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首页> 外文期刊>ISPRS Journal of Photogrammetry and Remote Sensing >SGM-based seamline determination for urban orthophoto mosaicking
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SGM-based seamline determination for urban orthophoto mosaicking

机译:基于SGM的接缝线确定用于城市正射镶嵌

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Mosaicking is a key step in the production of digital orthophoto maps (DOMs), especially for large-scale urban orthophotos. During this step, manual intervention is commonly involved to avoid the case where the seamline crosses obvious objects (e.g., buildings), which causes geometric discontinuities on the DOMs. How to guide the seamline to avoid crossing obvious objects has become a popular topic in the field of photogrammetry and remote sensing. Thus, a new semi-global matching (SGM)-based method to guide seamline determination is proposed for urban orthophoto mosaicking in this study, which can greatly eliminate geometric discontinuities. The approximate epipolar geometry of the orthophoto pairs is first derived and proven, and the approximate epipolar image pair is then generated by rotating the two orthorectified images according to the parallax direction. A SGM algorithm is applied to their overlaps to obtain the corresponding pixel-wise disparity. According to a predefined disparity threshold, the overlap area is identified as the obstacle and non-obstacle areas. For the non-obstacle regions, Hilditch thinning algorithm is used to obtain the skeleton line, followed by Dijkstra's algorithm to search for the optimal path on the skeleton network as the seamline between two orthophotos. A whole seamline network is constructed based on the strip information recorded in flight. In the experimental section, the approximate epipolar geometric theory of the orthophoto is first analyzed and verified, and the effectiveness of the proposed method is then validated by comparing its results with the results of the geometry based, OrthoVista, and orthoimage elevation synchronous model (OESM)-based methods. (C) 2015 International Society for Photogrammetry and Remote Sensing, Inc. (ISPRS). Published by Elsevier B.V. All rights reserved.
机译:马赛克化是生产数字正射影像图(DOM)的关键步骤,特别是对于大型城市正射影像。在此步骤中,通常需要进行人工干预,以避免接缝线穿过明显的物体(例如建筑物)的情况,这会导致DOM上的几何不连续。如何引导接缝线避免穿过明显的物体已经成为摄影测量和遥感领域中的热门话题。因此,本研究提出了一种新的基于半全局匹配(SGM)的指导接缝线确定的方法,用于城市正射镶嵌,可以大大消除几何上的不连续性。首先推导并证明正光对的近似对极几何形状,然后通过根据视差方向旋转两个正射矫正的图像来生成近似对极图像对。将SGM算法应用于它们的重叠,以获得相应的像素方向视差。根据预定的视差阈值,将重叠区域识别为障碍物区域和非障碍物区域。对于非障碍区域,使用Hilditch细化算法获得骨架线,然后使用Dijkstra算法在骨架网络上搜索两条正射像之间的接缝,以寻找最佳路径。根据在飞行中记录的脱衣舞信息来构建整个接缝线网络。在实验部分,首​​先对正射影像的近似对极几何理论进行了分析和验证,然后通过将其结果与基于几何,OrthoVista和正像高程同步模型(OESM)的结果进行比较,验证了该方法的有效性)为基础的方法。 (C)2015国际摄影测量与遥感学会(ISPRS)。由Elsevier B.V.发布。保留所有权利。

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