An automatic wireless monitoring system of buildings, road infrastructures (e.g., bridges, viaducts, tunnels) and industrial infrastructures (e.g., silos, tanks, pipelines) of new conception is presented in the present contribution. The system is based on networks of multifunctional sensors integrated in a textile base of composite material easily applicable on the surfaces of the structural elements to be monitored. The sensors are equipped with innovative features that allow to measure physical quantities in dynamic field acquiring a large amount of data. The system is managed by a computer platform that allows to collect and process the data operating automatic modal analysis for the structural assessment. The final interpretation of the results is developed with the help of a software based on algorithms developed using different approaches (e.g. Machine Learning). This solution allows the analysis of the structures with prescriptive and predictive purposes to determine the state of safety in relation to natural and man-made hazards.

Research project of an automatic wireless monitoring system of buildings, road and industrial infrastructures / De Stefano, A.; Cardoni, A.; Kather, M.; Domaneschi, M.; Cimellaro, G. P.; Fenoglio, T. M.; Fantinuoli, G. L.; Morino, A.; Taverna, G.; Putetto, C.. - (2022), pp. 35-38. (Intervento presentato al convegno 11th International Conference on Structural Health Monitoring of Intelligent Infrastructure, SHMII 2022 tenutosi a Montreal (Can) nel 8 August 2022 through 12 August 2022).

Research project of an automatic wireless monitoring system of buildings, road and industrial infrastructures

De Stefano A.;Cardoni A.;Domaneschi M.;Cimellaro G. P.;
2022

Abstract

An automatic wireless monitoring system of buildings, road infrastructures (e.g., bridges, viaducts, tunnels) and industrial infrastructures (e.g., silos, tanks, pipelines) of new conception is presented in the present contribution. The system is based on networks of multifunctional sensors integrated in a textile base of composite material easily applicable on the surfaces of the structural elements to be monitored. The sensors are equipped with innovative features that allow to measure physical quantities in dynamic field acquiring a large amount of data. The system is managed by a computer platform that allows to collect and process the data operating automatic modal analysis for the structural assessment. The final interpretation of the results is developed with the help of a software based on algorithms developed using different approaches (e.g. Machine Learning). This solution allows the analysis of the structures with prescriptive and predictive purposes to determine the state of safety in relation to natural and man-made hazards.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2996514