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An object-based multisensoral Approach for the Derivation of urban Land Use Structures in the City of Rostock, Germany

机译:基于对象的多传感器方法推导德国罗斯托克市的城市土地利用结构

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The present work is part of the Enviland-2 research project, which investigates the synergism between radar- and optical satellite data for ENVIronment and LAND use applications. The urban work package of Enviland aims at the combined analysis of RapidEye and TerraSAR-X data for the parameterization of different urban land use structures.This study focuses on the development of a transferable, object-based rule set for the derivation of urban land use structures at block level. The data base consists of RapidEye and TerraSAR-X imagery, as well as height information of a LiDAR nDSM (normalized Digital Surface Model) and object boundaries of ATKIS (Official Topographic Cartographic Information System) vector data for a study area in the city of Rostock, Germany.The classification of various land cover units forms the basis of the analysis. Therefore, an object-based land cover classification is implemented that uses feature level fusion to combine the information of all available input data. Besides spectral values also shape and context features are employed to characterize and extract specific land cover objects as indicators for the prevalent land use. The different land use structures are then determined by typical combinations and constellations of the extracted land use indicators and land cover proportions. Accuracy assessment is done by utilizing the available ATKIS information.From this analysis the land use structure classes residential, industrial/commercial, other built-up, allotments, sports facility, forest, grassland, other green spaces, squares/parking areas and water are distinguished with an overall accuracy of 63.2 %.
机译:目前的工作是Enviland-2研究项目的一部分,该项目研究了用于环境和LAND使用应用的雷达和光学卫星数据之间的协同作用。 Enviland的城市工作包旨在结合RapidEye和TerraSAR-X数据进行分析,以对不同的城市土地利用结构进行参数化设置。本研究的重点是开发可转让的,基于对象的城市土地利用推导规则集块级别的结构。该数据库由RapidEye和TerraSAR-X图像以及LiDAR nDSM(归一化数字表面模型)的高度信息和ATKIS(官方地形图信息系统)矢量数据的对象边界组成,用于罗斯托克市的研究区域德国。各种土地覆盖单位的分类构成了分析的基础。因此,实现了基于对象的土地覆盖分类,该分类使用特征级别融合来组合所有可用输入数据的信息。除光谱值外,还采用形状和背景特征来表征和提取特定的土地覆盖物,作为普遍土地利用的指标。然后,通过提取的土地利用指标和土地覆盖比例的典型组合和星座图来确定不同的土地利用结构。通过利用可用的ATKIS信息进行准确性评估。根据这种分析,土地使用结构类别包括住宅,工业/商业,其他建筑物,分配地,体育设施,森林,草地,其他绿地,广场/停车场和水。总体精度为63.2%。

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