Accuracy Investigation of Creating Orthophotomaps Based on Images Obtained by Applying Trimble-UX5 UAV

The main purpose of this work is to confirm the possibility of making largescale orthophotomaps applying unmanned aerial vehicle (UAV) Trimble- UX5. A planned altitude reference of the studying territory was carried out before to the aerial surveying. The studying territory has been marked with dist...

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Main Authors: Hlotov Volodymyr, Hunina Alla, Siejka Zbigniew
Format: Article
Language:English
Published: Sciendo 2017-06-01
Series:Reports on Geodesy and Geoinformatics
Subjects:
Online Access:https://doi.org/10.1515/rgg-2017-0009
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spelling doaj-255c939b20aa4972b9738bbe561cde932021-09-05T14:00:16ZengSciendoReports on Geodesy and Geoinformatics2391-81522017-06-01103110611810.1515/rgg-2017-0009rgg-2017-0009Accuracy Investigation of Creating Orthophotomaps Based on Images Obtained by Applying Trimble-UX5 UAVHlotov Volodymyr0Hunina Alla1Siejka Zbigniew2Department of Photogrammetry and Geoinformatics, National University Lviv Polytechnic, Institute of Geodesy, Karpinski St. 6, 79013 Lviv, UkraineDepartment of Photogrammetry and Geoinformatics, National University Lviv Polytechnic, Institute of Geodesy, Karpinski St. 6, 79013 Lviv, UkraineDepartment of Geodesy, University of Agriculture in Krakow, Balicka St. 253a, 30-198 Krakow, PolandThe main purpose of this work is to confirm the possibility of making largescale orthophotomaps applying unmanned aerial vehicle (UAV) Trimble- UX5. A planned altitude reference of the studying territory was carried out before to the aerial surveying. The studying territory has been marked with distinctive checkpoints in the form of triangles (0.5 × 0.5 × 0.2 m). The checkpoints used to precise the accuracy of orthophotomap have been marked with similar triangles. To determine marked reference point coordinates and check-points method of GNSS in real-time kinematics (RTK) measuring has been applied. Projecting of aerial surveying has been done with the help of installed Trimble Access Aerial Imaging, having been used to run out the UX5. Aerial survey out of the Trimble UX5 UAV has been done with the help of the digital camera SONY NEX-5R from 200m and 300 m altitude. These aerial surveying data have been calculated applying special photogrammetric software Pix 4D. The orthophotomap of the surveying objects has been made with its help. To determine the precise accuracy of the got results of aerial surveying the checkpoint coordinates according to the orthophotomap have been set. The average square error has been calculated according to the set coordinates applying GNSS measurements. A-priori accuracy estimation of spatial coordinates of the studying territory using the aerial surveying data have been calculated: mx=0.11 m, my=0.15 m, mz=0.23 m in the village of Remeniv and mx=0.26 m, my=0.38 m, mz=0.43 m in the town of Vynnyky. The accuracy of determining checkpoint coordinates has been investigated using images obtained out of UAV and the average square error of the reference points. Based on comparative analysis of the got results of the accuracy estimation of the made orthophotomap it can be concluded that the value the average square error does not exceed a-priori accuracy estimation. The possibility of applying Trimble UX5 UAV for making large-scale orthophotomaps has been investigated. The aerial surveying output data using UAV can be applied for monitoring potentially dangerous for people objects, the state border controlling, checking out the plots of settlements. Thus, it is important to control the accuracy the got results. Having based on the done analysis and experimental researches it can be concluded that applying UAV gives the possibility to find data more efficiently in comparison with the land surveying methods. As the result, the Trimble UX5 UAV gives the possibility to survey built-up territories with the required accuracy for making orthophotomaps with the following scales 1: 2000, 1: 1000, 1: 500.https://doi.org/10.1515/rgg-2017-0009unmanned aerial vehicleaerial surveydigital cameraorthophotomapplanned altitude reference
collection DOAJ
language English
format Article
sources DOAJ
author Hlotov Volodymyr
Hunina Alla
Siejka Zbigniew
spellingShingle Hlotov Volodymyr
Hunina Alla
Siejka Zbigniew
Accuracy Investigation of Creating Orthophotomaps Based on Images Obtained by Applying Trimble-UX5 UAV
Reports on Geodesy and Geoinformatics
unmanned aerial vehicle
aerial survey
digital camera
orthophotomap
planned altitude reference
author_facet Hlotov Volodymyr
Hunina Alla
Siejka Zbigniew
author_sort Hlotov Volodymyr
title Accuracy Investigation of Creating Orthophotomaps Based on Images Obtained by Applying Trimble-UX5 UAV
title_short Accuracy Investigation of Creating Orthophotomaps Based on Images Obtained by Applying Trimble-UX5 UAV
title_full Accuracy Investigation of Creating Orthophotomaps Based on Images Obtained by Applying Trimble-UX5 UAV
title_fullStr Accuracy Investigation of Creating Orthophotomaps Based on Images Obtained by Applying Trimble-UX5 UAV
title_full_unstemmed Accuracy Investigation of Creating Orthophotomaps Based on Images Obtained by Applying Trimble-UX5 UAV
title_sort accuracy investigation of creating orthophotomaps based on images obtained by applying trimble-ux5 uav
publisher Sciendo
series Reports on Geodesy and Geoinformatics
issn 2391-8152
publishDate 2017-06-01
description The main purpose of this work is to confirm the possibility of making largescale orthophotomaps applying unmanned aerial vehicle (UAV) Trimble- UX5. A planned altitude reference of the studying territory was carried out before to the aerial surveying. The studying territory has been marked with distinctive checkpoints in the form of triangles (0.5 × 0.5 × 0.2 m). The checkpoints used to precise the accuracy of orthophotomap have been marked with similar triangles. To determine marked reference point coordinates and check-points method of GNSS in real-time kinematics (RTK) measuring has been applied. Projecting of aerial surveying has been done with the help of installed Trimble Access Aerial Imaging, having been used to run out the UX5. Aerial survey out of the Trimble UX5 UAV has been done with the help of the digital camera SONY NEX-5R from 200m and 300 m altitude. These aerial surveying data have been calculated applying special photogrammetric software Pix 4D. The orthophotomap of the surveying objects has been made with its help. To determine the precise accuracy of the got results of aerial surveying the checkpoint coordinates according to the orthophotomap have been set. The average square error has been calculated according to the set coordinates applying GNSS measurements. A-priori accuracy estimation of spatial coordinates of the studying territory using the aerial surveying data have been calculated: mx=0.11 m, my=0.15 m, mz=0.23 m in the village of Remeniv and mx=0.26 m, my=0.38 m, mz=0.43 m in the town of Vynnyky. The accuracy of determining checkpoint coordinates has been investigated using images obtained out of UAV and the average square error of the reference points. Based on comparative analysis of the got results of the accuracy estimation of the made orthophotomap it can be concluded that the value the average square error does not exceed a-priori accuracy estimation. The possibility of applying Trimble UX5 UAV for making large-scale orthophotomaps has been investigated. The aerial surveying output data using UAV can be applied for monitoring potentially dangerous for people objects, the state border controlling, checking out the plots of settlements. Thus, it is important to control the accuracy the got results. Having based on the done analysis and experimental researches it can be concluded that applying UAV gives the possibility to find data more efficiently in comparison with the land surveying methods. As the result, the Trimble UX5 UAV gives the possibility to survey built-up territories with the required accuracy for making orthophotomaps with the following scales 1: 2000, 1: 1000, 1: 500.
topic unmanned aerial vehicle
aerial survey
digital camera
orthophotomap
planned altitude reference
url https://doi.org/10.1515/rgg-2017-0009
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AT huninaalla accuracyinvestigationofcreatingorthophotomapsbasedonimagesobtainedbyapplyingtrimbleux5uav
AT siejkazbigniew accuracyinvestigationofcreatingorthophotomapsbasedonimagesobtainedbyapplyingtrimbleux5uav
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