首页> 外文会议>IASTED International Conference on Graphics and Visualization in Engineering >EFFICIENT, ROBUST, BEM (BOUNDARY ELEMENT METHOD) BASED METHOD FOR SIMULATING ARTICULATED 3D ELASTIC OBJECT MODELS
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EFFICIENT, ROBUST, BEM (BOUNDARY ELEMENT METHOD) BASED METHOD FOR SIMULATING ARTICULATED 3D ELASTIC OBJECT MODELS

机译:基于高效,鲁棒,BEM(边界元方法)模拟铰接式3D弹性对象模型的方法

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This paper proposes an efficient and effective computation method for simulating articulated 3D elastic objects. The articulated elastic object consists of bones, elastic object primitives and joining surfaces. After transforming the bones by inverse kinematics, the elastic object primitives are deformed basically by the BEM (Boundary Element Method). To reduce the computation cost and memory usage and to achieve robust deformations, this paper improves the BEM based module of the conventional method: more specifically, a new method for computing the displacements of the vertices in the joining surfaces. Experimental results show that the proposed model can be simulated 10 times as fast as the conventional model or faster, and that real-time performances such as 60fps can be achieved even for models with 20,000 vertices. High quality simulations of different deformations including expansions and contractions are achieved using character type models.
机译:本文提出了一种用于模拟铰接式3D弹性物体的有效且有效的计算方法。铰接弹性物体由骨骼,弹性物质基元和连接表面组成。在通过逆运动学转换骨骼之后,弹性对象基元基本上由BEM(边界元素方法)变形。为了降低计算成本和内存使用并实现稳健的变形,本文提高了传统方法的基于BEM模块:更具体地,用于计算连接表面中顶点位移的新方法。实验结果表明,所提出的模型可以像传统模型一样快速模拟10倍,并且即使对于具有20,000个顶点的模型,也可以实现诸如60fps的实时性能。使用字符型模型实现了包括扩展和收缩的不同变形的高质量模拟。

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