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A Mixture of Manhattan Frames: Beyond the Manhattan World

机译:曼哈顿框架的混合体:超越曼哈顿世界

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摘要

Objects and structures within man-made environments typically exhibit a high degree of organization in the form of orthogonal and parallel planes. Traditional approaches to scene representation exploit this phenomenon via the somewhat restrictive assumption that every plane is perpendicular to one of the axes of a single coordinate system. Known as the Manhattan-World model, this assumption is widely used in computer vision and robotics. The complexity of many real-world scenes, however, necessitates a more flexible model. We propose a novel probabilistic model that describes the world as a mixture of Manhattan frames: each frame defines a different orthogonal coordinate system. This results in a more expressive model that still exploits the orthogonality constraints. We propose an adaptive Markov-Chain Monte-Carlo sampling algorithm with Metropolis-Hastings split/merge moves that utilizes the geometry of the unit sphere. We demonstrate the versatility of our Mixture-of-Manhattan-Frames model by describing complex scenes using depth images of indoor scenes as well as aerial-LiDAR measurements of an urban center. Additionally, we show that the model lends itself to focal-length calibration of depth cameras and to plane segmentation.
机译:人造环境中的物体和结构通常以正交和平行平面的形式表现出高度的组织性。传统的场景表示方法是通过某种限制性假设来利用这种现象的,即每个平面都垂直于单个坐标系的一个轴。这种假设被称为“曼哈顿世界”模型,被广泛应用于计算机视觉和机器人技术中。但是,许多现实世界场景的复杂性要求使用更灵活的模型。我们提出了一个新颖的概率模型,该模型将世界描述为曼哈顿框架的混合体:每个框架都定义了一个不同的正交坐标系。这产生了一个更具表现力的模型,该模型仍然利用了正交性约束。我们提出了一种自适应马尔可夫链蒙特卡洛采样算法,该算法利用Metropolis-Hastings分裂/合并运动来利用单位球的几何形状。通过使用室内场景的深度图像以及城市中心的空中LiDAR测量来描述复杂场景,我们展示了曼哈顿混合模型的多功能性。此外,我们证明该模型适合深度相机的焦距校准和平面分割。

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