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Free-Form Deformation Axis Aligned Bounding Box

机译:自由形状变形轴对齐边界盒

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摘要

We present a new efficient collision-handling technique of free-form deformation (FFD) of an embedded surface. By adapting FFD, modeling deformation has been substantially simplified to make possible interactive rate animation of a deformable object even for a complex embedded mesh. However, the lack of effective collision detection and resolution schemes for an FFD-embedded surface hinders the overall performance and often becomes a bottleneck. Most existing collision handling techniques can be directly applied to an FFD grid for fast computation, but surface approximation error would be apparent and it could cause noticeable visual artifacts. On the other hand, applying collision detection and resolution techniques directly to the embedded surface is extremely expensive and can obliterate the viability of real-time FFD simulation because the embedded surface has a high resolution in most cases. We present a fast collision detection and resolution method for the embedded surface in an FFD-enhanced simulation maintaining the approximation error of the embedded surface. Our techniques for detection and resolution provide an ability to balance speed and quality.
机译:我们提出了一种新的嵌入式表面的自由形状变形(FFD)的高效碰撞处理技术。通过调整FFD,即使对于复杂的嵌入网格,已经简化了建模变形以使可变形物体的交互式速率动画。然而,FFD嵌入式表面缺乏有效的碰撞检测和分辨方案阻碍了整体性能,并且通常成为瓶颈。大多数现有的碰撞处理技术可以直接应用于FFD网格以进行快速计算,但表面近似误差是显而易见的,它可能导致显着的视觉伪影。另一方面,将碰撞检测和分辨率直接应用于嵌入式表面非常昂贵,并且可以消除实时FFD仿真的可行性,因为在大多数情况下,嵌入式表面具有高分辨率。我们在FFD增强仿真中呈现了嵌入式表面的快速碰撞检测和分辨方法,维持嵌入式表面的近似误差。我们的检测和分辨率技术提供了平衡速度和质量的能力。

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