首页> 外文会议>International archives of the photogrammetry, remote sensing and spatial information sciences >AUTOMATED UPDATING OF BUILDING DATA BASES FROM DIGITAL SURFACE MODELS AND MULTI-SPECTRAL IMAGES: POTENTIAL AND LIMITATIONS
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AUTOMATED UPDATING OF BUILDING DATA BASES FROM DIGITAL SURFACE MODELS AND MULTI-SPECTRAL IMAGES: POTENTIAL AND LIMITATIONS

机译:从数字表面模型和多光谱图像自动更新构建数据基础:潜在和限制

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A method for automatic updating of building data bases from Digital Surface Models (DSM) and a normalised difference vegetation index is evaluated. The DSM can be generated from Airborne Laserscanner (ALS) data or by image matching techniques. Buildings are detected automatically from the input data. The building detection results are compared to an existing building data base, and changes between the existing data base and the new data set are determined. Buildings and building parts are classified as being confirmed, changed, new, or demolished. Change detection considers the fact that the original data and the building detection results can have a different topology and that small differences between the data from the two epochs might be caused by generalisation errors, by a misalignment of the data, or by insufficient sensor resolution. The performance of the algorithm is analysed using DSMs generated both from ALS data and by image matching. The evaluation shows the different properties of these data for building change detection and also some of the limitations of the method. If the accuracy requirements for the building outlines are not very high, the automatic updating process can be automated, provided that high-quality DSMs are used. In a semi-automatic environment the amount of human interaction for updating building data bases can be reduced by 40%-60%.
机译:评估用于自动更新从数字表面模型(DSM)和归一化差异植被指数的建筑数据库的方法。 DSM可以由空机激动机(ALS)数据或通过图像匹配技术生成。从输入数据自动检测建筑物。将建筑物检测结果与现有的构建数据库进行比较,并确定现有数据库和新数据集之间的变化。建筑物和建筑零件被归类为确认,改变,新的或拆除。变更检测考虑了原始数据和建筑物检测结果可以具有不同的拓扑,并且来自两个时期的数据之间的小差异可能是由泛化误差引起的,通过数据的错位,或者传感器分辨率不足引起。使用从ALS数据和图像匹配产生的DSM分析算法的性能。评估显示了这些数据的不同特性,用于建立变化检测以及方法的一些限制。如果建筑轮廓的精度要求不是很高,则可以自动执行自动更新过程,只要使用高质量的DSM。在半自动环境中,更新建筑数据库的人类交互量可以减少40%-60%。

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