REVIEW PAPER ON DESIGN AND DEVELOPMENT OF SMART BRIDGE MONITORING SYSTEM

  • Unique Paper ID: 204399
  • Volume: 13
  • Issue: 1
  • PageNo: 3329-3331
  • Abstract:
  • Bridge structures are subject to constant dynamic loading, environmental degradation, corrosion, flooding, and structural ageing. The failure of such infrastructure can lead to catastrophic accidents, significant traffic disruption, and the loss of human life. Consequently, the continuous monitoring of bridge structural integrity is essential. This project details the design and development of a cost-effective, intelligent bridge monitoring system capable of detecting overload conditions, excessive vibration, structural cracking, deflection, and flood levels in real time. The architecture integrates various sensors, including infrared and water-level sensors, interfaced with an Arduino Uno microcontroller. Sensor data are continuously monitored and analysed by the controller. Should any parameter exceed a predefined safety threshold, warning signals are triggered via LEDs and audible alarms. Concurrently, barriers located at both ends of the bridge are engaged to restrict access immediately. A servo motor-driven automatic gate mechanism prevents vehicles from entering the bridge under hazardous conditions. The proposed system enhances public safety, reduces maintenance expenditure, minimizes the necessity for manual inspection, and offers an economical solution for the structural health monitoring of bridges and flyovers.

Copyright & License

Copyright © 2026 Authors retain the copyright of this article. This article is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

BibTeX

@article{204399,
        author = {Poonam J. Yadav and Pritam Sanjay Patil and Aditya Tanaji Suryawanshi and Sanket Ramchandra Bhosale and Pranav Jayasing Patil and Akash Ashok Pawar},
        title = {REVIEW PAPER ON DESIGN AND DEVELOPMENT OF SMART BRIDGE MONITORING SYSTEM},
        journal = {International Journal of Innovative Research in Technology},
        year = {2026},
        volume = {13},
        number = {1},
        pages = {3329-3331},
        issn = {2349-6002},
        url = {https://ijirt.org/article?manuscript=204399},
        abstract = {Bridge structures are subject to constant dynamic loading, environmental degradation, corrosion, flooding, and structural ageing. The failure of such infrastructure can lead to catastrophic accidents, significant traffic disruption, and the loss of human life. Consequently, the continuous monitoring of bridge structural integrity is essential. This project details the design and development of a cost-effective, intelligent bridge monitoring system capable of detecting overload conditions, excessive vibration, structural cracking, deflection, and flood levels in real time. The architecture integrates various sensors, including infrared and water-level sensors, interfaced with an Arduino Uno microcontroller. Sensor data are continuously monitored and analysed by the controller. Should any parameter exceed a predefined safety threshold, warning signals are triggered via LEDs and audible alarms. Concurrently, barriers located at both ends of the bridge are engaged to restrict access immediately. A servo motor-driven automatic gate mechanism prevents vehicles from entering the bridge under hazardous conditions. The proposed system enhances public safety, reduces maintenance expenditure, minimizes the necessity for manual inspection, and offers an economical solution for the structural health monitoring of bridges and flyovers.},
        keywords = {Bridge Monitoring, Arduino Uno, IR Sensor, Structural Health Monitoring, Smart Infrastructure, Water level sensor, servo motor.},
        month = {June},
        }

Cite This Article

Yadav, P. J., & Patil, P. S., & Suryawanshi, A. T., & Bhosale, S. R., & Patil, P. J., & Pawar, A. A. (2026). REVIEW PAPER ON DESIGN AND DEVELOPMENT OF SMART BRIDGE MONITORING SYSTEM. International Journal of Innovative Research in Technology (IJIRT), 13(1), 3329–3331.

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