• DocumentCode
    3716893
  • Title

    Estimating the deformability of elastic materials using optical flow and position-based dynamics

  • Author

    Piiren Giiler;Karl Pauwels;Alessandro Pieropan;Hedvig Kjellstr?m;Danica Kragic

  • Author_Institution
    Computer Vision and Active Perception Lab, Center for Autonomous Systems, School of Computer Science and Communication, KTH Royal Institute of Technology, Stockholm, Sweden
  • fYear
    2015
  • Firstpage
    965
  • Lastpage
    971
  • Abstract
    Knowledge of the physical properties of objects is essential in a wide range of robotic manipulation scenarios. A robot may not always be aware of such properties prior to interaction. If an object is incorrectly assumed to be rigid, it may exhibit unpredictable behavior when grasped. In this paper, we use vision based observation of the behavior of an object a robot is interacting with and use it as the basis for estimation of its elastic deformability. This is estimated in a local region around the interaction point using a physics simulator. We use optical flow to estimate the parameters of a position-based dynamics simulation using meshless shape matching (MSM). MSM has been widely used in computer graphics due to its computational efficiency, which is also important for closed-loop control in robotics. In a controlled experiment we demonstrate that our method can qualitatively estimate the physical properties of objects with different degrees of deformability.
  • Keywords
    "Deformable models","Shape","Robots","Computational modeling","Physics","Predictive models","Visualization"
  • Publisher
    ieee
  • Conference_Titel
    Humanoid Robots (Humanoids), 2015 IEEE-RAS 15th International Conference on
  • Type

    conf

  • DOI
    10.1109/HUMANOIDS.2015.7363486
  • Filename
    7363486