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CONSTRAINT ENERGIES FOR THE ADAPTATION OF 2D RIVER BORDERLINES TO AIRBORNE LASERSCANNING DATA USING SNAKES

机译:使用蛇形的2D河边缘线适应机载激光的数据的约束能量

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The German Authoritative Topographic Cartographic Information System (ATKIS) stores the height and the 2D position of the objects in a dual system. The digital terrain model (DTM), often acquired by airborne laser scanning (ALS), supplies the height information in a regular grid, whereas 2D vector data are provided in the digital landscape model (DLM). However, an increasing number of applications, such as flood risk modelling, require the combined processing and visualization of these two data sets. Due to different kinds of acquisition, processing, and modelling discrepancies exist between the DTM and DLM and thus a simple integration may lead to semantically incorrect 3D objects. For example, rivers may flow uphill. In this paper we propose an algorithm for the adaptation of 2D river borderlines to ALS data by means of snakes. Besides the two basic energy terms of the snake, the internal and image energy, 3D object knowledge is introduced in the constraint energy in order to guarantee the semantic correctness of the rivers in a combined data set. The image energy is based on ALS intensity and height information and derived products. Additionally, features of rivers in the DTM, such as the flow direction or the river profile, are formulated as constraints in order to fulfil the semantic properties of rivers and stabilize the adaptation process. Furthermore, the known concept of twin snakes exploits the width of the river and also supports the procedure. Some results are given to show the applicability of the algorithm.
机译:德国权威地形制图信息系统(ATKIS)将物体的高度和2D位置存储在双系统中。数字地形模型(DTM)通常由空机激光扫描(ALS)获得,在常规网格中提供高度信息,而在数字景观模型(DLM)中提供了2D矢量数据。然而,越来越多的应用程序,例如洪水风险建模,需要这些两个数据集的组合处理和可视化。由于不同类型的采集,处理和模型差异,因此DTM和DLM之间存在差异,因此简单的集成可能导致语义不正确的3D对象。例如,河流可能会上坡流动。在本文中,我们提出了一种通过Snakes对2D河边界线的适应算法。除了蛇的两个基本能量方面,在约束能量中引入了内部和图像能量,3D对象知识,以保证河流在组合数据集中的语义正确性。图像能量基于ALS强度和高度信息和衍生产品。另外,DTM中的河流的特征,例如流动方向或河流轮廓,配制为约束,以满足河流的语义特性并稳定适应过程。此外,双胞胎的已知概念利用河的宽度,并支持该过程。给出了一些结果,以显示算法的适用性。

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