Remote sensing of the environment with small unmanned aircraft systems (UASs), part 2: scientific and commercial applications
@inproceedings{Whitehead2014RemoteSO, title={Remote sensing of the environment with small unmanned aircraft systems (UASs), part 2: scientific and commercial applications}, author={Ken Whitehead and Chris H. Hugenholtz and Stephen Myshak and Owen W. Brown and Adam LeClair and Aaron Tamminga and Thomas E. Barchyn and Brian J. Moorman and B. C. Eaton}, year={2014} }
Small unmanned aircraft systems (UASs) are often suited to applications where the cost, resolution, and (or) operational inflexibility of conventional remote sensing plat- forms is limiting. Remote sensing with small UASs is still relatively new, and there is limited understanding of how the data are acquired and used for scientific purposes and decision making. This paper provides practical guidance about the opportunities and limitations of small UAS-based remote sensing by highlighting a…
170 Citations
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66 References
Remote sensing of the environment with small unmanned aircraft systems (UASs), part 1: a review of progress and challenges1
- Environmental Science, Mathematics
- 2014
The recent development and proliferation of unmanned aircraft systems (UASs) has made it possible to examine environmental processes and changes occurring at spatial and temporal scales that would be…
Small unmanned aircraft systems for remote sensing and Earth science research
- Environmental Science, Mathematics
- 2012
An emerging technology comprising unmanned aircraft systems (UAS), also known as unmanned aerial vehicles (UAV), is poised to offer a viable alternative to conventional platforms for acquiring high-resolution remote sensing data with increased operational flexibility, lower cost, and greater versatility.
Unmanned Aircraft Systems in Remote Sensing and Scientific Research: Classification and Considerations of Use
- Environmental ScienceRemote. Sens.
- 2012
A variety of platforms, as well as sensor capabilities, are described and advantages of each are identified as relevant to the demands of users in the scientific research sector.
Small-Scale Unmanned Aerial Vehicles in Environmental Remote Sensing: Challenges and Opportunities
- Environmental Science
- 2011
Although potential applications abound, small-scale unmanned aerial vehicles have not yet been widely used for environmental remote sensing. Several challenges remain to be overcome until widespread…
Wildlife research and management methods in the 21st century: Where do unmanned aircraft fit in?1
- Environmental Science
- 2015
Since the turn of the century, emerging unmanned aircraft systems (UAS) have found increasingly diverse applications in wildlife science as convenient, very high-resolution remote sensing devices.…
An Assessment of Small Unmanned Aerial Vehicles for Wildlife Research
- Environmental Science
- 2006
For small UAVs to be useful as management or research tools, they should be durable, modular, electric powered, launchable and recoverable in rugged terrain, autonomously controllable, operable with minimal training, and collect georeferenced imagery.
Unmanned Aerial Vehicles (UAVs) for Surveying Marine Fauna: A Dugong Case Study
- Environmental SciencePloS one
- 2013
The results suggest that UAV systems may not be limited by sea state conditions in the same manner as sightings from manned surveys, and the overlap between images proved valuable for detecting animals that were masked by sun glitter in the corners of images, and identifying animals initially captured at awkward body angles.
Hyperspatial Remote Sensing of Channel Reach Morphology and Hydraulic Fish Habitat Using an Unmanned Aerial Vehicle (UAV): A First Assessment in the Context of River Research and Management
- Environmental Science, Mathematics
- 2015
In this paper, we assess the capabilities of an unmanned/uninhabited aerial vehicle (UAV) to characterize the channel morphology and hydraulic habitat of a 1‐km reach of the Elbow River, Alberta,…
Geomorphological mapping with a small unmanned aircraft system (sUAS): Feature detection and accuracy assessment of a photogrammetrically-derived digital terrain model
- Environmental Science, Mathematics
- 2013
Acquisition, orthorectification, and object-based classification of unmanned aerial vehicle (UAV) imagery for rangeland monitoring.
- Environmental Science, Mathematics
- 2010
The use of unmanned aerial vehicles (UAVs) for natural resource applications has increased considerably in recent years due to their greater availability, the miniaturization of sensors, and the…