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A RESEARCH ON THE HIERARCHY AND COMPLETENESS OF ROOF TOPOLOGY FOR ROBUST BUILDING RECONSTRUCTION FROM AIRBORNE POINT CLOUD

机译:空气云宽覆盖岩拓岩拓扑层次与完整性研究

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In this work, we concentrate on the hierarchy and completeness of roof topology, and the aim is to avoid or correct the errors in roof topology. The hierarchy of topology is expressed by the hierarchical roof topology graph (HRTG) in accord with the definition of CityGML LOD (level of details). We decompose the roof topology graph (RTG) with a progressive approach while maintain the integrality and consistency of the data set simultaneously. Common feathers like collinear ridges or boundaries are calculated integrally to maintain their completeness. The roof items will only detected locally to decrease the error caused by data spare or mutual interference. Finally, a topology completeness test is adopted to detect and correct errors in roof topology, which results in a complete and hierarchical building model. Experiments shows that our methods have obvious improvements to the RTG based reconstruction method, especially for sparse data or roof topology with ambiguous.
机译:在这项工作中,我们专注于屋顶拓扑的等级和完整性,目的是避免或纠正屋顶拓扑中的错误。 拓扑层次结构由分层屋顶拓扑图(HRTG)表示,符合CityGML LOD的定义(细节水平)。 我们以渐进方法分解屋顶拓扑图(RTG),同时保持数据设置的完整性和一致性。 像共线脊或边界等常见的羽毛是一体地计算以保持其完整性。 屋顶物品只会在本地检测到,以减少由数据备用或相互干扰引起的误差。 最后,采用拓扑完整性测试来检测和校正屋顶拓扑中的错误,从而导致完整和分层的建筑模型。 实验表明,我们的方法对基于RTG的重建方法具有明显的改进,尤其是对于稀疏数据或屋顶拓扑结构而含糊不清。

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