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A simple prior-free method for non-rigid structure-from-motion factorization

Published: 16 June 2012 Publication History

Abstract

This paper proposes a simple “prior-free” method for solving non-rigid structure-from-motion factorization problems. Other than using the basic low-rank condition, our method does not assume any extra prior knowledge about the nonrigid scene or about the camera motions. Yet, it runs reliably, produces optimal result, and does not suffer from the inherent basis-ambiguity issue which plagued many conventional nonrigid factorization techniques. Our method is easy to implement, which involves solving no more than an SDP (semi-definite programming) of small and fixed size, a linear Least-Squares or trace-norm minimization. Extensive experiments have demonstrated that it outperforms most of the existing linear methods of nonrigid factorization. This paper offers not only new theoretical insight, but also a practical, everyday solution, to non-rigid structure-from-motion.

Cited By

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  • (2018)Monocular 3D Reconstruction of Multiple Non-Rigid Objects by Union of Non-linear Spatial-Temporal SubspacesProceedings of the 2nd International Conference on Vision, Image and Signal Processing10.1145/3271553.3271600(1-5)Online publication date: 27-Aug-2018
  • (2018)Inextensible Non-Rigid Structure-from-Motion by Second-Order Cone ProgrammingIEEE Transactions on Pattern Analysis and Machine Intelligence10.1109/TPAMI.2017.276266940:10(2428-2441)Online publication date: 1-Oct-2018
  • (2018)Robust Sparse and Dense Nonrigid Structure From MotionIEEE Transactions on Multimedia10.1109/TMM.2017.275874020:4(841-850)Online publication date: 1-Apr-2018
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  1. A simple prior-free method for non-rigid structure-from-motion factorization

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    Published In

    cover image Guide Proceedings
    CVPR '12: Proceedings of the 2012 IEEE Conference on Computer Vision and Pattern Recognition (CVPR)
    June 2012
    3800 pages
    ISBN:9781467312264

    Publisher

    IEEE Computer Society

    United States

    Publication History

    Published: 16 June 2012

    Author Tags

    1. Cameras
    2. Equations
    3. Linear systems
    4. Minimization
    5. Shape
    6. Shape measurement
    7. Trajectory

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    View all
    • (2018)Monocular 3D Reconstruction of Multiple Non-Rigid Objects by Union of Non-linear Spatial-Temporal SubspacesProceedings of the 2nd International Conference on Vision, Image and Signal Processing10.1145/3271553.3271600(1-5)Online publication date: 27-Aug-2018
    • (2018)Inextensible Non-Rigid Structure-from-Motion by Second-Order Cone ProgrammingIEEE Transactions on Pattern Analysis and Machine Intelligence10.1109/TPAMI.2017.276266940:10(2428-2441)Online publication date: 1-Oct-2018
    • (2018)Robust Sparse and Dense Nonrigid Structure From MotionIEEE Transactions on Multimedia10.1109/TMM.2017.275874020:4(841-850)Online publication date: 1-Apr-2018
    • (2018)3D facial feature and expression computing from Internet image or videoMultimedia Tools and Applications10.1007/s11042-018-5895-777:17(22231-22246)Online publication date: 1-Sep-2018
    • (2015)A Combinatorial Approach to $$L_1$$L1-Matrix FactorizationJournal of Mathematical Imaging and Vision10.1007/s10851-014-0533-051:3(430-441)Online publication date: 1-Mar-2015
    • (2014)Finding a sparse vector in a subspaceProceedings of the 28th International Conference on Neural Information Processing Systems - Volume 210.5555/2969033.2969206(3401-3409)Online publication date: 8-Dec-2014
    • (2014)Low-Rank Modeling and Its Applications in Image AnalysisACM Computing Surveys10.1145/267455947:2(1-33)Online publication date: 19-Dec-2014
    • (2014)Automatic acquisition of high-fidelity facial performances using monocular videosACM Transactions on Graphics10.1145/2661229.266129033:6(1-13)Online publication date: 19-Nov-2014
    • (2012)Efficient articulated trajectory reconstruction using dynamic programming and filtersProceedings of the 12th European conference on Computer Vision - Volume Part I10.1007/978-3-642-33718-5_6(72-85)Online publication date: 7-Oct-2012

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