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High-Precision Multi-Sensor Digital Surface Model Dataset Based on UAV and Satellite Data for Greenland Glacier Monitoring

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dc.contributor.authorJeong, Yongsik-
dc.contributor.authorKim, Hyun-cheol-
dc.date.accessioned2026-02-10T03:56:22Z-
dc.date.available2026-02-10T03:56:22Z-
dc.date.issued2025-12-
dc.identifier.urihttps://repository.kopri.re.kr/handle/201206/16589-
dc.description.abstractThis study presents a methodological framework for developing a high-precisiondigitalsurface model (DSM) dataset based on complementary unmanned aerialvehicle (UAV) light detection and ranging (LiDAR) and satellite-derived data for RussellGlacier terminus, Greenland. Field surveys were conducted across four annualcampaigns (2022-2025), acquiring UAV LiDAR data that were subsequently cross-referencedwith three satellite-derived DSMs, ASTER GDEM V3, WorldDEM, and Arctic-DEM Mosaic v4.1. Vertical rectification using inverse distance weighting interpolationwith six ground control points was applied to all datasets, achieving a remarkable94.1% improvement in accuracy, reducing mean root mean square error (RMSE) from19.05 to 1.12 m. WorldDEM demonstrated the most substantial improvement (98.6%reduction), while post-correction ArcticDEM achieved the highest accuracy (0.20 mRMSE). UAV LiDAR maintained centimeter-level precision (0.51 m RMSE). Spatiotemporalanalysis revealed significant morpho-dynamic changes, including proglaciallake expansion, moraine evolution, and surface elevation variations. Over 20 years(2000-2025), terminus-region elevation differences reached to 20 m. The verticalrectification methodology demonstrates the effectiveness of employing multi-sensordatasets derived from complementary platforms to overcome individual sensor limitations. This dataset supports glacier mass balance research, dynamics investigations,and climate change impact assessments. The dataset is publicly available through theKorea Polar Data Center (KPDC).en_US
dc.languageKoreanen_US
dc.subject.classification해당사항없음en_US
dc.titleHigh-Precision Multi-Sensor Digital Surface Model Dataset Based on UAV and Satellite Data for Greenland Glacier Monitoringen_US
dc.title.alternative그린란드 빙하 모니터링을 위한 다중 센서 UAV-위성 자료 기반 정밀 수치 표면 모델 데이터셋en_US
dc.typeArticleen_US
dc.identifier.bibliographicCitationJeong, Yongsik, Kim, Hyun-cheol. 2025. "High-Precision Multi-Sensor Digital Surface Model Dataset Based on UAV and Satellite Data for Greenland Glacier Monitoring". <em>GEO DATA</em>, 7(4): 241-249.-
dc.citation.titleGEO DATAen_US
dc.citation.volume7en_US
dc.citation.number4en_US
dc.identifier.doi10.22761/GD.2025.0059-
dc.citation.startPage241en_US
dc.citation.endPage249en_US
dc.description.articleClassificationKCI등재-
dc.description.jcrRateJCR 2023:0en_US
dc.subject.keywordGreenlanden_US
dc.subject.keywordRussell Glacieren_US
dc.subject.keywordDigital surface modelen_US
dc.subject.keywordUnmanned aerial vehicle LiDARen_US
dc.subject.keywordVertical correctionen_US
dc.identifier.localId2025-0273-
Appears in Collections  
2025-2025, 인공위성 및 무인기 다중센서 활용 그린란드 빙하 감소에 따른 식생 및 지형 변화 관측 연구 (25-25) / 김현철 (PN25080)
2025-2025, 북극 빙권변화 정량 분석을 위한 원격탐사 연구 (25-25) / 김현철 (PE25040)
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