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An Improved Building Reconstruction Algorithm Based on Manhattan World Assumption and Line-Restricted Hypothetical Plane Fitting

机译:一种改进的基于曼哈顿世界假设和线条限制假想平面配件的建筑重建算法

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An improved patch-based multiview stereo (PMVS) algorithm based on Manhattan world assumption and the line-restricted hypothetical plane fitting method according to buildings’ spatial characteristics is proposed. Different from the original PMVS algorithm, our approach generates seed points purely from 3D line segments instead of using those feature points. First, 3D line segments are extracted using the existing Line3D++ algorithm, and the 3D line segment clustering criterion of buildings is established based on Manhattan world assumption. Next, by using the normal direction obtained using the result of 3D line segment clustering, we propose a multihypothetical plane fitting algorithm based on the mean shift method. Then, through subdividing on the triangle mesh constructed based on the building hypothetical plane model, semidense point cloud can be quickly obtained, and it is used as seed points of the PMVS pipeline instead of the sparse and noisy seed points generated by PMVS itself. After that, dense point cloud can be obtained through the existing PMVS expansion pipeline. Finally, unit and integration experiments are designed; the test results show that the proposed algorithm is 15%~23% faster than the original PMWS in running time, and at the same time, the reconstruction quality of buildings is improved as well by successfully removing many noise points in the buildings.
机译:提出了一种基于曼哈顿世界假设的改进的基于补丁的多视图立体声(PMVS)算法和根据建筑物空间特征的线限制假设的平面拟合方法。与原始PMVS算法不同,我们的方法纯粹从3D线段生成种子点,而不是使用这些特征点。首先,使用现有的LINE3D ++算法提取3D线段,并且建筑物的3D线段聚类标准基于曼哈顿世界的假设建立。接下来,通过使用使用3D线段聚类结果获得的法线方向,我们提出了一种基于平均移位方法的多型平面拟合算法。然后,通过基于建筑假设的平面模型构造的三角网格上,可以快速获得半阵点云,并且它用作PMVS管道的种子点,而不是由PMVS自身产生的稀疏和嘈杂的种子点。之后,可以通过现有的PMVS扩展管道获得密集点云。最后,设计了单位和集成实验;测试结果表明,所提出的算法比运行时间的原始PMW快15%〜23%,同时,建筑物的重建质量也通过成功去除建筑物中的许多噪音点。

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