IROS 2021poster6 citations

Multi-scale Laplacian-based FMM for shape control

Ignacio Cuiral-Zueco, Gonzalo López-Nicolás

Abstract

Shape control has become a prominent research field as it enables the automation of tasks in many applications. Overall, deforming an object to a desired target shape by using few grippers is a major challenge. The limited information about the object dynamics, the need to combine small and large deformations in order to achieve certain target shapes and the non-linear nature of most deformable objects are factors that significantly hamper shape control performance. In this paper, we propose a shape control method for multi-robot manipulation of large-strain deformable objects. Our approach is based on multi-scale Laplacian descriptors that feed an FMM (Fast Marching Method) for elastic shape contour matching. The FMM's resulting path and the Laplacian operator are used to define a control strategy for the robot grippers. Simulation experiments carried out with an ARAP (As Rigid As Possible) deformation model provide satisfactory results.

BibTeX
@inproceedings{iros2021_multiscalelaplac,
  title = {Multi-scale Laplacian-based FMM for shape control},
  author = {Ignacio Cuiral-Zueco and Gonzalo López-Nicolás},
  booktitle = {IROS 2021},
  year = {2021}
}
Multi-scale Laplacian-based FMM for shape control · IROS 2021