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HyperPocket: Generative Point Cloud Completion

Przemysław Spurek, Artur Kasymov, Marcin Mazur, David Janík, Sławomir Tadeja, Łukasz Struski, Jacek Tabor, T. Trzciński

20222022 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS)19 citationsDOIOpen Access PDF

Abstract

Scanning real-life scenes with modern registration devices typically give incomplete point cloud representations, mostly due to the limitations of the scanning process and 3D occlusions. Therefore, completing such partial representations remains a fundamental challenge of many computer vision applications. Most of the existing approaches aim to solve this problem by learning to reconstruct individual 3D objects in a synthetic setup of an uncluttered environment, which is far from a real-life scenario. In this work, we reformulate the problem of point cloud completion into an objects hallucination task. Thus, we introduce a novel autoencoder-based architecture called HyperPocket that disentangles latent representations and, as a result, enables the generation of multiple variants of the completed 3D point clouds. Furthermore, we split point cloud processing into two disjoint data streams and leverage a hypernetwork paradigm to fill the spaces, dubbed pockets, that are left by the missing object parts. As a result, the generated point clouds are smooth, plausible, and geometrically consistent with the scene. Moreover, our method offers competitive performances to the other state-of-the-art models, enabling a plethora of novel applications.

Topics & Concepts

Point cloudComputer scienceLeverage (statistics)Artificial intelligenceCloud computingDisjoint setsAutoencoderGenerative modelGenerative grammarComputer visionPoint (geometry)Object (grammar)Human–computer interactionDistributed computingDeep learningGeometryOperating systemCombinatoricsMathematics3D Shape Modeling and AnalysisComputer Graphics and Visualization Techniques3D Surveying and Cultural Heritage
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