Bedford, 2013 - Google Patents
Unmanned aircraft system (uas) service demand 2015-2035Bedford, 2013
View PDF- Document ID
- 8203866917706975564
- Author
- Bedford M
- Publication year
- Publication venue
- US Department of Transportation, Washington, DC, Tech. Rep. DOT-VNTSC-DoD-13-01
External Links
Snippet
This report assesses opportunities, risks, and challenges attendant to future development and deployment of UAS within the National Airspace System (NAS) affecting UAS forecast growth from 2015 to 2035. Analysis of four key areas is performed: technology, mission …
- 238000005516 engineering process 0 abstract description 154
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B64—AIRCRAFT; AVIATION; COSMONAUTICS
- B64C—AEROPLANES; HELICOPTERS
- B64C39/00—Aircraft not otherwise provided for
- B64C39/02—Aircraft not otherwise provided for characterised by special use
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B64—AIRCRAFT; AVIATION; COSMONAUTICS
- B64C—AEROPLANES; HELICOPTERS
- B64C2201/00—Unmanned aerial vehicles; Equipment therefor
- B64C2201/20—Methods for transport, or storage of unmanned aerial vehicles
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Belobaba et al. | Sense and avoid in UAS: research and applications | |
Sadraey | Design of unmanned aerial systems | |
Austin | Unmanned aircraft systems: UAVS design, development and deployment | |
Chaturvedi et al. | Comparative review study of military and civilian unmanned aerial vehicles (UAVs) | |
Peterson | The UAV and the current and future regulatory construct for integration into the national airspace system | |
Gettinger | Drone spending in the fiscal year 2017 defense budget | |
Bedford | Unmanned aircraft system (uas) service demand 2015-2035 | |
Perritt Jr et al. | Drones | |
Hasik | Arms and innovation: entrepreneurship and alliances in the twenty-first century defense industry | |
Ehimare et al. | The perennial logistical challenges during Nigerian elections: The unmanned aircraft system (UAS) solution | |
Rabiu et al. | Advancements of Unmanned Aerial Vehicle Technology in the Realm of Applied Sciences and Engineering: A Review | |
Wanner et al. | UAV avionics safety, certification, accidents, redundancy, integrity, and reliability: a comprehensive review and future trends | |
Olanipekun et al. | Unmanned Aerial Vehicles: A 21st Century Review of Advanced Air Mobility Platforms | |
Criollo et al. | Classification, military applications, and opportunities of unmanned aerial vehicles | |
Albrigtsen | The application of unmanned aerial vehicles for snow avalanche search and rescue | |
Ambrosia et al. | Unmanned airborne platforms for disaster remote sensing support | |
Castellanos-Sanabria et al. | UAV systems for multipurpose heterogeneous networks: A review of design, development and performance | |
Kurkcu et al. | US Unmanned aerial vehicles (UAVS) and network centric warfare (NCW): impacts on combat aviation tactics from Gulf War I Through 2007 Iraq | |
Lee | Expanded kill chain analysis of manned-unmanned teaming for future strike operations | |
Bahrami et al. | Passenger unmanned aerial vehicles: Prospects, design, requirements | |
Crickmore | Lockheed A-12: The CIA’s Blackbird and other variants | |
Schnurr | Military Scientific Research/Annual Report 2020 | |
Archontakis | Assessing the flight quality of a large UAV for sensors/ground robots aerial delivery | |
Srikumar | Unmanned aircraft systems: challenges and opportunities | |
Pleter | Navigation Optimisations |