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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Terrain objects, their dynamics and their monitoring by the integration of GIS and remote sensing
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Terrain objects, their dynamics and their monitoring by the integration of GIS and remote sensing

机译:地理信息系统和遥感技术的集成,地形对象,它们的动力学及其监视

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摘要

Geometrical and thematic data about terrain objects stored in a geographical information system (GIS) can be kept up-to-date by using remote sensing (RS) data. Geometrical and thematic data can be extracted from the RS data by segmentation and classification techniques respectively. The possibilities and reliability of the information extraction from RS data can be improved by the use of ancillary data and knowledge about the terrain objects. Object classification and aggregation hierarchies can be used to describe relationships between terrain objects; the categorization of the different types of terrain object dynamics that is presented will be based partly on these hierarchical relationships. Object models will be applied in a case study in which both the field geometry (field boundaries) and the crop type of agricultural fields are updated from a Landsat TM image. For that purpose, a three-stage strategy has been developed. In the first stage, the results of an edge detection procedure are integrated with fixed geometrical data already contained in the GIS by using knowledge about the aggregation structure and shape of the fields. In the next stage, the crop type of the fields is determined by means of object-based classification. Finally, conditional merging is performed to solve the problem of oversegmentation. The resulting field geometry was found to agree for 87% with the field geometry as determined by a photo-interpreter.
机译:可以通过使用遥感(RS)数据来保持有关存储在地理信息系统(GIS)中的地形对象的几何和主题数据。可以分别通过分段和分类技术从RS数据中提取几何和主题数据。通过使用辅助数据和有关地形对象的知识,可以提高从RS数据提取信息的可能性和可靠性。对象分类和聚合层次结构可用于描述地形对象之间的关系。呈现的不同类型的地形对象动力学的分类将部分基于这些层次关系。对象模型将用于案例研究中,该领域将从Landsat TM图像更新田间几何形状(田间边界)和农田的作物类型。为此,制定了三阶段战略。在第一阶段,通过使用有关聚集结构和场形的知识,将边缘检测过程的结果与GIS中已包含的固定几何数据集成在一起。在下一阶段,通过基于对象的分类来确定田地的作物类型。最后,进行条件合并以解决分割过多的问题。发现所得的场几何形状与由光解译器确定的场几何形状一致为87%。

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