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Modal warping: real-time simulation of large rotational deformation and manipulation

机译:模态翘曲:大旋转变形和操纵的实时仿真

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This work proposes a real-time simulation technique for large deformations. Green's nonlinear strain tensor accurately models large deformations; however, time stepping of the resulting nonlinear system can be computationally expensive. Modal analysis based on a linear strain tensor has been shown to be suitable for real-time simulation, but is accurate only for moderately small deformations. In the present work, we identify the rotational component of an infinitesimal deformation and extend traditional linear modal analysis to track that component. We then develop a procedure to integrate the small rotations occurring at the nodal points. An interesting feature of our formulation is that it can implement both position and orientation constraints in a straightforward manner. These constraints can be used to interactively manipulate the shape of a deformable solid by dragging/twisting a set of nodes. Experiments show that the proposed technique runs in real-time, even for a complex model, and that it can simulate large bending and/or twisting deformations with acceptable realism.
机译:这项工作提出了一种用于大变形的实时仿真技术。 Green的非线性应变张量可精确地模拟大变形。然而,所得非线性系统的时间步长可能在计算上昂贵。已经表明,基于线性应变张量的模态分析适用于实时仿真,但是仅对中等程度的小变形才是准确的。在当前的工作中,我们确定了无限小变形的旋转分量,并扩展了传统的线性模态分析以跟踪该分量。然后,我们开发一种程序来整合在节点处发生的小旋转。我们公式的一个有趣特征是它可以以直接的方式实现位置和方向约束。这些约束可用于通过拖动/扭曲一组节点来交互地操纵可变形实体的形状。实验表明,即使对于复杂的模型,所提出的技术也可以实时运行,并且可以用可接受的真实性模拟大的弯曲和/或扭曲变形。

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