An Efficient Energy Transfer Inverse Kinematics Solution
Jing Huang, Catherine Pelachaud
Motion in Games, November 2012, pp. 278--289.
Abstract: In this paper, we present a fast and easy-to-implement locally physics-based Inverse Kinematics(IK) method. Our method builds upon a mass-spring model and relies on force interactions between masses. Joint rotations are computed using the closed-form method with predefined local axis coordinates. Combining these two approaches offers convincing visual quality results obtained with high time performance. Our IK solver is suitable for multiple constraints application and constrained 3D humanoid models.
Article URL: http://dx.doi.org/10.1007/978-3-642-34710-8_26
BibTeX format:
@incollection{Huang:2012:AEE,
  author = {Jing Huang and Catherine Pelachaud},
  title = {An Efficient Energy Transfer Inverse Kinematics Solution},
  booktitle = {Motion in Games},
  pages = {278--289},
  month = nov,
  year = {2012},
}
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