Classification of Atlantic Coastal Sand Dune Vegetation Using In Situ, UAV, and Airborne Hyperspectral Data

被引:30
作者
Laporte-Fauret, Quentin [1 ]
Lubac, Bertrand [1 ]
Castelle, Bruno [1 ]
Michalet, Richard [1 ]
Marieu, Vincent [1 ]
Bombrun, Lionel [2 ]
Launeau, Patrick [3 ]
Giraud, Manuel [3 ]
Normandin, Cassandra [1 ]
Rosebery, David [4 ]
机构
[1] Univ Bordeaux, CNRS, UMR EPOC 5805, Allee Geoffroy St Hilaire, F-33615 Pessac, France
[2] Univ Bordeaux, Cours Liberat, CNRS, UMR IMS 5218, F-33405 Talence, France
[3] Univ Nantes, CNRS, UMR LPG 6112, Rue Houssiniere, F-42322 Nantes, France
[4] Off Natl Forets, 9 Rue R Manaud, F-33524 Brugge, France
关键词
airborne hyperspectral; coastal dune vegetation; end-member spectral library; pixel-based supervised classification; Random Forest; stability index; INVASIVE GRASSES; BEACH; FOREDUNE; WINTER; WAVE; RECOVERY; EUROPE; NDVI;
D O I
10.3390/rs12142222
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Mapping coastal dune vegetation is critical to understand dune mobility and resilience in the context of climate change, sea level rise, and increased anthropogenic pressure. However, the identification of plant species from remotely sensed data is tedious and limited to broad vegetation communities, while such environments are dominated by fragmented and small-scale landscape patterns. In June 2019, a comprehensive multi-scale survey including unmanned aerial vehicle (UAV), hyperspectral ground, and airborne data was conducted along approximately 20 km of a coastal dune system in southwest France. The objective was to generate an accurate mapping of the main sediment and plant species ground cover types in order to characterize the spatial distribution of coastal dune stability patterns. Field and UAV data were used to assess the quality of airborne data and generate a robust end-member spectral library. Next, a two-step classification approach, based on the normalized difference vegetation index and Random Forest classifier, was developed. Results show high performances with an overall accuracy of 100% and 92.5% for sand and vegetation ground cover types, respectively. Finally, a coastal dune stability index was computed across the entire study site. Different stability patterns were clearly identified along the coast, highlighting for the first time the high potential of this methodology to support coastal dune management.
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页数:25
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