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- W1992988897 abstract "We propose a domain-decomposition method to simulate articulated deformable characters entirely within a subspace framework. The method supports quasistatic and dynamic deformations, nonlinear kinematics and materials, and can achieve interactive time-stepping rates. To avoid artificial rigidity, or locking, associated with coupling low-rank domain models together with hard constraints, we employ penalty-based coupling forces. The multi-domain subspace integrator can simulate deformations efficiently, and exploits efficient subspace-only evaluation of constraint forces between rotated domains using a novel Fast Sandwich Transform (FST). Examples are presented for articulated characters with quasistatic and dynamic deformations, and interactive performance with hundreds of fully coupled modes. Using our method, we have observed speedups of between three and four orders of magnitude over full-rank, unreduced simulations." @default.
- W1992988897 created "2016-06-24" @default.
- W1992988897 creator A5001786227 @default.
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- W1992988897 date "2011-08-05" @default.
- W1992988897 modified "2023-10-14" @default.
- W1992988897 title "Physics-based character skinning using multi-domain subspace deformations" @default.
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- W1992988897 doi "https://doi.org/10.1145/2019406.2019415" @default.
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