Accuracy of UAV based data collection (case studies)
Balázsik, Valéria
Dr. Tóth, Zoltán
Orosz, Gábor Tamás
Petőné, Csuka Ildikó
2026-09-07T07:38:37Z
2026-09-07T07:38:37Z
2020
http://hdl.handle.net/20.500.14044/40339
Nowadays many new data acquisition
technologies have been appeared. Due to the
increasingly advanced digital devices, high resolution
cameras and utility of fast processing, Unmanned
Aerial Vehicles (UAV) have become a prominent
feature of the various remote sensing procedures. In
the past, UAVs were only available for military
purposes but over the last decade the ‘drone’
equipment has become easily accessible to everybody.
While in the past photogrammetry was only used by
qualified professionals, it is now applied successfully in
many fields. Even though UAVs are widespread in
surveying practice too, the related accuracy issues are
not determined regularly. The manufacturing
companies may calibrate the instruments of the device
one by one, e.g. camera, GNSS receiver, in which way
the nominal precision of an UAV, as an integrated
system can be derived considering the error
propagation law. However, in the practice the actual
precision may notably differ from the nominal one,
caused by different internal and external effects, such
the flying stability of the device (platform), weather
conditions, features of the observation object, etc.
Because the benefits of the technology may justify the
use of data in topographic mapping, cadastral
mapping or even engineering geodesy, we have
conducted studies to determine the accuracy that can
be achieved using UAV as an integrated data
acquisition tool. First, we developed a test field in rural
area for investigations. The results of the test flights
conducted there were determined that what conditions
influence the accuracy of the survey. In addition,
cadastral measurements were performed in the
populated area using UAV and GNSS technologies and
the results were compared with digital cadastral map
data. Investigating the feasibility of engineering
geodetic applications, we have performed an artificial
surface survey using UAV technology. The results and
conclusions of these studies are presented in this
article.
hu_HU
Nowadays many new data acquisition
technologies have been appeared. Due to the
increasingly advanced digital devices, high resolution
cameras and utility of fast processing, Unmanned
Aerial Vehicles (UAV) have become a prominent
feature of the various remote sensing procedures. In
the past, UAVs were only available for military
purposes but over the last decade the ‘drone’
equipment has become easily accessible to everybody.
While in the past photogrammetry was only used by
qualified professionals, it is now applied successfully in
many fields. Even though UAVs are widespread in
surveying practice too, the related accuracy issues are
not determined regularly. The manufacturing
companies may calibrate the instruments of the device
one by one, e.g. camera, GNSS receiver, in which way
the nominal precision of an UAV, as an integrated
system can be derived considering the error
propagation law. However, in the practice the actual
precision may notably differ from the nominal one,
caused by different internal and external effects, such
the flying stability of the device (platform), weather
conditions, features of the observation object, etc.
Because the benefits of the technology may justify the
use of data in topographic mapping, cadastral
mapping or even engineering geodesy, we have
conducted studies to determine the accuracy that can
be achieved using UAV as an integrated data
acquisition tool. First, we developed a test field in rural
area for investigations. The results of the test flights
conducted there were determined that what conditions
influence the accuracy of the survey. In addition,
cadastral measurements were performed in the
populated area using UAV and GNSS technologies and
the results were compared with digital cadastral map
data. Investigating the feasibility of engineering
geodetic applications, we have performed an artificial
surface survey using UAV technology. The results and
conclusions of these studies are presented in this
article.
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dc.format
pdf
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en
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Accuracy of UAV based data collection (case studies)
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Open access
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Óbudai Egyetem
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2020. November 12.
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Székesfehérvár
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Alba Regia Műszaki Kar
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Óbudai Egyetem
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Műszaki tudományok - közlekedés- és járműtudományok
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uav
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data collection
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receiver
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technology
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vehicle
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Konferenciaközlemény
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AIS 2020 15th International Symposium on Applied Informatics and Related Areas organized in the frame of Hungarian Science Festival 2020 by Óbuda University Proceedings
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local.tempfieldCollections
Könyvrészletek
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8.
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Kiadói változat
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4 p.
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AIS 2020 15th International Symposium on Applied Informatics and Related Areas organized in the frame of Hungarian Science Festival 2020 by Óbuda University