Space-time editing of elastic motion through material optimization and reduction
Siwang Li, Jin Huang, Fernando de Goes, Xiaogang Jin, Hujun Bao, Mathieu Desbrun
In ACM Transactions on Graphics, 33(4), July 2014.
Abstract: We present a novel method for elastic animation editing with space-time constraints. In a sharp departure from previous approaches, we not only optimize control forces added to a linearized dynamic model, but also optimize material properties to better match user constraints and provide plausible and consistent motion. Our approach achieves efficiency and scalability by performing all computations in a reduced rotation-strain (RS) space constructed with both cubature and geometric reduction, leading to two orders of magnitude improvement over the original RS method. We demonstrate the utility and versatility of our method in various applications, including motion editing, pose interpolation, and estimation of material parameters from existing animation sequences.
Article URL: http://dx.doi.org/10.1145/2601097.2601217
BibTeX format:
@article{Li:2014:SEO,
  author = {Siwang Li and Jin Huang and Fernando de Goes and Xiaogang Jin and Hujun Bao and Mathieu Desbrun},
  title = {Space-time editing of elastic motion through material optimization and reduction},
  journal = {ACM Transactions on Graphics},
  volume = {33},
  number = {4},
  pages = {108:1--108:10},
  month = jul,
  year = {2014},
}
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