【摘 要】
:
This paper presents a new morphing method based on the "as-rigid-as-possible" approach. Unlike the original as-rigid-as-possible method, we avoid the need to co
【机 构】
:
Department of Computer Science,National Computer Network Emergency Response Technical Team/Coordinat
【基金项目】
:
the EPSRC Travel Grant,the Technology Project of MOUHURD of China;国家自然科学基金;the Development Project of BMCE
论文部分内容阅读
This paper presents a new morphing method based on the "as-rigid-as-possible" approach. Unlike the original as-rigid-as-possible method, we avoid the need to construct a consistent tetrahedrai mesh, but instead require a consistent triangle surface mesh and from it create a tetrahedron for each surface triangle. Our new approach has several significant advantages. It is much easier to create a consistent triangle mesh than to create a consistent tetrahedral mesh. Secondly, the equations arising from our approach can be solved much more efficiently than the corresponding equations for a tetrahedral mesh. Finally, by incorporating the translation vector in the energy functional controlling interpolation, our new method does not need the user to arbitrarily fix any vertex to obtain a solution, allowing artists automatic control of interpolated mesh positions.
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