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Impact of UAV-Derived RTK/PPK Products on Geometric Correction of VHR Satellite Imagery

dc.contributor.authorAtik, Muhammed Enes
dc.contributor.authorArkali, Mehmet
dc.contributor.authorAtik, Saziye Ozge
dc.contributor.ituauthorAtik, Muhammed Enes
dc.date.accessioned2026-01-26T06:52:17Z
dc.date.issued2025-04-09
dc.description.abstractSatellite imagery is a widely used source of spatial information in many applications, such as land use/land cover, object detection, agricultural monitoring, and urban area monitoring. Numerous factors, including projection, tilt angle, scanner, atmospheric conditions, terrain curvature, and fluctuations, can cause satellite images to become distorted. Eliminating systematic errors caused by the sensor and platform is a crucial step to obtaining reliable information from satellite images. To utilize satellite images directly in applications requiring high accuracy, the errors in the images should be removed by geometric correction. In this study, geometric correction was applied to the Pléiades 1A (PHR) image using non-parametric methods, and the effects of different transformation models and digital elevation models (DEMs) were investigated. Ground control points (GCPs) were obtained from orthophotos created by the photogrammetric method using precise positioning. The effect of photogrammetric DEMs with various spatial resolutions on geometric correction was investigated. Additionally, the effect of DEMs obtained using the photogrammetric method was compared with those from open-source DEMs, including SRTM, ASTER GDEM, COP30, AW3D30, and NASADEM. Two-dimensional polynomial transformation, the thin plate spline (TPS), and the rational function model (RFM) were applied as transformation methods. Our results showed that a higher-accuracy geometric correction process could be achieved with orthophotos and DEMs created using precise positioning techniques such as RTK and PPK. According to the results obtained, an RMSE of 0.633 m was achieved with RFM using RTK-DEM, while an RMSE of 0.615 m was achieved with RFM using PPK-DEM.
dc.description.urihttps://doi.org/10.3390/drones9040291
dc.description.urihttps://doaj.org/article/cb8dbb7cbf934ccf8646025827a7b97a
dc.identifier.doi10.3390/drones9040291
dc.identifier.eissn2504-446X
dc.identifier.openairedoi_dedup___::f25b16ae0058cb044caf2f2a4df79f67
dc.identifier.orcid0000-0003-2273-7751
dc.identifier.orcid0000-0001-9745-9309
dc.identifier.orcid0000-0003-2876-040x
dc.identifier.startpage291
dc.identifier.urihttps://hdl.handle.net/11527/63187
dc.identifier.volume9
dc.language.isoeng
dc.publisherMDPI AG
dc.relation.ispartofDrones
dc.rightsOPEN
dc.subjectremote sensing
dc.subjectUAV
dc.subjectsatellite image
dc.subjectDEM
dc.subjectTL1-4050
dc.subjectgeometric correction
dc.subjectphotogrammetry
dc.subjectMotor vehicles. Aeronautics. Astronautics
dc.titleImpact of UAV-Derived RTK/PPK Products on Geometric Correction of VHR Satellite Imagery
dc.typeArticle
dspace.entity.typePublication
person.identifier.orcid0000-0003-2273-7751

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