Project Summary:
The problem we are trying to investigate is the synergistic application of unmanned aerial
vehicles (UAVs) with active acoustic sensing (AAS) and synthetic aperture radar (SAR) for the underside inspection of bridge decks. The problem is important because that employing such UAV-AAS-SAR system can i) reduce inspection cost by more than 50%, ii) improve inspectors’ safety, and iii) mitigate traffic interference with little or no traffic control measures needed. Consequently, substantial increases in productivity can be expected with the advances in hardware and software for UAVs and sensors. We propose to 1) develop an acoustic sensor capable of actively interrogating concrete delamination of bridge decks from underneath, 2) develop a compact radar sensor capable of remotely scanning concrete surface for delamination detection, 3) develop a UAV platform capable of housing the acoustic and the radar sensors for bridge inspection, 4) develop image processing and interpretation algorithms for condition assessment, and 5) work with partners in the bridge inspection industry to guide design decisions to produce a practical and useful system.
Principal Investigator:
Dr. Dryver Huston (UVM)
Institution:
University of Massachusetts Lowell
University of Vermont
University of Maine
Co-PIs:
Dr. Tzuyang Yu (UML)
Dr. Eric Landis (UMaine)
Project Type:
Competitive-Funded Research
Start Date:
10/1/2020
Project Cost:
$848,357
Project Status:
In Progress
End Date:
9/30/2023
Agency ID:
69A3551847101
Sponsors:
University Transportation Centers Program
University of Massachusetts Lowell
University of Vermont
University of Maine
Implementation of Research Outcomes:
This project is in its initial research phase. Implementation of Research outcomes will be reported upon completion of initial research.
Impacts and Benefits of Implementation:
This project is in its initial research phase. Impacts and benefits of the research will be reported after the implementation phase.
Related Links:
Coming Soon
Downloadable Documents
Printable Project Information Sheet
June 2021 Quarterly Progress Report
September 2021 Quarterly Progress Report
December 2021 Quarterly Progress Report