Challenges of 360° Inspection of Bridge Infrastructure Using Unmanned Aerial Vehicles (UAVs)

Author:

Congress Surya Sarat Chandra1234,Escamilla Jesse1234,Chimauriya Hiramani1234,Puppala Anand J.1234

Affiliation:

1. Senior Research Engineer, Zachry Dept. of Civil and Environmental Engineering, Texas A&M Univ., College Station, TX.

2. Technical Engineer I, Bridge Design Division, Alaska DOT & PF, Juneau, AK.

3. Doctoral Student, Zachry Dept. of Civil and Environmental Engineering, Texas A&M Univ., College Station, TX.

4. A.P. and Florence Wiley Chair Professor, Zachry Dept. of Civil and Environmental Engineering, Texas A&M Univ., College Station, TX.

Publisher

American Society of Civil Engineers

Reference19 articles.

1. AKDOT&PF. 2017. Alaska Bridges and Structures Manual.

2. ASCE. 2021. “America’s Infrastructure Report Card 2021.” Accessed March 6 2021. https://infrastructurereportcard.org/.

3. Barfuss, S., A. Jensen, and S. Clemens. 2012. Evaluation and development of unmanned aircraft (UAV) for UDOT needs. Utah. Dept. of Transportation. Research Division.

4. Brooks, C., R. J. Dobson, D. M. Banach, D. Dean, T. Oommen, R. E. Wolf, T. C. Havens, T. M. Ahlborn, and B. Hart. 2015. Evaluating the use of unmanned aerial vehicles for transportation purposes.

5. Congress S. S. C. 2018. “Novel Infrastructure Monitoring Using Multifaceted Unmanned Aerial Vehicle Systems - Close Range Photogrammetry (UAV - CRP) Data Analysis.”

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