On the Use of Unmanned Aerial Systems for Environmental Monitoring
Использование беспилотных авиационных систем для экологического мониторинга
2018-04-20
SCID: 54.1/q8chkwar
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UAS-mounted sensorsUnmanned Aerial Systems (UAS)environmental monitoringremote sensing bridging field and satellite observationssensing protocols and retrieval algorithms
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Abstract (AI)
Environmental monitoring plays a central role in diagnosing climate and management impacts on natural and agricultural systems; enhancing the understanding of hydrological processes; optimizing the allocation and distribution of water resources; and assessing, forecasting, and even preventing natural disasters. Nowadays, most monitoring and data collection systems are based upon a combination of ground-based measurements, manned airborne sensors, and satellite observations. These data are utilized in describing both small- and large-scale processes, but have spatiotemporal constraints inherent to each respective collection system. Bridging the unique spatial and temporal divides that limit current monitoring platforms is key to improving our understanding of environmental systems. In this context, Unmanned Aerial Systems (UAS) have considerable potential to radically improve environmental monitoring. UAS-mounted sensors offer an extraordinary opportunity to bridge the existing gap between field observations and traditional air- and space-borne remote sensing, by providing high spatial detail over relatively large areas in a cost-effective way and an entirely new capacity for enhanced temporal retrieval. As well as showcasing recent advances in the field, there is also a need to identify and understand the potential limitations of UAS technology. For these platforms to reach their monitoring potential, a wide spectrum of unresolved issues and application-specific challenges require focused community attention. Indeed, to leverage the full potential of UAS-based approaches, sensing technologies, measurement protocols, postprocessing techniques, retrieval algorithms, and evaluation techniques need to be harmonized. The aim of this paper is to provide an overview of the existing research and applications of UAS in natural and agricultural ecosystem monitoring in order to identify future directions, applications, developments, and challenges.
Key Findings
1
Realizing UAS potential requires addressing unresolved issues across sensing technologies, measurement protocols, postprocessing, retrieval algorithms, and evaluation techniques.
2
The paper synthesizes existing UAS research and applications in natural and agricultural ecosystem monitoring to identify future directions and developments.
3
There are application-specific limitations and challenges of UAS technology that must be identified and understood before widespread monitoring adoption.
4
UAS offer a cost-effective means to increase temporal retrieval frequency, enhancing environmental monitoring capabilities compared to traditional platforms.
5
Unmanned Aerial Systems (UAS) can bridge spatial and temporal gaps between ground, manned airborne, and satellite monitoring by providing high spatial detail over relatively large areas.
Research Object
Unmanned Aerial Systems (UAS) used for environmental monitoring of natural and agricultural ecosystems
Research Subject
The capability, applications, limitations, and requirements of UAS-mounted sensors and associated methods (sensing technologies, measurement protocols, postprocessing, retrieval and evaluation techniques) to bridge spatiotemporal gaps and improve environmental monitoring
Publication Details
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2018-04-20
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