non-destructive testing (NDT) methods for the collection of ground-based information. Concurrently, the space-borne Interferometric Synthetic Aperture Radar (InSAR) is another well-known viable methodology for large-scale investigations of road network surface deformations. However, it is fair to comment that the potential of this method in the area of transport infrastructure monitoring has not yet been sufficiently explored. Within this context, this research demonstrates the viability of integrating InSAR and GPR for monitoring transport assets at network level. The main theoretical and working principles of the two above-mentioned methodologies have been presented and discussed, and the advantage and drawbacks of each technique have then been analysed. The final section of the paper examines a recent experimental activity carried out on a real-life railway located in Puglia, Southern Italy. Test outcomes prove the viability of the proposed data fusion methodology for monitoring the health of transport assets at network level.
AB - In order to maintain the highest operational safety standards, it is crucial that surface and structural deformation caused by geophysical natural hazards and human-related activities in linear transport networks (such as highways and railways) are monitored and evaluated. Today, Ground Penetrating Radar (GPR) is a well-established technology among the available non-destructive testing (NDT) methods for the collection of ground-based information. Concurrently, the space-borne Interferometric Synthetic Aperture Radar (InSAR) is another well-known viable methodology for large-scale investigations of road network surface deformations. However, it is fair to comment that the potential of this method in the area of transport infrastructure monitoring has not yet been sufficiently explored. Within this context, this research demonstrates the viability of integrating InSAR and GPR for monitoring transport assets at network level. The main theoretical and working principles of the two above-mentioned methodologies have been presented and discussed, and the advantage and drawbacks of each technique have then been analysed. The final section of the paper examines a recent experimental activity carried out on a real-life railway located in Puglia, Southern Italy. Test outcomes prove the viability of the proposed data fusion methodology for monitoring the health of transport assets at network level.
KW - ground penetrating radar (GPR)
KW - non-destructive testing (NDT) methods
KW - space-borne Interferometric Synthetic Aperture Radar (InSAR)
KW - transport infrastructure monitoring
KW - data fusion
UR - http://repository.uwl.ac.uk/id/eprint/6676/
U2 - 10.1016/j.trpro.2020.02.097
DO - 10.1016/j.trpro.2020.02.097
M3 - Paper
T2 - AIIT 2nd International Congress on Transport Infrastructure and Systems in a Changing World
Y2 - 23 September 2019 through 24 September 2019
ER -