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OBJECT-BASED CHANGE DETECTION USING HIGH-RESOLUTION REMOTELY SENSED DATA AND GIS

机译:基于对象的变更检测使用高分辨率远程感测数据和GIS

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High resolution remotely sensed images provide current, detailed, and accurate information for large areas of the earth surface which can be used for change detection analyses. Conventional methods of image processing permit detection of changes by comparing remotely sensed multitemporal images. However, for performing a successful analysis it is desirable to take images from the same sensor which should be acquired at the same time of season, at the same time of a day, and - for electro-optical sensors - in cloudless conditions. Thus, a change detection analysis could be problematic especially for sudden catastrophic events. A promising alternative is the use of vector-based maps containing information about the original urban layout which can be related to a single image obtained after the catastrophe. The paper describes a methodology for an object-based search of destroyed buildings as a consequence of a natural or man-made catastrophe (e.g., earthquakes, flooding, civil war). The analysis is based on remotely sensed and vector GIS data. It includes three main steps: (i) generation of features describing the state of buildings; (ii) classification of building conditions; and (iii) data import into a GIS. One of the proposed features is a newly developed 'Detected Part of Contour' (DPC). Additionally, several features based on the analysis of textural information corresponding to the investigated vector objects are calculated. The method is applied to remotely sensed images of areas that have been subjected to an earthquake. The results show the high reliability of the DPC feature as an indicator for change.
机译:高分辨率远程感测图像提供了可用于改变检测分析的地球表面的大面积的电流,详细和准确的信息。通过比较远程感测的多模天图像,常规图像处理方法允许检测改变。然而,为了执行成功的分析,希望从同一时间的同一传感器中拍摄相同的传感器,同时在一天的同时进行,并且 - 用于电光传感器 - 在无云条件下。因此,对于突然的灾难性事件,改变检测分析可能是有问题的。有希望的替代方案是使用基于矢量的地图,其中包含有关原始城市布局的信息的地图,其可以与在灾难之后获得的单个图像相关。本文描述了一种基于物体的基于物体搜索的方法,作为自然或人为灾难(例如地震,洪水,内战)的后果。分析基于远程感测和载体GIS数据。它包括三个主要步骤:(i)生成描述建筑物状态的特征; (ii)建筑条件的分类; (iii)将数据导入GIS。其中一个提出的特征是一种新开发的“检测到的轮廓”(DPC)。另外,计算基于对对应于调查的向量对象的纹理信息分析的若干特征。该方法应用于已经受到地震的区域的远程感测的图像。结果表明DPC功能的高可靠性作为变化的指示。

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