Nothing Special   »   [go: up one dir, main page]

Murphy et al., 2019 - Google Patents

Use of Small Unmanned Aerial Systems for Emergency Management of Flooding [techbrief]

Murphy et al., 2019

View PDF
Document ID
8420399500124951789
Author
Murphy R
et al.
Publication year

External Links

Snippet

Small rotorcraft unmanned aerial systems have become increasingly common before, during, and after flooding disasters. A commonly used platform that retails for approximately $1,000 can perform six of the seven basic missions for flood events. The low cost of current …
Continue reading at rosap.ntl.bts.gov (PDF) (other versions)

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01CMEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
    • G01C21/00Navigation; Navigational instruments not provided for in preceding groups
    • G01C21/20Instruments for performing navigational calculations

Similar Documents

Publication Publication Date Title
Murphy et al. Use of a Small Unmanned Aerial System for the SR‐530 Mudslide Incident Near Oso, Washington
van Aardt et al. Geospatial disaster response during the Haiti earthquake: A case study spanning airborne deployment, data collection, transfer, processing, and dissemination
McGuire et al. A study of how unmanned aircraft systems can support the Kansas Department of Transportation’s efforts to improve efficiency, safety, and cost reduction
Brooke et al. Testing marine conservation applications of unmanned aerial systems (UAS) in a remote marine protected area
CN110044338A (en) A kind of the unmanned plane monitoring method and system of the dam break scene that inrushes
Gallagher et al. Unmanned systems and managing from above: the practical implications of UAVs for research applications addressing urban sustainability
Yıldız et al. Using drone technologies for construction project management: A narrative review
Murphy Use of Small Unmanned Aerial Systems for Emergency Management of Flooding [techbrief]
Cress et al. US Geological Survey unmanned aircraft systems (UAS) roadmap 2014
Blanks UAS applications
Gillins Unmanned aircraft systems for bridge inspection: Testing and developing end-to-end operational workflow
Kandrot et al. Applications of drone technology for sustainable development of the coastal zone: A literature review
Halbgewachs et al. Using UAV Data to Improve the Situational Awareness for First Responders in Disaster Management: The Example of Flooding in the AHR Valley, Germany
Ozisik Post-earthquake damage assessment using satellite and aerial video imagery
Thamm et al. Design of a process model for unmanned aerial systems (UAS) in emergencies.
Oyebode et al. Utilization Of Drones as A Tool For Monitoring Progress In Civil Engineering Construction Using Enugu State As A Case Study
Cottry Drone Mapping and AI Combine to Find Flood Victims Faster in Mozambique
Burgett et al. Unmanned aircraft systems (UAS) impact on operational efficiency and connectivity
Bruder et al. Evaluation of Unmanned Aircraft Systems for Flood Risk Management: Field Experiment Conspectus
Ivashov et al. Railway transport infrastructure monitoring by UAVs and satellites
Abdalla Urbanization and Crisis Management Using Geomatics Technologies
Bekkaye et al. Application and comparison of remote sensing techniques for data-driven disaster debris quantification
Kang et al. Optimising disaster response: opportunities and challenges with Uncrewed Aircraft System (UAS) technology in response to the 2020 Labour Day wildfires in Oregon, USA
Williamson et al. Remote sensing for transportation security
Turner EVALUATION OF A