Applications of Unmanned Aerial Vehicles in Cryosphere: Latest Advances and Prospects

Owing to usual logistic hardships related to field-based cryospheric research, remote sensing has played a significant role in understanding the frozen components of the Earth system. Conventional spaceborne or airborne remote sensing platforms have their own merits and limitations. Unmanned aerial...

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Published in:Remote Sensing
Main Authors: Clare Gaffey, Anshuman Bhardwaj
Format: Text
Language:English
Published: Multidisciplinary Digital Publishing Institute 2020
Subjects:
Online Access:https://doi.org/10.3390/rs12060948
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author Clare Gaffey
Anshuman Bhardwaj
author_facet Clare Gaffey
Anshuman Bhardwaj
author_sort Clare Gaffey
collection MDPI Open Access Publishing
container_issue 6
container_start_page 948
container_title Remote Sensing
container_volume 12
description Owing to usual logistic hardships related to field-based cryospheric research, remote sensing has played a significant role in understanding the frozen components of the Earth system. Conventional spaceborne or airborne remote sensing platforms have their own merits and limitations. Unmanned aerial vehicles (UAVs) have emerged as a viable and inexpensive option for studying the cryospheric components at unprecedented spatiotemporal resolutions. UAVs are adaptable to various cryospheric research needs in terms of providing flexibility with data acquisition windows, revisits, data/sensor types (multispectral, hyperspectral, microwave, thermal/night imaging, Light Detection and Ranging (LiDAR), and photogrammetric stereos), viewing angles, flying altitudes, and overlap dimensions. Thus, UAVs have the potential to act as a bridging remote sensing platform between spatially discrete in situ observations and spatially continuous but coarser and costlier spaceborne or conventional airborne remote sensing. In recent years, a number of studies using UAVs for cryospheric research have been published. However, a holistic review discussing the methodological advancements, hardware and software improvements, results, and future prospects of such cryospheric studies is completely missing. In the present scenario of rapidly changing global and regional climate, studying cryospheric changes using UAVs is bound to gain further momentum and future studies will benefit from a balanced review on this topic. Our review covers the most recent applications of UAVs within glaciology, snow, permafrost, and polar research to support the continued development of high-resolution investigations of cryosphere. We also analyze the UAV and sensor hardware, and data acquisition and processing software in terms of popularity for cryospheric applications and revisit the existing UAV flying regulations in cold regions of the world. The recent usage of UAVs outlined in 103 case studies provide expertise that future investigators should base ...
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spelling ftmdpi:oai:mdpi.com:/2072-4292/12/6/948/ 2025-01-16T20:43:57+00:00 Applications of Unmanned Aerial Vehicles in Cryosphere: Latest Advances and Prospects Clare Gaffey Anshuman Bhardwaj agris 2020-03-15 application/pdf https://doi.org/10.3390/rs12060948 EN eng Multidisciplinary Digital Publishing Institute Remote Sensing in Geology, Geomorphology and Hydrology https://dx.doi.org/10.3390/rs12060948 https://creativecommons.org/licenses/by/4.0/ Remote Sensing; Volume 12; Issue 6; Pages: 948 UAV unmanned aerial systems (UAS) drone cryosphere arctic polar remote sensing Text 2020 ftmdpi https://doi.org/10.3390/rs12060948 2023-07-31T23:14:30Z Owing to usual logistic hardships related to field-based cryospheric research, remote sensing has played a significant role in understanding the frozen components of the Earth system. Conventional spaceborne or airborne remote sensing platforms have their own merits and limitations. Unmanned aerial vehicles (UAVs) have emerged as a viable and inexpensive option for studying the cryospheric components at unprecedented spatiotemporal resolutions. UAVs are adaptable to various cryospheric research needs in terms of providing flexibility with data acquisition windows, revisits, data/sensor types (multispectral, hyperspectral, microwave, thermal/night imaging, Light Detection and Ranging (LiDAR), and photogrammetric stereos), viewing angles, flying altitudes, and overlap dimensions. Thus, UAVs have the potential to act as a bridging remote sensing platform between spatially discrete in situ observations and spatially continuous but coarser and costlier spaceborne or conventional airborne remote sensing. In recent years, a number of studies using UAVs for cryospheric research have been published. However, a holistic review discussing the methodological advancements, hardware and software improvements, results, and future prospects of such cryospheric studies is completely missing. In the present scenario of rapidly changing global and regional climate, studying cryospheric changes using UAVs is bound to gain further momentum and future studies will benefit from a balanced review on this topic. Our review covers the most recent applications of UAVs within glaciology, snow, permafrost, and polar research to support the continued development of high-resolution investigations of cryosphere. We also analyze the UAV and sensor hardware, and data acquisition and processing software in terms of popularity for cryospheric applications and revisit the existing UAV flying regulations in cold regions of the world. The recent usage of UAVs outlined in 103 case studies provide expertise that future investigators should base ... Text Arctic permafrost MDPI Open Access Publishing Arctic Remote Sensing 12 6 948
spellingShingle UAV
unmanned aerial systems (UAS)
drone
cryosphere
arctic
polar
remote sensing
Clare Gaffey
Anshuman Bhardwaj
Applications of Unmanned Aerial Vehicles in Cryosphere: Latest Advances and Prospects
title Applications of Unmanned Aerial Vehicles in Cryosphere: Latest Advances and Prospects
title_full Applications of Unmanned Aerial Vehicles in Cryosphere: Latest Advances and Prospects
title_fullStr Applications of Unmanned Aerial Vehicles in Cryosphere: Latest Advances and Prospects
title_full_unstemmed Applications of Unmanned Aerial Vehicles in Cryosphere: Latest Advances and Prospects
title_short Applications of Unmanned Aerial Vehicles in Cryosphere: Latest Advances and Prospects
title_sort applications of unmanned aerial vehicles in cryosphere: latest advances and prospects
topic UAV
unmanned aerial systems (UAS)
drone
cryosphere
arctic
polar
remote sensing
topic_facet UAV
unmanned aerial systems (UAS)
drone
cryosphere
arctic
polar
remote sensing
url https://doi.org/10.3390/rs12060948