Smart City Gnosys

Smart city article details

Title A Low Cost Platform For Distributed Data-Driven Structural Health Monitoring
ID_Doc 2411
Authors Marino R.; Marino A.; De Domenico D.; Carnevale L.; Gambito M.A.; Villari M.
Year 2024
Published Proceedings - IEEE Symposium on Computers and Communications
DOI http://dx.doi.org/10.1109/ISCC61673.2024.10733602
Abstract Monitoring of infrastructures through sensor networks that acquire accelerations, tilts, angular velocities and environmental quantities can diagnose structural damage in time and prevent building collapse, thus becoming a key technology in today's smart-cities. This paper presents the design and prototyping of a custom low-cost synchronous Structural Health Monitoring (SHM) system. The goal of data-driven modeling of infrastructures through Machine Learning techniques imposes the constraint of synchronous and continuous monitoring and requires the ability to control the system and off-load data remotely to an Edge-Cloud continuum. In the proposed system analysis of the acquired signals can take place through REST calls on the storage system and the use of tools built in Python language. At the end of the work, preliminary tests of acquisition, analysis of data writing times and measurement of times-of-flight of an elastic wave on a building under investigation are presented. © 2024 IEEE.
Author Keywords Data-Driven Identification; Machine Learning; Structural Health Monitoring; Wireless Sensors


Similar Articles


Id Similarity Authors Title Published
8103 View0.891Tahat A.; Al-Zaben A.; El-Deen L.S.; Abbad S.; Talhi C.An Evaluation Of Machine Learning Algorithms In An Experimental Structural Health Monitoring System Incorporating Lora Iot ConnectivityConference Record - IEEE Instrumentation and Measurement Technology Conference (2022)
35895 View0.888Malekloo A.; Ozer E.; AlHamaydeh M.; Girolami M.Machine Learning And Structural Health Monitoring Overview With Emerging Technology And High-Dimensional Data Source HighlightsStructural Health Monitoring, 21, 4 (2022)
47633 View0.886Farjad S.M.; Patllola S.R.; Kassa Y.; Grispos G.; Gandhi R.Secure Edge Computing Reference Architecture For Data-Driven Structural Health Monitoring: Lessons Learned From Implementation And BenchmarkingACMSE 2025 - Proceedings of the 2025 ACM Southeast Conference (2025)
40288 View0.883Golovastikov N.V.; Kazanskiy N.L.; Khonina S.N.Optical Fiber-Based Structural Health Monitoring: Advancements, Applications, And Integration With Artificial Intelligence For Civil And Urban InfrastructurePhotonics, 12, 6 (2025)
34988 View0.872Aktan E.; Bartoli I.; Glišić B.; Rainieri C.Lessons From Bridge Structural Health Monitoring (Shm) And Their Implications For The Development Of Cyber-Physical SystemsInfrastructures, 9, 2 (2024)
19032 View0.865Quattrocchi A.; Martella F.; Lukaj V.; De Leo R.; Villari M.; Montanini R.Designing A Low-Cost System To Monitor The Structural Behavior Of Street Lighting Poles In Smart CitiesSensors, 23, 15 (2023)
10427 View0.863Zinno R.; Haghshenas S.S.; Guido G.; Vitale A.Artificial Intelligence And Structural Health Monitoring Of Bridges: A Review Of The State-Of-The-ArtIEEE Access, 10 (2022)
12691 View0.861Jeribi F.; Shuaib M.; Alam S.; Rajaram A.Blockchain-Enabled Monitoring Of Public Works Projects Using Piezoelectric TransducersMechanics of Advanced Materials and Structures (2025)
7751 View0.86Rinaldi C.; Smarra F.; Franchi F.; D'Innocenzo A.An Edge-Based Machine Learning-Enabled Approach In Structural Health Monitoring For Public ProtectionProceedings - 2022 IEEE Future Networks World Forum, FNWF 2022 (2022)
17889 View0.859Tang H.; Xie Y.; Ran L.Deep Learning For Vibration-Based Data-Driven Defect Diagnosis Of Structural SystemsThe Rise of Smart Cities: Advanced Structural Sensing and Monitoring Systems (2022)