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[IEEE IGARSS 2018 - 2018 IEEE International Geoscience and Remote Sensing Symposium - Valencia (2018.7.22-2018.7.27)] IGARSS 2018 - 2018 IEEE International Geoscience and Remote Sensing Symposium - Towards Joint Land Cover and Crop Type Mapping with Numerous Classes

DOI:10.1109/igarss.2018.8517473 出版年份:2018 更新时间:2025-09-23 15:23:52
摘要: The detailed, accurate and frequent land cover and crop-type mapping emerge as essential for several scientific communities and geospatial applications. This paper presents a methodology for the semi-automatic production of land cover and crop type maps using a highly analytic nomenclature of more than 40 classes. An intensive manual annotation procedure was carried out for the production of reference data. A class nomenclature based on CORINE land cover Level-3 was employed along with several additional crop-type classes. Multitemporal surface reflectance Landsat-8 data for the year of 2016 were used for all classification experiments with a linear SVM classifier. Quantitative and qualitative evaluation highlighted the efficiency of the proposed approach achieving high accuracy rates. Further analysis on individual classes’ performance highlighted the challenges in the proposed classification scheme as well as important outcomes regarding the spectral behavior of the considered categories.
作者: Christina Karakizi,Georgia Antoniou,Konstantinos Karantzalos
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To develop a semi-automatic methodology for joint land cover and crop type mapping with a highly detailed nomenclature of over 40 classes using multitemporal Landsat-8 data and SVM classification.

The proposed semi-automatic methodology using SVM and multitemporal Landsat-8 data achieved high accuracy (OA 91.2%, kappa 90.6%) for joint land cover and crop type mapping with 47 classes. Water-related and single crop sub-type classes showed very high accuracy, while mixed and heterogeneous classes had lower performance. The approach is efficient but benefits from higher resolution data for improved results in complex areas.

The classification accuracy was lower for mixed classes (e.g., urban green, mixed forest) and heterogeneous crop types due to the 30m spatial resolution of Landsat-8 data, which may not fully resolve fine details. Future work could use higher resolution data like Sentinel-2 and apply the methodology to more study areas.

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