Real-time large-deformation substructuring
Jernej Barbič, Yili Zhao
In ACM Transactions on Graphics, 30(4), July 2011.
Abstract: This paper shows a method to extend 3D nonlinear elasticity model reduction to open-loop multi-level reduced deformable structures. Given a volumetric mesh, we decompose the mesh into several subdomains, build a reduced deformable model for each domain, and connect the domains using inertia coupling. This makes model reduction deformable simulations much more versatile: localized deformations can be supported without prohibitive computational costs, parts can be re-used and precomputation times shortened. Our method does not use constraints, and can handle large domain rigid body motion in addition to large deformations, due to our derivation of the gradient and Hessian of the rotation matrix in polar decomposition. We show real-time examples with multi-level domain hierarchies and hundreds of reduced degrees of freedom.
Keyword(s): FEM, domain decomposition, model reduction, nonlinear elasticity
Article URL: http://dx.doi.org/10.1145/2010324.1964986
BibTeX format:
@article{Barbic:2011:RLS,
  author = {Jernej Barbič and Yili Zhao},
  title = {Real-time large-deformation substructuring},
  journal = {ACM Transactions on Graphics},
  volume = {30},
  number = {4},
  pages = {91:1--91:8},
  month = jul,
  year = {2011},
}
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