Asynchronous Contact Mechanics
David Harmon, Etienne Vouga, Breannan Smith, Rasmus Tamstorf, Eitan Grinspun
In ACM Transactions on Graphics, 28(3), July 2009.
Abstract: We develop a method for reliable simulation of elastica in complex contact scenarios. Our focus is on firmly establishing three parameter-independent guarantees: that simulations of well-posed problems (a) have no interpenetrations, (b) obey causality, momentum- and energy-conservation laws, and (c) complete in finite time. We achieve these guarantees through a novel synthesis of asynchronous variational integrators, kinetic data structures, and a discretization of the contact barrier potential by an infinite sum of nested quadratic potentials. In a series of two- and three-dimensional examples, we illustrate that this method more easily handles challenging problems involving complex contact geometries, sharp features, and sliding during extremely tight contact.
Keyword(s): collision, contact, simulation, symplectic, variational
Article URL: http://doi.acm.org/10.1145/1531326.1531393
BibTeX format:
@article{Harmon:2009:ACM,
  author = {David Harmon and Etienne Vouga and Breannan Smith and Rasmus Tamstorf and Eitan Grinspun},
  title = {Asynchronous Contact Mechanics},
  journal = {ACM Transactions on Graphics},
  volume = {28},
  number = {3},
  pages = {87:1--87:12},
  month = jul,
  year = {2009},
}
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