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Automatic reconstruction of fully volumetric 3D building models from oriented point clouds

机译:从定向点云自动重建全体积3D建筑模型

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摘要

We present a novel method for reconstructing parametric, volumetric, multi-story building models from unstructured, unfiltered indoor point clouds with oriented normals by means of solving an integer linear optimization problem. Our approach overcomes limitations of previous methods in several ways: First, we drop assumptions about the input data such as the availability of separate scans as an initial room segmentation. Instead, a fully automatic room segmentation and outlier removal is performed on the unstructured point clouds. Second, restricting the solution space of our optimization approach to arrangements of volumetric wall entities representing the structure of a building enforces a consistent model of volumetric, interconnected walls fitted to the observed data instead of unconnected, paper-thin surfaces. Third, we formulate the optimization as an integer linear programming problem which allows for an exact solution instead of the approximations achieved with most previous techniques. Lastly, our optimization approach is designed to incorporate hard constraints which were difficult or even impossible to integrate before. We evaluate and demonstrate the capabilities of our proposed approach on a variety of complex real-world point clouds.
机译:我们提出一种新颖的方法,通过求解整数线性优化问题,从具有定向法线的非结构化,未经过滤的室内点云中重建参数化,体积化,多层的建筑模型。我们的方法通过几种方式克服了先前方法的局限性:首先,我们放弃了对输入数据的假设,例如将单独扫描作为初始房间分割的可用性。取而代之的是,对非结构化点云执行全自动房间分割和离群值去除。其次,将我们的优化方法的求解空间限制在代表建筑物结构的体积墙实体的排列上,这将强制建立一个一致的体积互连的模型,该模型适合观察的数据,而不是未连接的,纸薄的表面。第三,我们将优化公式化为整数线性规划问题,该问题可以提供精确的解决方案,而不是使用大多数先前技术所获得的近似值。最后,我们的优化方法旨在合并以前很难甚至无法集成的硬约束。我们评估并证明了我们提出的方法在各种复杂的现实世界点云上的功能。

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