Seo et al., 2018 - Google Patents
Evaluating the use of drones for timber bridge inspectionSeo et al., 2018
View PDF- Document ID
- 1011908561778028615
- Author
- Seo J
- Wacker J
- Duque L
- Publication year
External Links
- 238000007689 inspection 0 title abstract description 253
Classifications
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01C—MEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
- G01C11/00—Photogrammetry or videogrammetry, e.g. stereogrammetry; Photographic surveying
- G01C11/02—Picture taking arrangements specially adapted for photogrammetry or photographic surveying, e.g. controlling overlapping of pictures
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Dorafshan et al. | Bridge inspection: Human performance, unmanned aerial systems and automation | |
Seo et al. | Drone-enabled bridge inspection methodology and application | |
Seo et al. | Evaluating the use of drones for timber bridge inspection | |
Duque et al. | Synthesis of unmanned aerial vehicle applications for infrastructures | |
Ciampa et al. | Practical issues on the use of drones for construction inspections | |
Mandirola et al. | Use of UAS for damage inspection and assessment of bridge infrastructures | |
Dorafshan et al. | Challenges in bridge inspection using small unmanned aerial systems: Results and lessons learned | |
Fan et al. | Applications of drones in infrastructures: Challenges and opportunities | |
Dorafshan et al. | Fatigue crack detection using unmanned aerial systems in under-bridge inspection | |
JP6669830B2 (en) | Inspection plan drafting support system, method and program | |
Congress | Novel infrastructure monitoring using multifaceted unmanned aerial vehicle systems-close range photogrammetry (UAV-CRP) data analysis | |
Talebi et al. | The development of a digitally enhanced visual inspection framework for masonry bridges in the UK | |
Toriumi et al. | UAV-based inspection of bridge and tunnel structures: an application review | |
Wang et al. | A review study on unmanned aerial vehicle and mobile robot technologies on damage inspection of reinforced concrete structures | |
Congress et al. | Eye in the sky: condition monitoring of transportation infrastructure using drones | |
Duque et al. | Timber bridge inspection using UAV | |
Irizarry et al. | Potential unmanned aircraft systems based operations within a Department of Transportation: Findings from a focus group study | |
Congress et al. | Eye in the Sky: 360° Inspection of Bridge Infrastructure Using Uncrewed Aerial Vehicles (UAVs) | |
Gillins | Unmanned aircraft systems for bridge inspection: Testing and developing end-to-end operational workflow | |
Darby et al. | Bridge Inspecting with Unmanned Aerial Vehicles R&D | |
Cunningham et al. | UAS-based inspection of the Placer River Trail Bridge: A data-driven approach | |
Bridge | Use of small unmanned aerial vehicles (sUAV) for structural inspection | |
Burgett et al. | Unmanned aircraft systems (UAS) impact on operational efficiency and connectivity | |
Furtner et al. | Automated infrastructure inspection based on digital twins and machine learning | |
Congress et al. | Lessons Learned in Airport Asset Inspection Using Unmanned Aerial Vehicle (UAV) Based Close-Range Photogrammetry |