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A method for semi-automatic model absolute orientation based on the existing 3D-vector map for map update

机译:基于现有3D矢量地图的半自动模型绝对定向方法,用于地图更新

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The traditional methods for model absolute orientation of aerial imagery are mainly based on some ground control points whose three-dimensional co-ordinates are available and use highly accurate positioning algorithms or semi-automatically manual arrangement to locate them on the image plain. Usually, it is difficult to find some control point features in 3D-vector map using model absolute orientation of aerial imagery. However, the existed 3D vector map can provide sufficient details both on the maps and the images to ensure a lot of well-distributed and unchanged linear features can be used for absolute orientation of aerial imagery. In order to meet the requirements of quickly updating 3D-vector map, this paper will discuss a method for semi-automatic model absolute orientation by extracting some liner features from image and then matching with 3D line object in vector map. It can resolve the problem of model absolute orientation instead of using ground control points for quickly updating 3D vector map.
机译:用于模型的空中图像模型绝对取向方法主要基于某些地面控制点,其三维协调可用,并使用高精度定位算法或半自动手动布置来定位在图像平原上。通常,使用空中图像的模型绝对方向,很难在3D矢量地图中找到一些控制点特征。然而,存在的3D矢量地图可以在地图和图像上提供足够的细节,以确保大量分布式和不变的线性特征可用于空中图像的绝对方向。为了满足快速更新3D矢量地图的要求,本文将通过从图像中提取一些衬班特征,然后与向量映射中的3D线对象匹配来讨论半自动模型绝对方向的方法。它可以解决模型绝对取向的问题而不是使用地面控制点来快速更新3D矢量地图。

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