Litcius/Paper detail

Marching-Primitives: Shape Abstraction from Signed Distance Function

Weixiao Liu, Yuwei Wu, Sipu Ruan, Gregory S. Chirikjian

202311 citationsDOI

Abstract

Representing complex objects with basic geometric primitives has long been a topic in computer vision. Primitive-based representations have the merits of compactness and computational efficiency in higher-level tasks such as physics simulation, collision checking, and robotic manipulation. Unlike previous works which extract polygonal meshes from a signed distance function (SDF), in this paper, we present a novel method, named Marching-Primitives, to obtain a primitive-based abstraction directly from an SDF. Our method grows geometric primitives (such as superquadrics) iteratively by analyzing the connectivity of voxels while marching at different levels of signed distance. For each valid connected volume of interest, we march on the scope of voxels from which a primitive is able to be extracted in a probabilistic sense and simultaneously solve for the parameters of the primitive to capture the underlying local geometry. We evaluate the performance of our method on both synthetic and real-world datasets. The results show that the proposed method out-performs the state-of-the-art in terms of accuracy, and is directly generalizable among different categories and scales. The code is open-sourced at https://github.com/ChirikjianLab/Marching-Primitives.git.

Topics & Concepts

Signed distance functionPolygon meshComputer scienceVoxelFast marching methodProbabilistic logicAbstractionGeometric primitiveMarching cubesFunction (biology)Distance transformIntersection (aeronautics)Code (set theory)Theoretical computer scienceAlgorithmArtificial intelligenceComputer visionSet (abstract data type)Computer graphics (images)Image (mathematics)Programming languageVisualizationEngineeringAerospace engineeringEvolutionary biologyBiologyPhilosophyEpistemology3D Shape Modeling and AnalysisComputer Graphics and Visualization TechniquesAdvanced Vision and Imaging